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Advancing Scientific Research with Gaiascience: Exploring Bio Reagents & Consumables
In the ever-evolving world of molecular biology and biotechnology, Gaiascience stands at the forefront of innovation, providing researchers with top-notch bio reagents and consumables essential for cutting-edge scientific research. From nucleic acid purification to gene expression analysis, the right tools and reagents are critical for achieving accurate and reliable results. This article delves into some of the key bio reagents and consumables offered by Gaiascience, highlighting their significance in various research applications.
Nucleic Acid Purification
Nucleic acid purification is a fundamental process in molecular biology that involves isolating DNA or RNA from biological samples. At Gaiascience, we offer a range of nucleic acid purification kits that streamline this process, ensuring high yield and purity of nucleic acids. Our advanced purification systems are designed to remove contaminants and inhibitors, providing researchers with high-quality samples for downstream applications such as PCR and sequencing.
PCR (Polymerase Chain Reaction)
Polymerase Chain Reaction (PCR) is a powerful technique used to amplify specific DNA sequences, making it possible to analyze minute amounts of genetic material. Gaiascience’s PCR reagents and consumables, including high-fidelity DNA polymerases and specialized PCR buffers, are engineered for exceptional performance and reliability. Whether you’re conducting basic research or developing diagnostic assays, our PCR products deliver consistent and accurate amplification results.
RT-PCR (Reverse Transcription PCR)
Reverse Transcription PCR (RT-PCR) extends the capabilities of traditional PCR by allowing the conversion of RNA into complementary DNA (cDNA). This technique is crucial for studying gene expression and detecting RNA viruses. Gaiascience provides RT-PCR reagents that ensure efficient reverse transcription and subsequent amplification, enabling precise analysis of gene expression levels and RNA targets.
qPCR (Quantitative PCR)
Quantitative PCR (qPCR) is an advanced form of PCR that quantifies the amount of target DNA or RNA in real-time. Gaiascience offers a comprehensive range of qPCR reagents, including fluorescent dyes and probes, as well as specialized qPCR master mixes. Our qPCR products are designed to provide accurate and reproducible quantification, making them ideal for applications such as gene expression analysis, quantification of viral loads, and genetic variation studies.
qRT-PCR (Quantitative Reverse Transcription PCR)
Combining the principles of RT-PCR and qPCR, Quantitative Reverse Transcription PCR (qRT-PCR) enables the quantitative measurement of RNA levels. This technique is essential for studying gene expression dynamics and assessing changes in gene expression in response to various conditions. Gaiascience’s qRT-PCR reagents ensure high sensitivity and specificity, delivering reliable data for research into gene regulation and cellular responses.
Cloning and Mutagenesis Systems
Cloning and mutagenesis are critical techniques in molecular biology for generating recombinant DNA and introducing specific genetic modifications. Gaiascience offers a range of cloning kits and mutagenesis systems that facilitate seamless construction of plasmids and targeted mutations. Our products support a variety of cloning strategies, including vector construction, transformation, and selection, enabling researchers to generate custom constructs for functional studies and protein expression.
Gene Expression Analysis
Understanding gene expression is key to unraveling the complexities of biological systems and disease mechanisms. Gaiascience provides a suite of tools for gene expression analysis, including pre-designed primers, probes, and expression assays. Our products are optimized for high sensitivity and specificity, allowing researchers to accurately profile gene expression and identify potential biomarkers or therapeutic targets.
Cell Culture and Detection
Cell culture is a fundamental technique for studying cellular behaviour, drug responses, and disease mechanisms. Gaiascience offers high-quality cell culture media, supplements, and detection reagents that support optimal cell growth and maintenance. Our products are designed to ensure reproducibility and consistency in cell-based assays, making them essential for research in cell biology, pharmacology, and toxicology.
Prepared Microscope Slides
Microscope slides are indispensable for examining cellular and tissue samples. Gaiascience provides prepared microscope slides that feature high-quality staining and mounting techniques. Our slides are carefully prepared to facilitate accurate observation and analysis of specimens, supporting a range of applications from histology to cytology.
Culture Medium
The choice of culture medium is crucial for the successful growth and maintenance of cells in vitro. Gaiascience offers a variety of culture media tailored to different cell types and experimental needs. Our culture media are formulated to provide optimal nutrient support and promote cell viability, ensuring reliable and reproducible results in cell-based research.
Conclusion
Gaiascience is committed to advancing scientific research through the provision of high-quality bio reagents and consumables. From nucleic acid purification and PCR technologies to gene expression analysis and cell culture, our products are designed to support a wide range of research applications with precision and reliability. By choosing Gaiascience, researchers gain access to innovative solutions that drive scientific discovery and technological advancement. Explore our comprehensive portfolio of bio reagents and consumables and experience the difference that quality and expertise make in your research endeavours.
