#Below-the-knee Implants Market research
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Below-the-knee Implants Market
#Below-the-knee Implants Market scope#Below-the-knee Implants Market report#Below-the-knee Implants Market research
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I wanted to design a Post-RotJ survivor Anakin for a while, and my extreme dislike of his de-aged ghost appearance in Ahsoka is motivating me to finally do it. In the movies, almost everything about his disabilities and death was written around morality and convenience. He's scary because of his disabilities and their villain-designed accommodations; he sacrifices himself to prove his goodness, the final "use" in a life devoted to being useful to others. I love the ending of RotJ for the tragic failure in Luke's arc and parallel with Padme, but I also want more for Anakin.
This is a version where Luke succeeds in saving not just his father's morality but his life. Some tiny part of Anakin wants to live, in spite of his pain and guilt. Instead of flying the escape vessel back to the moon of Endor, Luke flies to the nearest Rebel med-ship and gets Anakin out of the failing Vader helmet and suit and into a bacta tank. This continues the theme in RotJ of Luke becoming emotionally distant from his friends/the cause because he still believes in Anakin. In this version, that hope starts to become inconvenient.
I do not think Leia and Han would quickly forgive Anakin, even when they learn he killed the Emperor. This becomes an issue when Luke needs Rebel money for new accommodations for Anakin's amputations, damaged lungs, and newly weakened heart.
CW: long post, medical descriptions
While Palpatine created Anakin's suit and helmet in part to accommodate his disabilities, his greater priority was making Anakin useful, powerful, and intimidating. Luke just wants Anakin to be alive. (Comfortable and independent, if possible: two things Anakin has never been.) Palpatine also spared no expense from his entire galaxy of wealth, while Luke has to borrow from some rich sucker who can get behind the rehabilitation of their most dangerous enemy (Mon? Lando? or someone less politically correct?).
I've been researching what we'd use in the real world for Anakin's disabilities, because I think it's important, and because I've become fonder of hard scifi, and because hand-wavey soft scifi would wear off when the money gets tight. Most limb-different people in the real world do not get prosthetics; they are very expensive and not always useful.
^ when you look up "most useful," Google will unhelpfully show you "most advanced"
As Vader, he would have had access to the best technology, something like our implantable myoelectric sensors. (One of the best arms on the market today is called LUKE, which stands for "Life Under Kinetic Evolution" and is of course a reference to Star Wars. Life imitates art better than vice versa.) But in this design, Anakin has only one prosthetic, a body-powered hook on his left arm. Obi-Wan cut his legs above the knees, and Dooku cut his right arm above the elbow, so these prosthetics would have to be more complex. But Obi-Wan cut his left arm below the elbow, which is easier to accommodate. Body-powered prosthetics are maneuvered by things like harnesses on your shoulders and have been around for a long time.
Anakin's chronic (type 2) respiratory failure is treated with noninvasive ventilation; as Vader, this was his helmet (sorta similar to F below), which must have been connected to a ventilator somewhere on his person (his chest thing?). In RotJ, he wanted to see Luke with his own eyes, so I think he'd want a different patient interface. The most common is an oro-nasal mask (B).
A more realistic/cheaper ventilator would take up more space than Darth Vader's. But Luke is not Anakin's only ally; I think R2, when given the chance, would gladly regain his loyalty to Anakin and volunteer as ventilator, mobility aid, and advocate. Would this cause a rift between him and C3PO, who, while Anakin's creation, is also more emotionally complex? Maybe!
Another thing to keep in mind is that Anakin (probably) still has a powerful connection to the Force, which he could use to accommodate his disabilities like the blind guys in Rogue One and Quest for Camelot. But due to his emotional and spiritual exhaustion, I think his connection would be weakened and unreliable. Billions of people wishing him punished or dead would be more than enough reason to cut himself off from their luminous lives.
What would happen next? I write faster than I draw and I want to draw, so I'm shifting into draw mode before I can figure out the rest of the story.
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How to use the disinfection spray, car waxing, disinfectant sanitizer, best insect Repellent, Mosquito Repellent.
Waxing a Brand New Car
What all the fuss is about
It’s shiny. It’s new. It gleams in the sunlight. Your brand new car. You have done hours of research to find just the right one, and now you have it. It’s yours. How do you keep it looking so nice? What’s all the fuss about waxing a new car? Why is it so important? When should you do it? And how should you do it?
Having the dealer or an auto body shop wax your car is always an option. This article is assuming that you are wanting to wax your vehicle yourself.
Why You Should Wax Your Car
You new beauty will be exposed to all the elements. While you are staying dry and clean sitting inside of it while cruising down the road, it is taking a beating. The elements don’t hold back – rain, snow, road salt, bugs, bird poop, the salty sea air (if you live close to the ocean), the list goes on. Your vehicle’s paint protects the metal body of the car from rust. The last thing you want to see on your new car is premature rust spots. Waxing regularly can prevent this. Applying wax 2-4 times a year is recommended. Waxing is not the same as washing. Down below are the basic steps to effectively wax your car.
How to Wax it Properly
Ask any car lover and they will tell you how they wax their car. With so many brands and products on the market there are several options. However, many will agree with the following basics:
Wash – never use dish washing detergent. You need a properly pH balanced cleaner. Most advertised car washing detergents are suitable. This is a crucial step to remove loose debris and contaminants.
Clean – once the initial wash is complete and your car is dry, it is time to inspect for stuck on debris. Tree sap, bird droppings, pollen, and brake dust may not come off with the initial wash. A good way to check is to rub your hand across the surface of your vehicle. If it feels gritty, grab a clay bar and rub it over the gritty parts. It’s a mild abrasive that is designed to effectively finish cleaning the cars surface.
Polish – not everyone insists on this step and some lump it in with the cleaning step, but it is definitely not the same as applying wax. Applying a polishing coat is what will the paint have it’s shiny, reflective gleam. Some polishes help restore oils to the paint. Be careful not to remove dry polish as this can scratch the paint.
Wax – This step is what protects the sheen, finish, and paint. It’s recommended to use a microfiber, but others may suggest another type of applicator. Apply the wax, let it sit as long as indicated on the bottle you use, and remove it in the order you applied it. Then repeat until the car is completely sealed.
We highly recommend following these steps in a shady area. If the sun is out and hot it can create water spots while washing and make it more difficult to avoid the polish or wax drying too quickly.
DIY Natural Disinfectant Spray
Ditch the Lysol and antibacterial sprays for good with this DIY Natural Disinfectant Spray. It’s so easy to make and will sanitize without the harsh chemicals.
DIY Natural Disinfectant Spray (Homemade Lysol)
Ditch the Lysol and antibacterial sprays for good with this DIY Natural Disinfectant Spray. It’s so easy to make and will sanitize without the harsh chemicals.
It never fails. With three boys in the house, there’s a constant influx of germs in the house from my kids playing outside and in a creek near our house. They’re always coming home with critters too like geckos, turtles (seriously), crawfish and even birds. I usually shoo them back outside with said critters but not before they get their hands on doorknobs, walls, tables, and other surfaces in my home.
And no matter how many times I tell them to wash their hands… well, sometimes germs just happen. That’s why I’m so happy to have a natural alternative to Lysol and other antibacterial sprays for my home.
The funny thing is that I was THAT mom who had the bleach wipes and cleaned every surface of the house with them. I remember one time I was on my hands and knees cleaning the floor to keep them “clean” for my son (who was a crawling baby back then). I just cringe thinking about it now. I probably exposed him to chemical toxins that were far more harmful to his health than if I just used soap and water to clean the floors.
My kids have definitely been the turning point for me in transitioning to a chemical-free lifestyle. We’ve already gotten rid of all of our household cleaners and now basically use this one for everything.
But here’s the thing… germs still happen and sometimes you just want to disinfect. So what can you use if it’s not Lysol or bleach?
It’s actually pretty easy – it’s just all those TV commercials have us all thinking we need bleach wipes or some toxic spray can to disinfect and get rid of germs when really we CAN use natural alternatives.
Natural Disinfectants
There are a handful of products you can use to naturally disinfect and sanitize your home. You probably already have them in your home: vinegar, rubbing alcohol, and hydrogen peroxide. They are all pretty effective in killing germs and sanitizing surfaces and toys. In fact, I typically like to fill a tub full of water and add about 1-2 cups of hydrogen peroxide to easily disinfect toys. I then drain and voila! Clean toys.
But here’s the thing… vinegar and rubbing alcohol have such a strong scent. I don’t clean often with them because of that. Usually the smell dissipates after a while, but they’re not always the best choice when you want to sanitize AND have the house smell good too.
I’d say of the three, hydrogen peroxide has the most mellow scent but it can’t always be used if you’re spraying fabrics (as it is a natural bleach).
So what’s the other alternative? Vodka. Oh yeah…
The Meaning of Clean: Sanitizers, Disinfectants, and Sterilizers
While the general population may use terms like sterilizer, disinfectant and sanitizer interchangeably, they actually have very specific definitions according to the government agency that regulates them, the Environmental Protection Agency (EPA). These definitions include what percentage of pathogens must be killed, in what specific amount of time they must be killed, and what protocols must be tested to achieve registration. All of these parameters are defined by the EPA and are not chosen or designated by the manufacturer.