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Using Recycled Content Stretch Film in Your Packaging Operations
Recycled stretch wrap, an increasingly popular eco-friendly method of pallet wrapping, has caught the eye of many industries and procurement teams seeking to reduce the environmental impact of their operations. Here, we dissect the pros and cons of adopting recycled pallet stretch wrap, considering its environmental impact, industry applications, product specifications, and its overall benefits and limitations.
Environmental Benefits: Made from 30% post-consumer recycled plastic material, recycled pallet wrap stands out as a beacon of sustainability in an industry often criticized for its waste and environmental impact. Being 100% recyclable further boosts its eco-friendly credentials, offering a circular economy model that significantly reduces landfill waste and promotes responsible disposal practices.
Pros of recycled pallet wrap: Made of 30% post-consumer recycled plastic, this stretch wrap is holistically sustainable and environmentally friendly.
-Offers an innovative solution to pallet wrapping needs.
-Reduces reliance on virgin plastic and its associated environmental impacts.
-Supports a circular economy through ease of recyclability.
-Suitable for a wide range of packaging needs, from manual to automated operations.
Environmental Disadvantages: As recycled pallet wrapping films are made from 30% post-consumer recycled plastic material, the quality of the plastics resins is not like that of stretch wrap made from pure virgin plastics.
Cons of recycled pallet wrap: Lacks the high stretch yield potential of virgin plastic-based alternatives.
Limitations in its stretch capabilities make it not ideal for certain types of pallet wrapping machines with very high power pre stretch functions.
Industry Usage: Offering both hand and machine rolls, it caters to manual operations as well as high-output automated pallet wrapping systems. The experiences of industries using recycled stretch wrap have been positive, especially those with strong commitments to their sustainability goals, fostering a sense of environmental responsibility within their supply chains.
Call us at 813 242 6995 for more information and pricing on PCR stretch films. Reach out to [email protected] for samples and demos.
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Pioneering Precision: Lasany International as Global Leaders in Lab Equipment Supply
In the realm of scientific exploration, the importance of reliable and precise laboratory equipment cannot be overstated. Lasany International has emerged as a trailblazer in the field of lab equipment supply, offering a comprehensive range of cutting-edge instruments that cater to the diverse needs of research institutions worldwide. This article delves into the legacy, innovations, and impact of Lasany International as a supplier of lab equipment.
Legacy of Excellence: Lasany International's Journey in Lab Equipment Supply: Established with a commitment to advancing scientific research, Lasany International has evolved into a globally recognized name in the supply of laboratory equipment. With a legacy spanning decades, the company has continuously strived to provide researchers with state-of-the-art instruments that meet the highest standards of precision and reliability.
Innovative Product Range:
Advanced Analytical Instruments:
Lasany International's product line includes a variety of advanced analytical instruments such as spectrophotometers, chromatographs, and mass spectrometers. These instruments empower researchers with the ability to analyze substances with unparalleled accuracy.
Cutting-Edge Biotechnology Equipment:
The company is at the forefront of supplying biotechnology equipment, including DNA sequencers, PCR machines, and gene expression analyzers. These tools play a crucial role in genetic research, diagnostics, and pharmaceutical development.
Laboratory Automation Solutions:
Recognizing the growing importance of efficiency in research processes, Lasany International provides cutting-edge laboratory automation solutions. This includes robotic systems, liquid handling platforms, and integrated workflow solutions, streamlining laboratory operations.
Quality Control and Safety Equipment:
Ensuring the integrity of research outcomes, Lasany International supplies a range of quality control and safety equipment. This includes fume hoods, safety cabinets, and environmental monitoring systems, creating a secure and controlled laboratory environment.
Lasany International's Impact on Global Research:
Global Reach and Partnerships:
Lasany International's commitment to quality and innovation has enabled them to establish a global presence. Collaborative partnerships with research institutions, universities, and biotech companies around the world showcase the company's impact on advancing scientific frontiers.
Customized Solutions for Varied Disciplines:
Understanding the diverse needs of researchers across different disciplines, Lasany International specializes in providing customized solutions. This ensures that laboratories receive equipment tailored to their unique requirements, fostering optimal research outcomes.
Continuous Technological Advancements:
The company's dedication to staying at the forefront of technological advancements is evident in the continuous evolution of its product offerings. Lasany International's commitment to innovation ensures that researchers have access to the latest tools and technologies for their experiments.
Unique Features of Lasany International's Lab Equipment Supply:
Reliability and Precision:
Lasany International's lab equipment is synonymous with reliability and precision. Rigorous quality control measures are in place to guarantee that each instrument meets the highest standards, ensuring the accuracy of research results.