Before delving into these terms, there is one basic term that we have to explore: Clean. There is a formal definition of “clean” when it comes to regulation. Items must be cleaned before they are sanitized, disinfected, or sterilized. Cleaning involves removing surface debris and foreign material using water, detergent, or enzymatic products. This is a necessary step because the high-level disinfection and sterilization processes cannot work effectively when foreign material is present. In the EPA-required instructions for use, all of the following products carry disclaimers about first cleaning the item to be sanitized, disinfected, or sterilized.
Sanitizers
By the EPA’s definition, sanitizers must kill 99.9% of bacteria within two hours of exposure. Up until recently, this category was made up of chemicals such as sprays, gels, and topical agents which had similar characteristics:
Toxic chemicals not suitable for extended exposure
Non-continuous kill (must be used regularly)
Must be repeated after recontamination
Since 2012, however, sanitizers now include two hard surfaces: Copper alloys and copper oxide infused hard surfaces. These surfaces had to be categorized as sanitizers as they are the first of their kind - a surface that kills 99.0% of bacteria in under two hours. So even though they are characterized as sanitizers, they do not have the characteristics listed above. Instead, they are:
Non-toxic, safe materials suitable for extended exposure
Continuous kill surfaces (is not a process that has to be repeated)
Effective even after recontamination
Disinfectants
To be categorized as a disinfectant, a product must kill 100% of bacteria, fungi, and viruses within 15 minutes of exposure. Because they are stronger than sanitizers, they are also more toxic and are therefore not approved for any exposure to human tissues. They are only to be used on hard, inanimate objects and are available both for general and medical use. Household disinfectants include bathroom cleaners, water purifiers, and pool chemicals. In medical facilities, disinfectants are used to clean equipment that does not come into contact with mucous membranes or cross the skin barrier such as floors, walls, linens, toilets, IV poles, and doorknobs. Like sanitizers, they do not kill continuously or after recontamination, so consistent reapplication is required. Unfortunately, some bacteria have developed resistance to certain disinfectants, so a combination of chemicals is required in healthcare settings.
Sterilizers
The most biocidal of the three categories, sterilizers must achieve the most stringent protocols. Sterilizers must kill 100% of all forms of microbial life within 2 minutes. This includes bacteria, fungi, viruses, and spores (the term sporicidal is often used to indicate that spores, the most difficult form to kill, are destroyed by a particular product). Sterilizers are used on instruments and materials that come into contact with mucous membranes and cross the skin barrier, including scalpels, IVs, needles, catheters, wound dressings, and any implantable device (such as a pacemaker). Sterilizers can be devices such as autoclaves, which use high-pressure steam, as well as liquid chemicals. Users must have specific training and certification to assure that the required degree of sterilization is achieved. As with most sanitizers and disinfectants, sterilization must be performed regularly and after any contamination as the product does not kill continuously.
Insect Repellent Buying Guide
Lyme. Powassan. West Nile. Zika. The list of insect-borne diseases to worry about seems to get longer—and scarier—every year. Whether you’re enjoying the great outdoors in your own backyard or on a tropical island, when you apply insect repellent, you want the best, most effective protection from biting bugs.
Our ratings identify which products work best against mosquitoes and ticks. (We no longer test our products against ticks, but past test results and our research indicate that any product that protects you from mosquito bites is also likely to protect you from tick bites.)
Choosing the right repellent matters: Our top products provided several hours of protection, and some of our lowest-scoring ones failed in as little as 30 minutes.
Check out our picks; they’ll help take the sting out of summer.
How We Test
We begin our insect repellent tests by applying a standard dose of repellent to a measured area of skin on our test subjects’ arms. (The standard dose is determined from the EPA product testing guidelines.)
After 30 minutes, these brave volunteers then place their arms into the first of two cages of 200 disease-free mosquitoes for five minutes. Our testers watch closely to see what happens inside the cage, and they count up every time a mosquito lands on a subject’s arm, uses its proboscis (its long mouth) to probe the skin in an attempt to find a capillary, or bites the subject’s arm and begins to feed—which the testers can tell by watching for the insect’s abdomen to turn from gray to red or brown.
After five minutes, the subjects withdraw their arms, then repeat the process by placing their arms into a second cage of disease-free mosquitoes of a different species, for another five minutes. The subjects then walk around for 10 minutes, to stimulate sweating—this is to mimic a real-world setting, in which users might be active while wearing repellent.
Half an hour later, this procedure is repeated once, and then again once every hour after that until a repellent fails our test, or until 8 hours have passed since it was applied. We consider a failure to be two confirmed mosquito bites in one five-minute session inside the cage, or one confirmed bite in each of two consecutive 5-minute sessions.
What is the Best Mosquito Repellent?
After more than five years of full-time travel, often visiting mosquito ridden countries, I’ve finally found of what is the best mosquito repellent. When I first wrote this post in 2013, I was about to travel to Africa and planned to put some repellents to the test.
I trialling a DEET based product, Repel 55, and a natural product, Incognito, and this article was originally a comparison of those two repellents. However, over the years I’ve trialled a much bigger range of mosquito repellents, so I’ve updated and expanded this article to give you the low-down on all the products I’ve used, how well they’ve worked and I’ll share with you the repellent I finally found that I’m 100% happy with.
Obviously, this article is completely subjective – what works for one person might not work for another and, ultimately, the effectiveness of a repellent can all come down to how well you apply it.
A little about me and my unscientific testing methodology
I have the blood that mosquitos like: I’ve travelled to many mosquito riddled places from South and Central America to Asia to Africa and the one thing that’s been consistent is my propensity for getting bitten. Whether I like it or not, mosquitos like me. In a room full of people, I’m always likely to report a bite first. In fact, I’m that person you want to sit or sleep next to because the chances are the mosquitos will be so busy feasting on me, they’ll leave you alone.
I rarely stay indoors or cloak my body at sunset: What doesn’t help in my bid not to get bitten is that I’m partial to the alluring concept of the sunset cocktail (when mosquitoes are at their most active). I’m also likely to disregarding the sensible advice to cover myself from head to toe in trousers and long sleeved tops – because, let’s face it, sun dresses go so much better with sun downers, I pack too light to include bulky cover-up clothes and, more importantly, I don’t want to be sitting, sweating uncomfortably and dehydrating over my cocktail.
I’m also pretty shoddy at the whole application process – I always miss my ankles and big toes and I wash my hands immediately after applying repellent, so the repellent that actually makes it onto my skin always has to work pretty darn hard to keep the biters at bay.
I hate mosquito nets: ever since I was a child, I’ve always needed to have my feet uncovered while I sleep, which is kind of incompatible with a mosquito net. But not only that, the nets that are small enough to carry seem to create a cocoon of humidity around you… and that’s assuming you can find one that stays up and doesn’t gape while you sleep. In short, I’m not a fan and I won’t use one unless it’s already installed.
I do use anti-malarials: in places like Africa where malaria and dengue are real issues, I do follow the sensible advice and use anti-malarial medication.
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Arthritis – A disheartening knee problem in India
Osteoarthritis is an alarming knee problem in India with the country having the second-largest osteoarthritis patients in the world. Sometimes just think, what’s wrong with your bones?
According to Mudit Khanna, Consultant Orthopedics at Wockhardt Hospital, in the previous years, Indians in the age-group of 30-50 years are falling over to osteoarthritis, still, it carries on to severe influence on the survival of the old aged people. This disease cause full immobility of the knee. If the pain is not taken care of by exercises or medicines, a person may be disabled in the future. So doctors recommend undergoing surgery.
Osteoarthritis arises when there’s a loss in and all over the joints which the body isn’t capable to completely heal. Basically, it is the process in which the wearing and tearing of the defending nerve at the last part of the tendon happens slowly and goes downhill over the course of time. Women are more likely to osteoarthritis because of weakened bones and weight issues.
Even though India is one of the best young at heart countries in a rapid-aged ecosphere, there is a rise also in the ratio of old aged individuals. There is one old aged person in each 12 people in India. With this also arises the increase in the patients of DJD- Degenerative Joint Disease or Osteoarthritis occurred by the swelling, collapse and ultimate injury of the tendon of the joints. DJD may perhaps be an infection of elderly people but it even upsets the youngsters. According to orthopedic surgeon and sports injury specialist, Dr. Dilip Nadkarni of Lilavati Hospital, Mumbai, the main reasons cricketers of India miss so many matches are a the extreme use of muscles, exhaustion and lack of fluid intake because of perspiring a lot for the spirited sport, they are liable to injury. Another reason is being overweight puts an extra burden on bones and joints causing a person more vulnerable to osteoarthritis.