After-Sales Support and Training:
Recognizing the importance of a seamless research experience, Lasany International provides comprehensive after-sales support. This includes technical assistance, maintenance services, and training programs to empower researchers in maximizing the utility of their equipment.
Sustainability Initiatives:
In alignment with global sustainability goals, Lasany International integrates eco-friendly practices into its manufacturing processes. This commitment to sustainability resonates with research institutions striving for environmentally conscious practices.
Conclusion
As we traverse the ever-expanding landscape of scientific exploration, Lasany International stands tall as a beacon of excellence in laboratory glassware suppliers. Their legacy of precision, commitment to innovation, and global impact position them as leaders in the field. Whether it's a groundbreaking discovery in biotechnology, an advancement in analytical chemistry, or an enhancement in laboratory efficiency through automation, Lasany International's contribution to the scientific community is immeasurable. As laboratories continue to push the boundaries of knowledge, Lasany International remains a steadfast partner, providing the tools that enable researchers to explore, discover, and innovate on a global scale.
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Biology Lab Equipment Manufacturers
Biology lab equipment is in high demand from the top biology lab equipment manufacturers as they help to conduct experiments, observations, and analyses related to biological sciences.
Biology lab equipment is the best equipment to understand biology by providing students with hands-on experiences and enabling them to explore and investigate the living world.
Chem Lab Nigeria is the undisputed biology lab equipment manufacturer for the following reasons:
Quality Assurance: Chem Lab Nigeria has stringent quality control processes. Their rigorous testing procedures, compliance with the highest industry standards, and certifications ensure the equipment meets the required specifications and performance standards.
Expertise and Experience: Being in the market for more than 30 plus years, Chem Lab Nigeria has built a strong reputation with extensive experience in producing biology lab equipment. Their long-standing presence has refined their manufacturing processes and gained valuable expertise meeting customer needs.
Product Range and Customization Options: Only those manufacturers who manufacture a vast range of equipment school labs prefer.
Chem Lab Nigeria offers the most comprehensive selection of biology lab equipment that caters to your specific requirements. Along with the availability of the vast range, they provide customization options that allow you to tailor the equipment to meet your unique needs.
Research and Development: Undoubtedly, the best biological lab equipment manufacturers are the ones that invest in research and development for innovative products. Their specialized R&D department
ensures that the equipment features the latest advancements in technology and design, leading to more efficient and effective laboratory processes.
Customer Support and Service: Kudos to their prompt and responsive customer service channels that address all kinds of queries with excellent technical assistance and superb after-sales support. It helps ensure a smooth purchasing experience and ongoing support when needed.
Reputation and Reviews: Look for the best biology lab equipment manufacturer around you over the internet, and you shall get the name Chem Lab Nigeria. Honest and trusted reviews from the wide customer base give an insight into their reliability, product performance, and customer satisfaction levels.
Compliance and Safety: Ensure the manufacturer adheres to safety standards and regulations. Check if their equipment complies with relevant certifications and approvals, indicating their commitment to producing safe and reliable products.
Price and Value: With the best biology lab equipment manufacturers, clients get the best costs but benefits like extended warranty, longevity, and various support services.
Here are some of the categories of biology lab equipment manufactured with the purpose:
Observation and Specimen Handling
Specific biology lab equipment helps students observe and study microscopic organisms, cells, tissues, and other biological specimens. They learn how to handle samples safely and develop skills in making accurate observations.
It includes the following equipment:
Microscopes
Slides and Coverslips
Pipettes
Petri Dishes
Forceps and Dissecting Tools
Specimen Containers
Dissecting Trays
Culturing Equipment
Centrifuges
Experimentation and Data Collection
Biology lab equipment, such as test tubes, beakers, pipettes, and graduated cylinders, helps students to conduct experiments, mix solutions, measure volumes, and collect data. Equipment used in this category are:
Beakers
Test tubes
Graduated cylinders
Pipettes
Bunsen burners
Thermometers
pH meters
Spectrophotometers
Gel electrophoresis equipment
Incubators
Centrifuges
Shakers and stirrers
Water baths
Microplate readers
PCR machines
DNA sequencers
Autoclaves
Measurement and Quantification
Measurement is needed to accurately and precisely quantify biological samples. For instance, the researchers want to know about the mass of organisms, the volume of solutions, the rate of cell growth, and so much more.
Accurate measurements are essential for obtaining reliable data and ensuring the validity of experimental results.
Equipment supplied by the top Biology lab equipment suppliers in this category are:
Balances and scales
Thermometers
pH meters
Spectrophotometers
Centrifuges
Pipettes
Micropipettes
Graduated cylinders
Burettes
Spectrometers
Gel electrophoresis apparatus
Microplate readers
Flow cytometers
DNA sequencers
Dissection and Anatomy Study
Dissection and anatomy equipment provide students with a hands-on opportunity to explore biological organisms' structure, organization, and relationships.
Students learn about organisms' internal structures, organ systems, and physiological functions by dissecting the biological specimens and examining their anatomical features. This practical experience helps develop their observational and analytical skills, enhances their knowledge of organismal biology, and fosters a greater appreciation for the intricacies of living organisms.
Biology Lab Equipment Manufacturers manufacture the following equipment:
Scalpels
Dissecting scissors
Forceps
Dissecting probes
Dissecting pins
Dissection trays
Dissection needles
Magnifying glass or dissecting microscope
Bone cutting tools
Organ models
Students need biology lab equipment for vast scientific inquiry, data collection, analysis, and critical thinking.
They develop an understanding of scientific methods, biological concepts, and the importance of precise measurements and observations.
Moreover, hands-on experiences in the biology lab encourage curiosity, engagement, and a deeper appreciation for the complexity and diversity of living organisms.
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Biotechnology Market Tracking Report Analysis 2023-2031
The global Biotechnology Market was estimated at USD 993.87 billion in 2022 and is expected to be worth around USD 1,983.52 billion by 2031, poised to grow at a noteworthy CAGR of 9.7% from 2023 to 2031. The market is driven by strong government support through initiatives aimed at modernization of the regulatory framework, improvements in approval processes and reimbursement policies, as well as standardization of clinical studies.
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Top Key Players:
Market Growth:
The biotechnology market makes use of living organisms, specifically organisms and microbes, to develop a variety of solutions that benefit humans. It is a synthesis of numerous techniques used on live cells, encompassing not just biology but also arithmetic, biochemistry, and engineering. The outbreak of the COVID-19 pandemic is expected to have a long effect on the industry. Increasing investment in research for the development of vaccines and drugs by several biotech businesses has increased the industry's growth.
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Market Segmentation:
Biotechnology Market (By Application: Bio-pharmacy, Bio-industries, Bio-services, Bio-agriculture, and Bio-informatics; By Technology: Fermentation, Tissue Engineering and Regeneration, Polymerase Chain Reaction (PCR) Technology, Nanobiotechnology, Chromatography, Deoxyribonucleic Acid (DNA) Sequencing, and Cell Based Assay) - Global Industry Analysis, Size, Share, Growth, Trends, Regional Outlook, and Forecast 2023 2031
Global Biotechnology Market: Drivers
Growing advances in the life sciences are providing numerous benefits associated with healthcare interventions and productivity by incorporating innovative technology. The development of innovative techniques and their implementation by firms have a positive impact on the biotech sector and are expected to spur significant market growth.
Global Biotechnology Market: Restraint:
The high cost of developing biotechnology reagents will undoubtedly limit market growths. Market players make large investments in installing new and advanced machines to speed up the process, which raises the cost. This biotechnology market report provides details of new recent developments, trade regulations, production analysis, value chain optimization, import-export analysis, market share, and the impact of domestic and localised market players.
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Econ Market Research is a one-stop provider of industry research and actionable intelligence. Through our syndicated and consulting research services, we help our clients get solutions to their research requirements. We specialise in industries such as semiconductors and Electronics, Aerospace and Défense, Energy, Automotive and Transportation, Healthcare, Manufacturing and Construction, Media and Technology, Chemicals, and Materials.
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Key parameters and important characteristics of fluorescent quantitative PCR instrument
When purchasing a fluorescent quantitative PCR instrument, several key parameters should be paid attention to:
1. The detection throughput of the instrument (Throughput)
The first thing to consider is the frequency with which the laboratory currently needs to use a quantitative PCR instrument. David Ginzinger, head of genome analysis equipment at the University of California, San Francisco Cancer Center, has tested most of the quantitative PCR machines on the market. He said that if it is not used in large-scale batches, for example, it is mainly used to test known genes, then expensive high-end products are really not needed. But if it is those laboratories that need to find new drug targets and disease markers, they need instruments that can accommodate 384-well plates and run faster. However, just such a high-throughput instrument is not fast enough, and you will find that sample preparation becomes a bottleneck for the speed limit. Therefore, high-throughput laboratories often need further automated instruments. As long as the "click", the instrument will automatically process samples, purify nucleic acids, and prepare PCR templates.
2. The ability of multiple amplification
Multiple amplification is getting hotter and hotter. Real-time quantitative PCR machines are not immune. The high-end quantitative PCR instrument has multiple detection channels, so the instrument can detect the amplification process of multiple templates in the same sample tank. The new LightCycler2.0 has 6 detection channels, 3 more than the original. SmartCycler II has 4 detection channels. Stratagene, famous for its library
products, also has a quantitative PCR machine Mx3000P, which is less than half the price of Roche and has a good reputation, which is 4 detection channels. However, multiple amplification is not suitable for everyone, because it complicates the experiment.