Another kind of Arthritis known as Rheumatoid Arthritis (RA) is an autoimmune ailment where the body strikes itself steering to swelling and joint damage which also effects painfully on the holding of a glass. Rheumatoid Arthritis is activated from viral or bacterial infections, smoking, and contact of some types of dust or fibers. Research shows that ordinary form of Rheumatoid Arthritis begins in the lungs. The difficulties of RA are diabetes, high blood pressure, untimely heart disease, early death and musculoskeletal pain all of which are difficult to take care of. It particularly comes in the young age group 20-40 years and even in children 15 years or below and upsets numerous joints.
For the unbearable, chronic pain people usually use painkillers. The market for painkillers is increasing day by day for the chronic lower back, headaches, and arthritis prevents 30% of the Indians from enjoying their life, according to the figures collected by the Delhi Pain Management Centre.
The treatment such as replacing joints particularly complete joint replacement surgery is commonly done. High-tech, cementless implants, using a patient’s natural tissue growth is also used in joint resurfacing techniques. Another new and painless visco-supplementation process is done where a liquid is injected into the joint for short-term support, particularly for treating the pain related to knee osteoarthritis. Also available are intra-articular hyaluronic acid and other injectable medicines.
Physicians and specialists are now researching and working on the new therapeutics of certain solid medications for these diseases made in India at a lower cost.
Another safest remedy to heal these diseases is yoga and another mild remedy is the herbal one- turmeric for swelling and infection in arthritis.
To relieve all type pain you can use UltraCare PRO’s physiotherapy machine, like ultrasound physiotherapy machine, tens machine price, tens machine, IFT machine, and muscle stimulator machine for home use.
#tens machine#ultrasound physiotherapy machine#physiotherapy machine#tens machine price#ift physiotherapy machine
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Global JOINT REPLACEMENT IMPLANTS Market Status (2017-2021) and Forecast (2022E-2027F) Research Report
The report offers detailed coverage of JOINT REPLACEMENT IMPLANTS industry and main market trends with impact of coronavirus. The market research includes historical and forecast market data, demand, application details, price trends, and company shares of the leading JOINT REPLACEMENT IMPLANTS by geography. The report splits the market size, by volume and value, on the basis of application type and geography.
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More importantly, the report includes major countries market based on the type and application.
Key Companies Mentioned in the global JOINT REPLACEMENT IMPLANTS market below:
Zimmer Holdings
Johnson & Johnson
Stryker
Biomet
Smith & Nephew
Arthrex
Link
AESCULAP
Wright Medical Technology
Exactech
SAMO
Limacorporate
JRI
Kanghui (Medtronic)
Chunli
Wego
AK Medical
Global JOINT REPLACEMENT IMPLANTS Market by Type
Ceramics Artificial Joints
Alloy Artificial Joints
Oxinium Artificial Joints
Others
Global JOINT REPLACEMENT IMPLANTS Market by Application
Artificial Joints of Knee
Artificial Joints of Hip
Artificial Joints of Shoulder
Others
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Key Points covers in the Global JOINT REPLACEMENT IMPLANTS Market Research Report
Part 1: Market Overview, Development, and Segment by Type, Application & Region
Part 2: Company information, Sales, Cost, Margin etc.
Part 3: Global Market by company, Type, Application & Geography
Part 4: Asia-Pacific Market by Type, Application & Geography
Part 5: Europe Market by Type, Application & Geography
Part 6: North America Market by Type, Application & Geography
Part 7: South America Market by Type, Application & Geography
Part 8: Middle East & Africa Market by Type, Application & Geography
Part 9: Market Features
Part 10: Investment Opportunity
Part 11: Conclusion
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Finders Keepers ch5 Sneak Peek
It was an unspoken fact that history was written by its victors and its sufferers. It culminates in a selective retelling of events that is passed down via the education systems located throughout the galaxies.
During the time of the Last Corporate War—with the survivors being Anshin, Atlas, Dahl, Hyperion, Jakobs, Maliwan, Pangolin, S&S Munitions, Tediore, Vladof, and other megacorporations—only one emerged to stand at the forefront of innovation. With the fortunate excavation on the planet Promethea, Atlas Corporation had reverse-engineered the alien Eridian technology to give themselves an edge over their competitors.
With the discovery came a new line of machines, starships, and weaponry that were to be manufactured, as well as the earlier prototypes of the digistruct technology. Eventually all that led to the colonization of the planet Pandora and a monopoly of the interplanetary scale, allowing Atlas control over a significant portion of the market for goods and services. Their success had spurred on other megacorporations to explore other frontier planets in search of more alien technology and similar resources.
Yet of the numerous planets that made up the solar system, only a few of them were well-known intergalactically.
Many knew Aquator to be a scenic tourist hotspot with its many small islands to vacation on.
Athenas was known to be a planet governed by the Order of the Impending Storm—a religious monastic sect whose influence reached all aspects of their civilization.
Dionysus was a party planet, known for visitors’ drunken escapees and the tourist tagline “what happens in Dionysus, stays in Dionysus.”
Hermes was a planet with a thin atmosphere that was rich in helium, orbiting around a giant blue star instead of the sun.
Pandora was one of the frontier planets, recently colonized by Atlas—and other megacorporations like Dahl and Hyperion—as a research test site and as a settlement.
The last was Promethea, an environment of harsh extraterrestrial living conditions because of the excessive mining, rapid industrialization, martial law, and the like.
Planets like Artemis, Demophon, Eden-5, Eden-6, Eden-7, Epitah, Eunomia, Grophic IV, Hephaestus, Hera, Hestias, Hieronymous, Honus 4651, Isolus, Menoetius, Tantalus, Themis, and Thrace had their own reputations, but they were universally regarded to be on the same respectable level as the old planetary system.
Modeled after Earth, all of the Edens founded were known to be settlements of research, boasting of academic excellence, selectivity in admissions, and social elitism. Only the brightest—or the wealthy—were allowed citizenship or temporary student visas, to learn at the competing prestigious institutions and to increase their prospects of being hired by a megacorporation. Largely peaceful, the citizens of these planets were accustomed to a life of high-tech luxuries.
And unlike Eden-5 whose reputation was overshadowed by their corrupt police force, Eden-7 had some of the largest university financial endowments which allowed for many resources for their academic programs and research endeavors.
Bordering the main hub of the city was a tall building. Not quite a skyscraper, the architecture resembled that of an industrial hangar that had been elongated to touch the skies.
Pulling into the nearest available parking spot, a well-dressed long-limbed man emerged from a black vehicle. His hair seemed to have a burnished bronze luster from the sun.
Smoothing out the nonexistent wrinkles in his suit and anxiously adjusting his tie, he walked around to the passenger side to retrieve a clunky robotic prototype. Pressing the ON/OFF button, he waited for it to finish activation.
Snatching the laptop briefcase in the meanwhile, he murmured to the floating device, “Alright, it’s our moment to shine, Dumpy.” Closing the door with a nudge of his hip, he pocketed the key fob after hearing the car beep. “We got this in the bag.” He smacked the briefcase. “Confidence is the key.”
A deep, synthetic baritone—the voice package belonged to the deceased actor James Earl Jones—replied in the affirmative.
Deliberately tilting his chin up, Rhys left the parking with Dumpy whirring in the air quietly beside him. Not once did he allow himself to look down at his feet or to avoid eye contact.
At this time, even with the employees retiring for the night, it seemed the world was at its usual and undisturbed.
The uniforms that Atlas personnel wore was a curious mix of business and military dress code, which was what distinguished one from the other. Red accents were intermingled in a mostly dark or neutral color palette.
Cyborgs—humans having undergone cybernetic enhancement surgery such as bionic limbs or microchip implants—and androids were virtually indistinguishable. A usual sight, they shambled along with the rest of the unaugmented humans.
Soon, Rhys spotted an interesting individual among the crowd that wound around a giant statue. The first thought that came to his head was the word “white;” her hair and skin were bleached of all color, like a ghost.
The woman was dressed in a furred-collar military vest worn over a black T- shirt that exposed her midriff. Leather trousers hugged her figure, as well as her knee-high boots. Even as she marched her back was ramrod-straight, like a sword forged of steel. Likely due to the leather material of the long opera-length gloves she wore, they reminded Rhys of the black rubber gloves that a butcher would use instead of a fashionable evening accessory.
There was even a large Bowie knife strapped to the belt and a gun holster. Since the sight of her didn’t cause anyone alarm, he could only assume that she was authorized to carry weapons in plain sight.
She drew several stares from passersby, which Rhys suspected wasn’t only for her distinguishing features.
He narrowed his eyes. There was the smallest sense of recognition, although it escaped his memory of how and where he has seen her before. As they traveled, the waning sun could be seen through the openings placed strategically throughout the compound. A gradience of crimsons, oranges, and golds was suffused over the rigid gunmetal grays.
The building was once a product of its times—an outdated corporate steel-and-glass facade—before the property on the real estate market had been purchased by the CEO. During the initial remodeling phase, the exposed foundation and rusted structure made it appear like a skeleton with its flesh peeled off.
The soles of his shoes were clacking against the industrial-sized plates as Rhys craned his neck, spotting the Atlas logo affixed overhead. Neon yellow LED tubing was installed throughout the architecture.
The crowd had thinned at the entrance, where the woman was headed toward. By this time, the premises was mostly deserted.