3. software
When you are going to choose a quantitative PCR machine, you must check the accompanying software. Is it easy to use? Is it possible to perform the analysis you need? There are several output formats. However, you need to pay attention to whether the software that is too easy to use has simple functions and cannot perform complex calculations. The previous software still requires you to do further analysis. The new software can already handle everything. In addition to basic functions, some software can also have more functions, such as primer and probe design, multiple analysis design, background correction, data normalization, and so on. Willian Demyan, head of the Application and Technical Services Department of Roche's Applied Science Department, emphasized: Quantitative PCR is a geometric amplification process. At the beginning, the difference between one copy and the result is geometrically different.
4. Flexibility
Although the large-scale busy laboratory equipment is advanced, it is enviable, and the conventional laboratory can also have wonderful choices. The current suppliers have many technical experts, not only understand your current needs, but also consider possible changes in your future requirements very thoughtfully, such as providing a variety of upgradeable accessories and modules. BioRad's MyCycler can select modules and upgrade to real-time quantitative. ABI's quantitative PCR instrument has a variety of different sample tanks, which can change a 96-well tank into a double 384-well tank to meet part of the high-throughput requirements. For laboratories that are just starting to do a small amount of qPCR, the SmartCycler II quantitative PCR instrument is a good choice. A basic module has 16 independent temperature-controlled sample tanks, and 16 completely independent different experiments can be performed at the same time or before and after. Access"; when the laboratory needs a larger-scale experiment, it can be upgraded economically, from 1 to 6 basic modules, that is, 96 sample wells. Although a 96-well plate cannot be used, when a student starts a small experiment, others can plug in and start their own independent experiments at any time without interfering with each other, which increases flexibility. It is a very flexible choice for laboratories that only do a few experiments at the beginning and have a tight budget.
5. Uncertainty
Although the software can be partially corrected, it is better to buy an instrument with less system error and not require so many calculation corrections than to rely on calculation corrections. Cinzinger believes that special attention should be paid to the differences between the sample holes of the instrument. In addition to the well-known temperature difference between the sample holes, there are also the optical path distance between the sample hole and the detection probe, the slight difference in the length of the optical fiber responsible for receiving and transmitting signals, the slight difference in the distance and angle between the lens and the sample hole, and even The influence of the sample slot on signal transmission. Cinzinger has done the same test on most of the commercially available quantitative PCR machines. He performs real-time amplification of the same samples and reaction reagents in each well of the instrument. Unfortunately, many times, there will be different results between different sample wells.
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The Mystery of Battat’s Designer Girl Dolls
[Last updated 7/27/2022]
Battat is a Canadian toy company that has been in business since 1897. They are widely recognized for their preschool toys and their popular 18-inch doll line, Our Generation. Starting in 1998, Our Generation was meant to provide families and their children with more affordable options for 18-inch dolls, clothes, and accessories. They have since then become one of American Girl’s greatest competitors. They are currently sold exclusively at Target stores, in an array of different hair and eye colors, skin tones, outfits, and characters.
In 1998, Our Generation was introduced as Collector’s Lane Kids, with 5 different dolls to choose from. Among those dolls, four were marketed as girls and one was marketed as a boy:
Although I couldn’t find exactly when the name change to Our Generation happened, I believe it happened around the early-2000′s. According to an article I will link below from Just Magic, dolls produced from 1998-2004 were stamped with the year 1998. Dolls produced 2004 and onward were stamped with the year 2004.
Just Magic’s article on OG: http://www.justmagicdolls.com/meet/Battat/ourgeneration.htm
I am not sure how long Battat used the 2004 stamp on the OG dolls, as one of my own OG dolls (identified as May Lee) does not have a year stamped onto her and she is a relatively modern character (introduced in the mid-2010′s). Just Magic’s article on OG has not been updated since 2007, so if there is an OG expert out there who could help with identifying specific stamps and markings, I would appreciate it.
Here are just some of the Our Generation dolls sold today:
Recently, I ran into a mysterious doll that has popped up on secondhand online stores twice so far. Battat had what seemed like a spinoff doll line from Our Generation in the early-to-mid 2000′s called the Designer Girl dolls. Based on the images and descriptions provided by both sellers, there was at least one doll from this line named Hannah.
(Photos courtesy of eBay seller kathy7323)
On eBay, seller kathyg7323 describes their doll as a possible “prototype”. It was purchased at an estate sale of a doll collector. There is no date on the box whatsoever, and the seller attempted to identify this doll by contacting Battat and sending them photos. However, Battat confirmed to the seller they have no idea when this doll was made and have no record of it. In addition, there is no information about this doll online.
Another seller, this time on Mercari, recently sold their Designer Girl Hannah doll. The seller, Mochabacon, stated in their description that their doll was trademarked by Battat, and it was purchased in the early-2000′s (although they did not specify where). Upon reading this, I made an attempt to access Battat, Our Generation, and Target’s websites via the Wayback Machine around that time period. However, I still did not find anything on the Designer Girl dolls.
A doll blogger named PennilessCaucasianRubbish posted about a thrifted Battat doll they found and custom-made into a boy doll, back in 2017. Link to their blog: http://pennilesscaucasianrubbishdolls.blogspot.com/2017/01/new-custom-boy-from-thrifted-battat.html
What is interesting about this blog is that the thrifted doll shares the exact same facemold as Designer Girl’s Hannah:
[PCR’s doll vs. Hannah]
As we can see here, PCR’s doll’s original appearance was light skin, sandy-blond hair, with blue eyes. This must have been one of the additional characters available for the Designer Girl line, although his original marketed name is currently unknown.
That is not the only finding from this blogpost; PCR stated that the stamp on the back of their doll’s head reads “Battat 2002″. This may indicate either Designer Girl was produced in 2002, or this particular face mold was produced in 2002. But, if you scroll down to the comments section of this blogpost, there is an interesting comment from a person named Kaffrum:
So, based on this description, we can confirm that Designer Girl was, in fact, sold in stores at one point. The question now is when exactly the doll line was launched. See, Kaffrum states they’ve held onto that Designer Girl packaging since around 2002, which aligns with the timeframe the Mercari seller gave as to when they first purchased their Hannah doll. However...
I found a trademark website that has all of Battat’s trademarked names. Among those trademarks was the name Designer Girl! Link to Designer Girl’s trademark profile:
https://trademarks.justia.com/784/22/designer-78422206.html
Based on this profile, the name was first filed by Battat in 2004, registered in 2006, but then was cancelled in 2012. If you scroll further down the page to the Classification Information section, it says that the name’s first use in commerce was in 2005. If I’m reading this correctly, this means that Designer Girl was actually released to stores back in March of 2005. That date may also align with the timeframe in which the Mercari seller stated they first purchased this doll. The Trademark Events section gives a more detailed view of how the name was used between 2004 to 2012, although I’m not entirely sure what the entries from 2005-2009 mean. If you are familiar with trademark laws and understand the words used here, a clarification would be greatly appreciated.
Finally, we can see that in 2012, the name was cancelled under Section 8. Specifically, its current status is under “710- Cancelled- Section 8″. What my two remaining brain cells could gather from a quick Google search, this simply means that this trademark was cancelled because Battat did not file the required proof that the name was still being used in commerce. So it is likely Battat gave up on Designer Girl sometime between the late-2000s and early 2010′s.
Another doll with the same exact facemold and 2002 neckstamp as Hannah and the unnamed blonde was found on Google Images, using the keywords “2002 Battat”. The photo’s true origin, although found on Worthpoint, is currently unknown, but it shows what looks to be a Designer Girl doll with light skin, red hair, and green eyes:
List of all identified Designer Girl dolls:
Hannah- light skin, straight brown hair, brown eyes
Unknown #2- light skin, straight blonde hair, blue eyes
Unknown #3: light skin, straight red hair, green eyes
What we know so far about Designer Girl is that they were “a complete line of fashionable dolls and cool accessories”, based on the description of the Hannah doll’s box. Both the existence of PCR’s doll and Kaffrum’s comment confirmed that there were other characters besides Hannah in the line, and there must have been additional outfit sets and accessories. However, there are still so many questions left unanswered:
Were the dolls released in 2002 or 2005? How long were they around for? When did Battat stop selling them? WHERE did they sell these dolls? We still have no confirmation as to where the doll collector mentioned in the eBay auction or the Mercari seller got ahold of their dolls. PCR stated they had thrifted their doll at Goodwill.
In addition, I would still like to know how many other Designer Girl dolls were there, what did they look like, and how come most of them besides Hannah, the blonde doll, and the redhead doll are still unaccounted for as of now? I am going to attempt to get in contact with Kaffrum in hopes that they still have their Battat package, and if they can provide pictures of it.
But the biggest question of all is, why doesn’t Battat have any records of this doll line ever existing?
Does anyone here remember this doll line from the early-to-mid-2000′s? Admittedly, as a child who was at the target age for those dolls during that time period, I have no recollection of ever seeing them in any store. If you have any theories or leads, you can dm me here or on my Instagram @harajuku_starpower and I will update this blogpost.