That illusion of calm was shattered when the woman jerked to a sudden halt.
A split second later, she evaded the gunshots by pitching her body into a barrel roll. Scorched dents were left in the metal where she once stood.
Slamming her hand and feet onto the ground, the woman regained balance. She had already been in mid-motion of reaching into her holster, but she froze up at the sight of the two guns trained on her.
A spear of ice pierced Rhys from the top of his head to the soles of his feet.
Hastily retreating a few steps back, he felt his back collide roughly against the pedestal of the Greek titan Atlas. Looming overhead, the statue was hoisting a massive sphere meant to represent Earth.
“Don’t let them see you,” he hissed, snatching Dumpy from midair. Sweat was adhering his dress shirt to his skin. He leaned slightly forward, ignoring the simulated heavy breathing from the robot’s voice modulator. “Let me see what you see. Enhance.”
Much like a video recorder, Dumpy was recording the situation live. The zoom function allowed Rhys to see a close-up of the two armed assailants who had trodden forth. They’d worn nondescript clothing meant to blend in and catch their target off-guard. If it hadn’t been for their faces, he wouldn’t have been able to ascertain the gender from just their builds alone.
Rhys wasn’t much of an expert on firearms—his knowledge of guns was limited to movies and video games—but the make and model appeared vintage, likely contraband. Guns made on Earth were considered outdated and weak compared to the advanced arms mass-produced by megacorporations today.
Rhys was too far to hear the quieter words being exchanged, but the volume of the shouting was clearly agitated. They were yelling at her to drop her gun and to kick it away.
This did not seem like a drill.
Only the three individuals were found up ahead. With no one else emerging from the sliding doors, it seemed the building had gone under lockdown. Security cameras were pointed down at the scene.
The inactivity was making him restless. “What’s taking so long?” he demanded. “Why isn’t anyone doing anything?”
“It is likely the result of the bystander effect and other causes,” Dumpy commented in its deep, measured intonation. “Do you want me to call the authorities? It is prudent to reduce fatal casualties.”
The robot’s unaffected droning had managed to steady his nerves somewhat, helping him regain a semblance of self-control. Rhys worried his lower lip.
The sun was slowly falling below the horizon, and darkness threatened to swallow the world.
Waiting for the police to arrive might be a risk that he wasn’t certain the lady could afford to have. On the other hand, he would likely be gunned down the instant that he called attention to himself; running was not ideal.
He had to create a distraction.
“No.” Rhys sank down into a crouch. His hands were trembling. “We’re going to do one better.”
Managing to enter the correct numeric sequence into the holographic lock, he snapped the briefcase open and disengaged the laptop from Sleep mode. His fingers fumbled across the keyboard, entering the lengthy password.
Forcing his fear back, he whispered, “I’m going to disable the lights. It’ll give you a narrow window before the backup generator starts. I’ll need you to activate your defense matrix and take out those two guys. Don’t overdo the voltage.” He glanced up. “Do you think we can pull that off?”
Processing the command, Dumpy calculated the plan’s estimated percentage of success aloud. It also warned that what Rhys was doing was illegal.
“Well, we’re going to try.” Every movement was essentially muscle memory, like a choreographed dance. Brown eyes darted across the screen. “Good thing I still have remote access to the server. This is child’s play. ...Sorry, buddy. You’re gonna be the hero. I believe in you.”
The sun had set completely, with only the artificial lights illuminating the compound. Switching off the electricity supply a few precious minutes later, they were plunged into absolute darkness.
For a few seconds, he could make out nothing but dark lumps—silhouettes who were startled by the abrupt power outage. There was not much time. Motioning rapidly, Rhys hissed under his breath, “Go, go, go!”
He was crossing his fingers.
For a moment, the shape of Dumpy could be seen hovering over one of the men.
There was an unnatural humming, before white-blue light abruptly burst into vision, temporarily igniting the night. The man’s limbs were flailing as though a live wire had been attached to each of his nerves, his body convulsing like a rag doll as the violent electrical current pulsed through him. Not a moment too soon, the tased man collapsed, paralyzed, and his partner shouted his name.
Like machine fire, shots were unloaded blindly at the crackling light. They sounded like fireworks going off, with missed bullets shaking the entire building structure.
Despite Dumpy’s best attempts at evasion—dodging, flying like an erratic pendulum—sparks could be seen when bullets struck sheet metal.
Rhys’ heart plummeted. To his horror, even with the bulletproof design, the robot was soon spiraling out of control. Crashing into the ground like a small meteor, upon impact its emotionless “ow, ow, ow” distorted in volume, becoming an unintelligible screech.
“Nooo! Dumpy!”
“Atlas will never fall!” The voice was female and vaguely familiar; it had come slicing through the shadows as sharp as a knife.
In the distraction, semi-translucent wings, reminding Rhys of crackling electricity, unfurled from the lithe woman’s back like a butterfly from a cocoon. Half of her body was glowing, where the Siren birthmarks were.
It was over in a second.
By the time the man whirled on his feet, a dime-sized hole had been left between his eyes, revealing liquefied brain matter. The woman could be seen standing upright, the barrel of her customized pearlescent revolver smoking slightly from the discharged elemental round. Her finger only left the trigger when the assailant fell.
Nobody in this place moved a muscle, and it was so quiet that even the sound of their breathing could be heard.
(Ch 1-4 of the scifi AU Finders Keepers can be found on AO3! Ch5 is currently in progress.)
#rhys the company man#rhack#tales from the borderlands#commandant steele#scifi#siren#dumpy#finders keepers#sneak peek#phoenixtakaramono#flashback#I am out of practice with action sequences#not the full scene but the majority#worldbuilding
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Bioceramics and Hydroxyapatite Market: Global Industry Analysis, Size, Share, Growth, Trends, and Forecasts 2020 - 2030
Global Bioceramics and Hydroxyapatite Market: Overview
Bioceramics such as tricalcium phosphate (TCP) and hydroxyapatite (HA) have garnered much attention and recognition in the process of development of biomaterials owing to its various attributes, such as porosity and density. Furthermore, biometric and mechanical characteristics are similar to that of the nature of the bone structure. The growth of the global bioceramics and hydroxyapatite market is forecasted to be driven by rising number of orthopedic and dental implants.
Bioceramics and hydroxyapatite are important elements in the making of orthopedic and dental implants, which has earned them the name medical ceramics. Bioglass, calcium phosphate (hydroxyapatite and tricalcium phosphate), zirconia, and aluminum oxide are being utilized extensively in bioceramics. These elements are mostly based on nitrides or carbides and oxides and come with outstanding bio-compatibility, which is likely to amplify growth opportunities of the global bioceramics and hydroxyapatite market over the period of assessment, from 2020 to 2030.
Type, application, and region are the three significant parameters based on which the global bioceramics and hydroxyapatite market has been classified. Such detailed analysis of the market comes with the sole purpose to provide stakeholders with a detailed and clear analysis of the global bioceramics and hydroxyapatite Market.
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Global Bioceramics and Hydroxyapatite Market: Notable Developments
One of the important market developments that give a quick view of the dynamics pertaining to the global bioceramics and hydroxyapatite market is mentioned as below:
In March 2020, US-based leading manufacturer of electronic components, AVX Corporation merged with Japan-based Kyocera Corporation. The latter is a multinational electronics and ceramics manufacturer. The merger of these two companies is expected to widen and diversify the product portfolio of the companies.
Some of the prominent organizations in the global bioceramics and hydroxyapatite market comprise the below-mentioned:
Kyocera Corporation
Morgan Technical Ceramics
Berkeley Advanced Biomaterials, Inc
Plasma Biotal Ltd
Nano Interface Technology
Plasma Biotal Ltd
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Global Bioceramics and Hydroxyapatite Market: Key Trends
The global bioceramics and hydroxyapatite market is characterized by the presence of the following restraints, drivers, and opportunities.
High Demand for Dental and Orthopedic Implants to Amplify Growth Opportunities
The global bioceramics and hydroxyapatite market is expected to be influenced by the rising number of orthopedic and dental implants worldwide. Manufacturers are increasingly opting for use of bioceramics and hydroxyapatite to meet with the demand for durable and effective dental and orthopedic implants. Bioceramics and hydroxyapatite come with features like high mechanical strength, thermal and chemical stability, and its biocompatibility. However, concern for health related to the use of materials, such as titanium amongst the users has compelled the makers of implants to shift their focus to implants that are made using zirconia. Implants made from zirconia are durable and are resistant to corrosion.
A rise in the making of knee, joints and hip replacements and dental implants are likely to trigger growth of the global bioceramics and hydroxyapatite market over the tenure of assessment, from 2020 to 2030.
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Global Bioceramics and Hydroxyapatite Market: Geographical Analysis
From a geographical perspective, the market is expected to be dominated by North America. The region is set to witness considerable growth due to the presence of several leading market players in the region. Asia Pacific is estimated to come up as a rapidly growing region. Increased awareness about the use of such products together with the increasing disposable income is likely to support growth of the bioceramics and hydroxyapatite market in Asia Pacific.
This study by TMR is all-encompassing framework of the dynamics of the market. It mainly comprises critical assessment of consumers' or customers' journeys, current and emerging avenues, and strategic framework to enable CXOs take effective decisions.
Our key underpinning is the 4-Quadrant Framework EIRS that offers detailed visualization of four elements:
Customer Experience Maps
Insights and Tools based on data-driven research
Actionable Results to meet all the business priorities
Strategic Frameworks to boost the growth journey
The study strives to evaluate the current and future growth prospects, untapped avenues, factors shaping their revenue potential, and demand and consumption patterns in the global market by breaking it into region-wise assessment.
The following regional segments are covered comprehensively:
North America
Asia Pacific
Europe
Latin America
The Middle East and Africa
The Bioceramics and Hydroxyapatite market has been undergoing some remarkable growth dynamics, shaped increasingly by digital technologies and environmental sustainability concerns of product development. Over the decades, the feedstock variability and the onslaught of cheaper substitutes have squeezed in profit margins of the chemical and materials sector. On the other hand, the value chain of several businesses in the Bioceramics and Hydroxyapatite market has undergone overhaul, increasingly rendering some aspiring players with greater control over the forces and demand. The penetration of Industry 4.0 in in the market has stirred game-changing trends for range of stakeholders in the overall chemicals and materials sector. Manufacturing and production environments of businesses in the Bioceramics and Hydroxyapatite market are keen on formulating and implementing strategic frameworks that will turn them into digital enterprises.
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Medical Bionic Implants And Exoskeletons Market is predicted to rise to nearly US$ 585 Mn by 2027
An increasing prevalence of diabetes and obesity in the global geriatric population is leading to a rise in the number of amputations every year. In the U.S. alone, nearly 2 million people are currently living with limb loss as per the National Center for Health Statistics. Such sobering statistics are the main reason why we at Future Market Insights have decided to prepare the report ‘Medical Bionic Implants and Exoskeletons Market: Global Industry Analysis 2012–2016 and Opportunity Assessment 2017 - 2027’. We have studied the global medical bionic implants and exoskeletons market for a 10-year period on the basis of key parameters including Y-o-Y growth rate, absolute dollar and incremental dollar opportunity.
The global medical bionic implants and exoskeletons market has been divided into seven geographic regions for the purpose of study. Each region has been studied in required detail in its own section of the medical bionic implants and exoskeletons market report. There are often regulations, norms, trends, or guidelines that may pertain only to a single region and these are analysed herein. The historical market size of major countries within the region for the period from 2012 to 2016 is contrasted with the anticipated forecast for the decadal study ending in 2027. The market attractiveness analysis concludes this important chapter and is particularly helpful for key stakeholders who need to make long-term, strategic investment decisions.
The medical bionic implants and exoskeletons market report begins with the executive summary that is concise yet comprehensive. It provides a market overview along with our analysts’ unique insights. A Wheel of Fortune gives you an attractive, easy-to-understand graphical representation of the link between the different segments that exist in the medical bionic implants and exoskeletons market. We have also spoken about the growth opportunities that exist in the medical bionic implants and exoskeletons market by classifying them into three categories on the basis of CAGR. (High, medium, and low growth)
There are a few assumptions made with respect to the medical bionic implants and exoskeletons market while certain acronyms have also been used for convenience. Both have been explained in a distinct section of the medical bionic implants and exoskeletons market report. Our readers are recommended to take a quick glance at this to dispel any confusion and fully understand the medical bionic implants and exoskeletons market with all of its nuances and technicalities. There are also a few forecast factors that could have an outsized impact on the medical bionic implants and exoskeletons market and their impact has been explained accordingly. Certain assumptions related to the forecast follow this section and readers are recommended to glance at them as well. The market introduction is a vital part of the medical bionic implants and exoskeletons market report. This is where we have mentioned the definition along with the taxonomy of the medical bionic implants and exoskeletons market.
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Global Medical Bionic Implants and Exoskeletons Market Taxonomy
Product
Bionic Forelimbs/Hand Bionics
Bionic Legs/Lower Limbs
Bionic Exoskeletons and Suits
Wrist Bionics
Bionic Elbow Braces
Bionic Limbs
Bionic Fingers
Bionic Knee Braces
Ankle Bionics
Bionic Foot Below Knee
Region
North America
Latin America
Western Europe
Eastern Europe
APEJ
Japan
MEA
Mode
Prosthetic Bionics
External Bionics
Keeping abreast of the latest trends is absolutely imperative if you wish to be one step ahead in a market as exciting and dynamic as the medical bionic implants and exoskeletons market. In our market dynamics section, we have looked at the drivers, restraints, and opportunities that exist in the medical bionic implants and exoskeletons market in great detail. The macroeconomic factors and the opportunity analysis are of particular relevance to you as a reader as they allow you to get a general idea of both the current as well as anticipated future prospects waiting to be tapped in the medical bionic implants and exoskeletons market.
A market analysis can scarcely be considered complete unless you conduct an in-depth SWOT analysis of the immediate competition. Our competition dashboard highlights the medical bionic implants and exoskeletons market structure, assesses and maps it on the basis of taxonomy and intensity. We have profiled the top companies in the medical bionic implants and exoskeletons market that are globally renowned. We have highlighted their key financial ratios, strategies adopted, and relevant recent developments so that you can get a thorough idea of what they are planning or have already accomplished and accordingly plan your course of action.
Truly unique research methodology with the X factor in every report
We at Future Market Insights take great pride in our tried-and-tested research methodology that we use for every report, including the medical bionic implants and exoskeletons market report. Our team of expert analysts begin with extensive primary and secondary research to formulate a discussion guide and create a list of key market players. After conducting several interviews, we validate the gathered data using the triangulation method. Lastly, we scrutinise this data using company tools to gain all the necessary insights that our valued clients need pertaining to the medical bionic implants and exoskeletons market.
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Below-the-knee Implants Market
https://social.urgclub.com/read-blog/185870
#Below-the-knee Implants Market scope#Below-the-knee Implants Market research#Below-the-knee Implants Market report
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Large-Joint Reconstructive Implants Market – Global Industry Analysis Size, Share, Trends and Profitable Segments Breakdown and Detailed Analysis of Current and Future Industry Figures till 2028|Key Players Smith+Nephew; DJO, LLC; Medical Devices Business Services, Inc.; Aesculap, Inc.
Large-joint reconstructive implants market competitive landscape provides details by competitor. Details included are company overview, company financials, revenue generated, market potential, investment in research and development, new market initiatives, global presence, production sites and facilities, production capacities, company strengths and weaknesses, product launch, product width and breadth, application dominance. The below data points provided are only related to the companies’ focus related to healthcare analytical testing services market. The large-joint reconstructive implants market may come across few challenges in the near future. Absence of skilled professionals or large joint reconstructive surgeons is projected to negatively influence the large-joint reconstructive implants market. This shortage is most likely to happen more in advancing countries than advanced ones. One of the major hindering factors of the growth of the market is the usage of substitute treatments. Various patients in pain from arthritis have preference of novel therapies and substitute medications instead of large-joint reconstructive implants surgeries. This large-joint reconstructive implants market report provides details of new recent developments, trade regulations, import export analysis, production analysis, value chain optimization, market share, impact of domestic and localised market players, analyses opportunities in terms of emerging revenue pockets, changes in market regulations, strategic market growth analysis, market size, category market growths, application niches and dominance, product approvals, product launches, geographic expansions, technological innovations in the market. To gain more info on large-joint reconstructive implants market contact Data Bridge Market Research for an Analyst Brief, our team will help you take an informed market decision to achieve market growth.
Arthritis and several other orthopaedic conditions alter the working and functional of the joints and injure the design integrity. Growing endurance of these conditions has provoked the demand for inventive and effective treatment procedures. The large-joint reconstructive implants market will be reconstituted to a new normal which going onwards in a post COVID-19 era will be frequently reconsidered and reformulated. Staying on top of direction and authentic analysis is paramount now more than ever to manage uncertainty, change and continuously adapt to new and evolving market conditions. Inventions and advancements in technological offerings and surgical technology used for the treatment; this factor is anticipated to escalate the growth of the large-joint reconstructive implants market. Increasing popularity of aging population that has seen increase in several orthopaedic conditions is one of the major factors boosting the growth of the large-joint reconstructive implants market. Absence of scientifically skilled specialists and surgeons required for the appropriate treatment and complete process of practical implants is estimated to most likely act as a hamper the large-joint reconstructive implants market. Amidst the increase in efforts for separation and economic outpacing, the changeable relationship between China and the rest of the world will impact meeting and opportunities in the large-joint reconstructive implants market. The large-joint reconstructive implants market is estimated to grow on details of growing old age populations and growing need in advanced and developing nations. Growing advantage of obesity across the globe is most likely to escalate the demand for large-joint reconstructive implants. Obesity may further guide to growing condition of arthritis and osteoarthritis, which results in, boosting the large-joint reconstructive implants market. Another factor escalating the large-joint reconstructive implants market are technological advancements in the large-joint reconstructive implants processes. These developments for example the advent of computerization, robotic surgery, and 3D printing can help to lessen the time and enhance ability of surgical processes. These developments offer exclusive care to those suffering from joint disorders. This is promoting companies to adopt such advancements in the near future by concentrating on improving the patient’s character of life.