#our generation dolls#my american girl dolls#ogdoll#doll collectors#losttoys#lost media#american girl#battat#battattoys#y2k#2000s toys
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This totally unique Triton is up for sale soon. Way to much has been done to it to list here and anybody who might be interested in such a machine will appreciate the work gone into it. . . #motorcycle #motorbike #custom #custommotorcycle #instamoto #instamotogallery #instabike #bikelife #custombike #caferacer #classic #custombikes #customculture #custompaint #builtnotbought #boughtnotbuilt #classic #ride #bike #bikeporn #moto #perth #westernaustralia #wa #PCR #perthcaferacers (at MotoMAX) https://www.instagram.com/p/B2atGkThj2k/?igshid=k8bsouybbuge
#motorcycle#motorbike#custom#custommotorcycle#instamoto#instamotogallery#instabike#bikelife#custombike#caferacer#classic#custombikes#customculture#custompaint#builtnotbought#boughtnotbuilt#ride#bike#bikeporn#moto#perth#westernaustralia#wa#pcr#perthcaferacers
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Using The Right Stretch Film
If the correct film is dialed in, there are many benefits.
Reduced damage is one. 10% of all shipments arrive damaged. Stretch film works like a tight hug for palletized goods, keeping them securely in place during transportation. It minimizes the risk of shifting and damage that can occur due to bumps or jostling during shipping. Another advantage is the protection it provides against the elements. Stretch film acts as a shield, keeping dirt, dust, and moisture away from your goods. This is especially important when shipping products that are sensitive to environmental factors.
When it comes to sustainability, there are two things that support environmental efforts right now. The first is that manufacturers have made significant inroads in developing stretch wrap with 25% PCR content. And the second is that the technology used in newer high-performance films, when dialed in correctly, do not require as much film to be applied to secure loads.
Reduced film means reduces costs and reduced waste going to landfill.
Stretch film is also known for its cost-effectiveness. Compared to other packaging methods like strapping, stretch film can be a more budget-friendly option. It offers a balance between performance and affordability, making it a popular choice for many businesses.
One of the great things about stretch wrap is its versatility. Its stretch characteristics allow it to conform to various shapes and sizes, making it suitable for wrapping oddly shaped or hard-to-stack loads. It provides flexibility in packaging and can accommodate a wide range of goods.
It’s a good idea to have your packaging specialist perform film testing on your equipment. Call us at: 813 242 6995 or at [email protected] Most stretch wrappers have been in the market for many years and don’t perform at the factory level.
The film testing will help choose the right thickness required of the stretch film for your specific load and cut out unnecessary waste. When testing stretch film, some of the factors considered are load weight, load shape, load fragility, warehousing environment, etc.
When applying the film, find the sweet spot for tension. You don’t want to under-stretch and end up with loose loads or overstretch and risk film breakage. Maintain consistent tension throughout the wrapping process, whether you are using a machine or doing it manually.
#stretch film pricing#pricing news#quickpakinc#stretch film#resin pricing#free pallet wrapper#quick pak inc#youtube#coreless film#free machine#pcr stretch wrap#right stretch film
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Phototherapy Equipment Market Share, Industry Growth, Trend, Key Companies by 2028
The Global phototherapy machine on rent Market report published by Reports and Data is a concise summary on the phototherapy machine on rent industry and offers deep insights into the industry’s core structure and mechanism. The report digs into the key segments and sub-segments of the industry and offers a thorough study of the industry’s leading regional markets, competitive scenario, product and application segments, technology landscape, sales & distribution networks, and key industry statistics. Market insights included in the report have been compiled through extensive research, detailed market surveys, and expert interviews.
Key market dynamics illustrated in the report include market share, market size, revenue growth drivers, restraints, opportunities, threats, challenges, emerging market trends, product innovations, and industry revenue growth rate. Other imperative factors highlighted in the report are volatility in demand and supply graphs, production & consumption patterns, paradigm shifts in consumer preferences, import/export analysis, and a multitude of macro-economic and micro-economic growth indicators. Going ahead, the report elaborates on the highly competitive environment of the phototherapy machine on rent industry and discusses the strategic initiatives undertaken by each market player, including partnerships & collaborations, mergers & acquisitions, joint ventures, government & corporate deals, and new product launches.
Get a sample of the report @ https://www.reportsanddata.com/sample-enquiry-form/4493
Some Key Factors Contributing to the Global Pharma & Healthcare Market Growth
Unprecedented revenue growth of the global pharma & healthcare industry is attributed to factors such as rising prevalence of chronic and acute diseases worldwide, increasing geriatric population, rising awareness of health & wellness among consumers, and growing demand for more advanced healthcare services. Increasing demand for advanced drugs and therapeutics, growing availability of next-generation diagnostics and treatment options – especially in developing countries like India and China – rise in R&D activities and clinical trials in the pharmaceutical and biotechnology sectors, increasing public and private investments in healthcare research projects, and rising consumer expenditure on healthcare are among the other significant factors contributing to the industry revenue growth.