Global Large-Joint Reconstructive Implants Market, By Joint (Knee Replacement, Hip Replacement, Shoulder Replacement Product, Ankle Replacement Product), Country (U.S., Canada, Mexico, Germany, Italy, U.K., France, Spain, Netherland, Belgium, Switzerland, Turkey, Russia, Rest of Europe, Japan, China, India, South Korea, Australia, Singapore, Malaysia, Thailand, Indonesia, Philippines, Rest of Asia-Pacific, Brazil, Argentina, Rest of South America, South Africa, Saudi Arabia, UAE, Egypt, Israel, Rest of Middle East & Africa) Industry Trends and Forecast to 2028The large-joint reconstructive implants market is expected to gain market growth in the forecast period of 2021 to 2028. Data Bridge Market Research analyses that the market is growing with the CAGR of 13.20% in the forecast period of 2021 to 2028 and is expected to reach USD 10.37 billion by 2028. The growing number of clinical trials will help in escalating the growth of the healthcare analytical testing services market. Large-joint reconstructive implants can be termed as the process of adjusting the impaired joints of the human body by originating an implant and reassembling the design of the joints that have been injured.
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Healthcare Analytical Testing Services Market Country Level Analysis:
The large-joint reconstructive implants market is analyzed and market size insights and trends are provided by country, type and end user as referenced above.
The country section of the large-joint reconstructive implants market report also provides individual market impacting factors and changes in regulation in the market domestically that impacts the current and future trends of the market. Data points such as consumption volumes, production sites and volumes, import export analysis, price trend analysis, cost of raw materials, down-stream and upstream value chain analysis are some of the major pointers used to forecast the market scenario for individual countries. Also, presence and availability of global brands and their challenges faced due to large or scarce competition from local and domestic brands, impact of domestic tariffs and trade routes are considered while providing forecast analysis of the country data. The countries covered in the large-joint reconstructive implants market report are the U.S., Canada and Mexico in North America, Germany, France, U.K., Netherlands, Switzerland, Belgium, Russia, Italy, Spain, Turkey, Rest of Europe in Europe, China, Japan, India, South Korea, Singapore, Malaysia, Australia, Thailand, Indonesia, Philippines, Rest of Asia-Pacific (APAC) in the Asia-Pacific (APAC), Saudi Arabia, U.A.E, South Africa, Egypt, Israel, Rest of Middle East and Africa (MEA) as a part of Middle East and Africa (MEA), Brazil, Argentina and Rest of South America as part of South America.
Healthcare Analytical Testing Services Market Scope and Market Size:
The large-joint reconstructive implants market is segmented on the basis of type and end user. The growth amongst these segments will help you analyze meagre growth segments in the industries, and provide the users with valuable market overview and market insights to help them in making strategic decisions for identification of core market applications.
Based on joint, the large-joint reconstructive implants market is segmented into knee replacement, hip replacement, shoulder replacement product, ankle replacement product. Knee replacement and hip replacement are both sub-segmented into product and component.
The major players covered in the large-joint reconstructive implants market report are Smith+Nephew; DJO, LLC; Medical Devices Business Services, Inc.; Aesculap, Inc.; Samo Industries; Stryker Corporation; Zimmer Biomet; Smith & Nephew; DJO Global; Medtronic; NuVasive, Inc.; Aesculap Implant Systems, LLC; Wright Medical Group N.V.; Groupe FH ORTHO communication; Bioimpianti; Exactech, Inc.; Limacorporate S.p.a.; Colfax Corporation and SAMO SpA.
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The Global Glass Scintillator Market Report, published by Reports and Data, is a paradigm of the comprehensive analysis of the global Glass Scintillator Market, which includes meticulous research on the market value and growth rate over the forecast period of 2020-2027. The broad analysis covers several market dynamics, such as growth drivers, restraints, market opportunities, challenges, threats, and potential risks. The research report describes the market workings, explicating Porter’s Five Forces, and SWOT Analysis at length. It sheds light on the regional market expansion, market segmentation by product and application type, supported by exact market figures, as well as the intense competition among the leading market players. The company profiles of these market players have been enumerated in this report. Moreover, the latest Glass Scintillator Market study imparts meaningful insights into the market statistics and important data, which are said to help business executives, product managers, and manufacturers to identify their financial positions and formulate various policies based on market parameters like partnerships, mergers & acquisitions, expansion, and new product launches.
However, the latest report is the most recent one providing information about the current economic situation that has been severely hit by the COVID-19 outbreak. The pandemic has seemingly resulted in considerable changes in the way the Food Texture industry functions. The report entails a thorough appraisal of the present and future effects of the pandemic on this ever-evolving business sector.
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The research report surrounding the global Glass Scintillator Market explains each segment of the market at length. The segmental study included in the report points out the major opportunities for the growth of these segments over the projected timeline. In addition, the regional analysis of the global Glass Scintillator Market included helps the reader acquire an in-depth understanding of the development of different geographical markets in recent years and the upcoming years as well. Other significant analyses, such as the study of qualitative and quantitative parameters of the Glass Scintillator Market, are also part of this report.
Global Glass Scintillator Market: Competitive Analysis
The following are the key industry participants:
Rexon Components & TLD Systems Inc., Saint-Gobain Ceramics & Plastics, Inc., Nihon Kessho Kogaku Ltd., Hitachi Metals Ltd., Hamamatsu Photonics, Epic Crystal Co. Ltd., Dynasil Corporation, Food Machinery Corporation (FMC) Ltd., Albemarle Corporation, and Amcrys
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Global Glass Scintillator Market: Regional Landscape
The following are the leading regions are studied in the global Glass Scintillator Market region:
North America
Europe
Asia Pacific
Latin America
Middle East & Africa
Product Landscape of the Glass Scintillator Market Includes:
Below 400 nm
Above 400 nm
Application Spectrum of the Glass Scintillator Market Includes:
Oil & Gas
Nuclear Power Plant
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Report Highlights
Detailed pricing analysis based on product and application types and geographical segments
Deep understanding of the vendor landscape, as well as the notable companies participating in this industry to help get an idea of the competition level
A complete overview of the regulatory and investment scenarios of the global Glass Scintillator Market
Scrutiny of the general factors influencing market forecast
A closer look into the growth opportunities available in the fast-paced market
Comprehensive analysis of the numerous global market trends to help identify key market developments
Global Glass Scintillator Market Report - ToC:
1. Report Overview
1.1 Research Scope
1.2 Key market segments
1.3 Leading market players
1.4 Market segmentation by type
1.5 Market segmentation by application
1.6 Market segmentation by geography
1.7 Key learning objectives
1.8 Report timeline
2. Global Growth Trends
2.1 Global market size
2.2 Latest market trends by region
2.3 Key corporate trends
3. Competitive Outlook
3.1 Global Glass Scintillator Market size by manufacturers
3.2 Global Glass Scintillator Market key players
3.3 Products/solutions/services by the major players
3.4 New market entrants
3.5 Mergers, acquisitions, joint ventures, and expansion plans
4. Product Segmentation
4.1 Global Glass Scintillator Market sales by product type
4.2 Global Glass Scintillator Market revenue by product type
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Bioceramics and Hydroxyapatite Market – Overview on Key Innovations 2030
Global Bioceramics and Hydroxyapatite Market: Overview
Bioceramics such as tricalcium phosphate (TCP) and hydroxyapatite (HA) have garnered much attention and recognition in the process of development of biomaterials owing to its various attributes, such as porosity and density. Furthermore, biometric and mechanical characteristics are similar to that of the nature of the bone structure. The growth of the global bioceramics and hydroxyapatite market is forecasted to be driven by rising number of orthopedic and dental implants.
Bioceramics and hydroxyapatite are important elements in the making of orthopedic and dental implants, which has earned them the name medical ceramics. Bioglass, calcium phosphate (hydroxyapatite and tricalcium phosphate), zirconia, and aluminum oxide are being utilized extensively in bioceramics. These elements are mostly based on nitrides or carbides and oxides and come with outstanding bio-compatibility, which is likely to amplify growth opportunities of the global bioceramics and hydroxyapatite market over the period of assessment, from 2020 to 2030.
Type, application, and region are the three significant parameters based on which the global bioceramics and hydroxyapatite market has been classified. Such detailed analysis of the market comes with the sole purpose to provide stakeholders with a detailed and clear analysis of the global bioceramics and hydroxyapatite Market.
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Global Bioceramics and Hydroxyapatite Market: Notable Developments
One of the important market developments that give a quick view of the dynamics pertaining to the global bioceramics and hydroxyapatite market is mentioned as below:
In March 2020, US-based leading manufacturer of electronic components, AVX Corporation merged with Japan-based Kyocera Corporation. The latter is a multinational electronics and ceramics manufacturer. The merger of these two companies is expected to widen and diversify the product portfolio of the companies.
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Some of the prominent organizations in the global bioceramics and hydroxyapatite market comprise the below-mentioned:
Kyocera Corporation
Morgan Technical Ceramics
Berkeley Advanced Biomaterials, Inc
Plasma Biotal Ltd
Nano Interface Technology
Plasma Biotal Ltd
Global Bioceramics and Hydroxyapatite Market: Key Trends
The global bioceramics and hydroxyapatite market is characterized by the presence of the following restraints, drivers, and opportunities.
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High Demand for Dental and Orthopedic Implants to Amplify Growth Opportunities
The global bioceramics and hydroxyapatite market is expected to be influenced by the rising number of orthopedic and dental implants worldwide. Manufacturers are increasingly opting for use of bioceramics and hydroxyapatite to meet with the demand for durable and effective dental and orthopedic implants. Bioceramics and hydroxyapatite come with features like high mechanical strength, thermal and chemical stability, and its biocompatibility. However, concern for health related to the use of materials, such as titanium amongst the users has compelled the makers of implants to shift their focus to implants that are made using zirconia. Implants made from zirconia are durable and are resistant to corrosion.
A rise in the making of knee, joints and hip replacements and dental implants are likely to trigger growth of the global bioceramics and hydroxyapatite market over the tenure of assessment, from 2020 to 2030.
Global Bioceramics and Hydroxyapatite Market: Geographical Analysis
From a geographical perspective, the market is expected to be dominated by North America. The region is set to witness considerable growth due to the presence of several leading market players in the region. Asia Pacific is estimated to come up as a rapidly growing region. Increased awareness about the use of such products together with the increasing disposable income is likely to support growth of the bioceramics and hydroxyapatite market in Asia Pacific.
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Medical Ceramics Market by Material (Zirconia, Alumina, Hydroxyapatite, Glass, Bioresorbable, Bioinert, Bioactive, Piezoceramics), Application (Dental, Orthopedic, Cardiovascular, Diagnostic, Surgical Implants, Dermal Fillers) - Global Forecast to 2025 published on
https://www.sandlerresearch.org/medical-ceramics-market-by-material-zirconia-alumina-hydroxyapatite-glass-bioresorbable-bioinert-bioactive-piezoceramics-application-dental-orthopedic-cardiovascular-diagnostic-surgical.html
Medical Ceramics Market by Material (Zirconia, Alumina, Hydroxyapatite, Glass, Bioresorbable, Bioinert, Bioactive, Piezoceramics), Application (Dental, Orthopedic, Cardiovascular, Diagnostic, Surgical Implants, Dermal Fillers) - Global Forecast to 2025
Increasing research activities for the development of novel medical ceramics to support market growth”
The global medical ceramics market is projected to reach USD 12.9 billion by 2025 from USD 9.6 billion in 2020, growing at a CAGR of 5.9% from 2020 to 2025. Factors such as increasing research activities for the development of novel medical ceramics, growing demand for medical ceramics in plastic surgeries & wound healing applications; the rising number of hip & knee replacement procedures; and the increasing demand for implantable devices drive the growth of the medical ceramics market. The growing healthcare industry in emerging economies and increasing research activities in medical ceramics for nanotechnology and electronic device applications are likely to offer lucrative growth opportunities for players in the medical ceramics market. However, factors such as stringent clinical & regulatory processes and unfavorable healthcare reforms in the US are expected to restrain this market’s growth. Moreover, issues related to reparability & recycling processes and the shortage of skilled surgeons & dental professionals are major challenges adversely impacting this market’s growth. The growth of the market is also expected to slow temporarily during the forecast period due to the COVID-19 pandemic.
“Zirconia: The largest segment of bioinert market”
Based on type, the global bioinert ceramics market is segmented into zirconia, alumina, and other bioinert ceramics (titanium, pyrolytic carbon, and silicon nitride). In 2019, the zirconia segment accounted for the largest share of the global bioinert ceramics market. This segment is also expected to grow at the highest rate during the forecast period. This can be attributed to the advantages of zirconia over other ceramic materials, the rising demand for aesthetically attractive dental restorations, the launch of new & advanced products, and growing research activities to develop novel products.
“Hydroxyapatite: The largest segment of bioactive market”
Based on type, the global bioactive ceramics market is segmented into hydroxyapatite and glass ceramics. In 2019, the hydroxyapatite segment accounted for the largest share of the global bioactive ceramics market. This segment is also expected to grow at the highest rate during the forecast period. Hydroxyapatite has high biocompatibility, bioactivity, and osteoconductivity; making it suitable for a wide range of applications, such as a bone void filler for the orthopedic, spine, maxillofacial, and dental surgery; restoration of periodontal defects; orthopedic and dental implant coating; bone-tissue engineering; and gene delivery. Due to its bioactivity, hydroxyapatite is an alternative to allogenic & xenogeneic bone grafts, resulting in shorter healing times. Additionally, it is used as an injectable cement or coating on titanium & titanium alloy implants to reduce the implant rejection rate.
“Dental Applications: The dominating application segment of medical ceramics market”
Based on application, the global medical ceramics market is broadly segmented into dental applications, orthopedic applications, cardiovascular applications, surgical instruments, diagnostic instruments, plastic surgery, and other applications (cancer, dialysis, drug delivery systems, and gene therapy). The dental applications segment accounted for the largest share of the medical ceramics market in 2019. This segment’s large share can be attributed to the increasing number of cosmetic dental procedures and dental implant procedures across various regions and rising periodontal disorders.
“North America: The largest share contributing regional segment of the global medical ceramics market in 2019”
The medical ceramics market is segmented into five major regions, namely, North America, Europe, the Asia Pacific, Latin America, and Middle East and Africa. North America accounted for a major share of the medical ceramics market in 2019. In the US, the medical ceramics market is driven by the growing demand for plastic surgeries, increasing cancer incidence, growing prevalence of cardiovascular diseases, and the growing number of conferences & symposiums. In Canada, market growth is driven by increasing R&D activities for medical ceramics and growth in the geriatric population.
A breakdown of the primary participants referred to for this report is provided below:
By Company Type: Tier 1–45%, Tier 2–34%, and Tier 3– 21%
By Designation: C-level–47%, Director-level–33%, and Others–20%
By Region: North America–35%, Europe–32%, Asia Pacific–25%, Latin America–6%, and the Middle East & Africa–2%
The major players in the market include CoorsTek, Inc. (US), CeramTec GmbH (Germany), KYOCERA Corporation (Japan), Morgan Advanced Materials (UK), Tosoh (Japan), Johnson & Johnson (US), Institut Straumann (Switzerland), 3M (US), Royal DSM (DSM) (Netherlands), Rauschert GmbH (Germany), Zimmer Biomet (US), NGK Spark Plug (Japan), H.C. Stark GmbH (Germany), Berkeley Advanced Biomaterials (US), Nobel Biocare Services (Switzerland), Kuraray Noritake Dental (Japan), Ferro Corporation (Japan), APC International (US), TRS Technologies (US), QSIL Ceramics (Germany), Washington Mills (US), CAM Bioceramics (The Netherlands), CaP Biomaterials (US), Admatec (The Netherlands), and BCE Special Ceramics (Germany).
Research Coverage
This report studies the medical ceramics market based on the type of material, application, and region. The report also studies factors (such as drivers, restraints, opportunities, and challenges) affecting market growth. It analyzes the opportunities and challenges in the market and provides details of the competitive landscape for market leaders. Furthermore, the report analyzes micromarkets with respect to their individual growth trends and forecasts the revenue of the market segments with respect to five main regions (and the respective countries in these regions).
Reasons to Buy the Report
The report will enable established firms as well as entrants/smaller firms to gauge the pulse of the market, which, in turn, would help them to garner a larger market share. Firms purchasing the report could use one or a combination of the below-mentioned strategies for strengthening their market presence.
This report provides insights on the following pointers:
Market Penetration: Comprehensive information on the product portfolios offered by the top players in the medical ceramics market
Product Development/Innovation: Detailed insights on the upcoming trends, R&D activities, and product launches in the medical ceramics market
Market Development: Comprehensive information on lucrative emerging regions
Market Diversification: Exhaustive information about new products, growing geographies, and recent developments in the medical ceramics market
Competitive Assessment: In-depth assessment of market segments, growth strategies, revenue analysis, and products of the leading market players.
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Medical Bionic Implants and Exoskeletons Market Poised to Expand at a Robust Pace Over 2017 – 2027
An increasing prevalence of diabetes and obesity in the global geriatric population is leading to a rise in the number of amputations every year. In the U.S. alone, nearly 2 million people are currently living with limb loss as per the National Center for Health Statistics. Such sobering statistics are the main reason why we at Future Market Insights have decided to prepare the report ‘Medical Bionic Implants and Exoskeletons Market: Global Industry Analysis 2012–2016 and Opportunity Assessment 2017 - 2027’. We have studied the global medical bionic implants and exoskeletons market for a 10 year period on the basis of key parameters including Y-o-Y growth rate, absolute dollar and incremental dollar opportunity.
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The global medical bionic implants and exoskeletons market has been divided into seven geographic regions for the purpose of study. Each region has been studied in required detail in its own section of the medical bionic implants and exoskeletons market report. There are often regulations, norms, trends, or guidelines that may pertain only to a single region and these are analysed herein. The historical market size of major countries within the region for the period from 2012 to 2016 is contrasted with the anticipated forecast for the decadal study ending in 2027. The market attractiveness analysis concludes this important chapter and is particularly helpful for key stakeholders who need to make long-term, strategic investment decisions.
The medical bionic implants and exoskeletons market report begins with the executive summary that is concise yet comprehensive. It provides a market overview along with our analysts’ unique insights. A Wheel of Fortune gives you an attractive, easy-to-understand graphical representation of the link between the different segments that exist in the medical bionic implants and exoskeletons market. We have also spoken about the growth opportunities that exist in the medical bionic implants and exoskeletons market by classifying them into three categories on the basis of CAGR. (High, medium, and low growth)
There are a few assumptions made with respect to the medical bionic implants and exoskeletons market while certain acronyms have also been used for convenience. Both have been explained in a distinct section of the medical bionic implants and exoskeletons market report. Our readers are recommended to take a quick glance at this to dispel any confusion and fully understand the medical bionic implants and exoskeletons market with all of its nuances and technicalities. There are also a few forecast factors that could have an outsized impact on the medical bionic implants and exoskeletons market and their impact has been explained accordingly. Certain assumptions related to the forecast follow this section and readers are recommended to glance at them as well. The market introduction is a vital part of the medical bionic implants and exoskeletons market report. This is where we have mentioned the definition along with the taxonomy of the medical bionic implants and exoskeletons market.
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Global Medical Bionic Implants and Exoskeletons Market Taxonomy
Product
Wrist Bionics
Bionic Elbow Braces
Bionic Limbs
Bionic Fingers
Bionic Knee Braces
Ankle Bionics
Bionic Foot Below Knee
Region
North America
Latin America
Western Europe
Eastern Europe
APEJ
Japan
MEA
Mode
Prosthetic Bionics
External Bionics
Keeping abreast of the latest trends is absolutely imperative if you wish to be one step ahead in a market as exciting and dynamic as the medical bionic implants and exoskeletons market. In our market dynamics section, we have looked at the drivers, restraints, and opportunities that exist in the medical bionic implants and exoskeletons market in great detail. The macroeconomic factors and the opportunity analysis are of particular relevance to you as a reader as they allow you to get a general idea of both the current as well as anticipated future prospects waiting to be tapped in the medical bionic implants and exoskeletons market.
A market analysis can scarcely be considered complete unless you conduct an in-depth SWOT analysis of the immediate competition. Our competition dashboard highlights the medical bionic implants and exoskeletons market structure, assesses and maps it on the basis of taxonomy and intensity. We have profiled the top companies in the medical bionic implants and exoskeletons market that are globally renowned. We have highlighted their key financial ratios, strategies adopted, and relevant recent developments so that you can get a thorough idea of what they are planning or have already accomplished and accordingly plan your course of action.
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Truly unique research methodology with the X factor in every report
We at Future Market Insights take great pride in our tried-and-tested research methodology that we use for every report, including the medical bionic implants and exoskeletons market report. Our team of expert analysts begin with extensive primary and secondary research to formulate a discussion guide and create a list of key market players. After conducting several interviews, we validate the gathered data using the triangulation method. Lastly, we scrutinise this data using company tools to gain all the necessary insights that our valued clients need pertaining to the medical bionic implants and exoskeletons market.
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Knee Replacement Implants (Knee prosthesis) Market 2020 Key Segments and Opportunities to 2025
Knee Replacement Implants (Knee prosthesis) marketing research report provides excellent vision to analysis Global also as regional industry. This research report delivers an in depth analysis of distinguishable strategies for industrial growth which will help to work out commanding segments and know distinct factors. Scope of various segments which will potentially influence the worldwide Knee Replacement Implants (Knee prosthesis) market within the future has been analyzed further within the report.
The Knee Replacement Implants (Knee prosthesis) Market report may be a comprehensive analysis of the present and future analysis, which is predicated on historic data. This provides the reader with quantified data, enabling them to require well enlightened business decisions. The report has been written and analyzed using primary and secondary research.
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The regional analysis segment may be a highly comprehensive a part of the report on the Knee Replacement Implants (Knee prosthesis) market. This section offers information on the sales growth in these regions on a country-level Knee Replacement Implants (Knee prosthesis) market.
Key Players Mentioned In This Report:
Johnson and Johnson, Smith & Nephew, Stryker, Zimmer Biomet, Arthrex, ConforMIS, Corenetec, Corin, Elite Surgical, Evolutis, FH ORTHO, Limacorporate, Medacta, MicroPort Scientific Corporation, Surgival, B. Braun, DePuy, Surgtech, Bioimpianti, IMECO SA, EgiFix Medical, X.NOV, Exactech Inc, Amplitude, Meril, Baumer, Beijing Chunlizhengda Medical Instruments, Waldemar LINK, DJO Global, Peter Brehm
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Product Types Mentioned Below:
Fixed-Bearing Implants, Mobile-Bearing Implants
And The Applications are:
The Olds, Young people
Knee Replacement Implants (Knee prosthesis) Market Trends To 202
Important Questions Answered within the Knee Replacement Implants (Knee prosthesis) Market Report:
Which user remains the highest revenue contributor in several regional markets?
At what rate has the worldwide Knee Replacement Implants (Knee prosthesis) market been expanding during the forecast period?
How will the worldwide Knee Replacement Implants (Knee prosthesis) market appear as if by the top of the forecast period?
What innovative strategies are adopted by Knee Replacement Implants (Knee prosthesis) market players to remain before the pack?
What are the restraints affecting the expansion of the worldwide Knee Replacement Implants (Knee prosthesis) market?
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High Incidences of Orthopedic Surgery Expected to Drive Global Knee Cartilage Repair Market: Ken Research
Cartilage is the tough and elastic material that acts as a connective tissue present in various parts of the body. Knee cartilage is a fine and elastic cushion-like tissue holding together the bones of knee joints. Knee cartilage repair products are extensively utilized to control physical deformities or for the treatment of injured or malfunctioned parts of the knee. The products are also known as supportive of corrective devices. The key objective of these products is to provide comfort to the patients while performing daily functions, support an injury, reduce pain, and correct the shape of a particular body part. For instance, these devices help in body movements as well as alignment by supporting the hips, legs, or both. Larger defects are treated with osteochondral allograft transplantation or autologous chondrocyte transplantation, while smaller defects are treated with osteochondral autograft transfer, autologous chondrocyte implantation (ACI), and marrow stimulating techniques.
According to study, “Global Knee Cartilage Repair Market to reach USD 5.07 billion by 2026” the key companies operating in the global knee cartilage repair market are DePuy Synthes Companies, Stryker Corporation, Zimmer Biomet, Braun Melsungen AG, Histogenics Corporation, Smith & Nephew plc., MEDIPOST Co. Ltd., ISTO Technologies, Inc., TiGenix NV and Osiris Therapeutics, Inc.
Based on application, knee cartilage repair market is segmented as arthroscopic chondroplasty, osteochondral grafts transplantation, autologous chondrocyte implantation, cell-based cartilage resurfacing, microfracture, implants transplant and others. Cell-based cartilage resurfacing offer various advantages for instance generating cartilaginous tissue in articular cartilage defects and long-term constancy of cartilage is increasingly gaining popularity among orthopedic physicians. Microfracture segment is extensively utilized by athletes as there is less chance of post surgical reaction & mismatch. The segment is estimated to exhibit considerable growth rate due to rise in sports injuries coupled with rise in preference by athletes toward micro-fracture. In addition, based on end-user, market is segmented as hospitals, orthopedic clinics, ambulatory surgical centers, and others. Increase in health care awareness and growth in importance of adventurous sports among youngsters as well as increase in geriatric population has led to rise in incidence of sports-related injuries across the world. Consequently, these all factors are expected to drive the hospitals segment at higher growth rate in near future.
The knee cartilage repair market is driven by growth in digitization of pain management practices, followed by rise in occurrence of neuromuscular disorders among the geriatric population, high incidences of orthopedic surgery, rise in sports activity among the young generation and increase in knee fractures in men & women. However, side-effects caused due to off-label usage of definite products & negative media literature about slow tissue recovery and lack of reimbursement for innovative technologies especially in developed nations may impact the market.
Based on geography, the North-American region dominates the global knee cartilage repair market owing to rise in cases of bone & joint disorders in the region. Whereas, the European and Asian-Pacific regions are anticipated to witness higher growth rate due to increase in aging population over the forecast period. The global knee cartilage repair market is valued approximately US $3.37 billion in 2019 and is likely to grow with a healthy growth rate of more than 6% over the forecast period 2019 to 2026.
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Global Knee Cartilage Repair Market Research Report
Related Reports:-
Global Knee Cartilage Repair Market 2019 by Manufacturers, Regions, Type and Application, Forecast to 2024
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