Top Players in the Global phototherapy machine on rent Market:
General Electric
Signify Holding
Natus Medical Incorporated.
Phoenix Medical Systems (P) Ltd.
Atom Medical Corp.
nice Neotech Medical Systems Pvt. Ltd.
National Biological Corp.
Solarc Systems Inc.
Hospital Supply Company Pvt. Ltd.
The Daavlin Company
Endodoctor GmbH.
Hospital and Homecare Medical Devices Co. LTD
Shenzhen Mindray
Bio-Medical Electronics Co., Ltd.
Kernel Medical Equipment Co., LTD
VirtualExpo Group
Olives India.,
Healicom Medical Equipment Co Ltd.
DermNet New Zealand Trust.
AVI Healthcare
Krupa Medi Scan
Korrida Medical Systems
The coronavirus pandemic has had a drastic impact on the global healthcare industry, with rising cases of COVID-19 worldwide, substantially growing hospital admission and readmission rates, and rising demand for telehealth and telemedicine services for remote patient monitoring. Furthermore, rising focus on development of rapid COVID-19 diagnostics such as the RT-PCR test kits, increased government funding for vaccine development, stringent regulatory norms and protocols for COVID-19 safety, and increasing sales of COVID-19 safety equipment, such as N-95 masks, face shields, PPE kits, and hand sanitizers, have driven the global pharma & healthcare industry revenue growth over the recent past.
To know more about the report @ https://www.reportsanddata.com/report-detail/phototherapy-equipment-market
phototherapy machine on rent Market Segmentation:
Type Outlook (Revenue, USD Billion; 2018-2028)
Conventional phototherapy machine on rent
Fiber-optic phototherapy machine on rent
LED-Based phototherapy machine on rent
Application Type Outlook (Revenue, USD Billion; 2018-2028)
Skin Disease Treatment
Neonatal Jaundice Management
End-use Outlook (Revenue, USD Billion; 2018-2028)
Hospitals & Clinics
Home Users
Global phototherapy machine on rent Market Report: Regional Segmentation
North America
Europe
Asia Pacific
Latin America
Middle East & Africa
Request a customization of the report @ https://www.reportsanddata.com/request-customization-form/4493
About Reports and Data
Reports and Data is a market research and consulting company that provides syndicated research reports, customized research reports, and consulting services. Our solutions purely focus on your purpose to locate, target, and analyze consumer behavior shifts across demographics, across industries, and help clients to make smarter business decisions. We offer market intelligence studies ensuring relevant and fact-based research across multiple industries, including Healthcare, Touch Points, Chemicals, Products, and Energy. We consistently update our research offerings to ensure our clients are aware of the latest trends existent in the market. Reports and Data has a strong base of experienced analysts from varied areas of expertise. Our industry experience and ability to develop a concrete solution to any research problems provides our clients with the ability to secure an edge over their respective competitors.
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Optimization of conventional PCR reactions
A. DNA template:
Try to use high-quality, purified DNA as a template
· When the fidelity needs to be improved, a higher DNA template concentration can be used and the number of cycles can be reduced
· Template dosage: Take 50 μl reaction system as an example——
Human genomic DNA: 0.1~1.0 μg
E. coli genomic DNA: 10~100 ng
Lambda DNA: 0.5~5 ng
Plasmid or viral DNA: 0.1~10 ng
B. Primer design principles:
· The length of the primer must meet specificity requirements, generally between 18 and 25 bases; when amplifying long fragments, it is best to be between 24 and 30 bases;
· When introducing a cloning site, the end of the primer should add more than 3 bases;
· The (G+C)% content should be controlled within 40-60% as much as possible, and the (G+C)% content of the two primers should be as close as possible;
· GC bases are evenly distributed in primers;
· Try to avoid the same base appearing more than three times in a row, and avoid using A or T at the 3'end;
· Avoid primer internal pairing to form a secondary structure;
· Avoid pairing bases between the forward and reverse primers, especially the three bases at the 3'end, otherwise it is easy to generate primer dimers;
· The melting temperature (Tm) of the two primers should be between 42~65℃, and the difference between the two primers should not exceed 5℃;
· Calculation method of primer Tm value:
Below 20 nt: Tm = 2℃ x (A + T) + 4℃ x (G + C)
20 nt or more: Tm = 81.5 + 0.41 x (GC%) -600/nt (nt: base number of primer)
· Primer usage:
· 0.1~1.0 μM, usually starting at 0.2 μM, adjust the dosage according to the system;
· When using degenerate primers or random primers, the total amount of primers needs to be increased to compensate for the loss of yield; however, as the amount of primers increases, the specificity will decrease;
· When the template is larger or larger, or the structure is more complicated (such as human genomic DNA), you need to reduce the amount of primers to improve specificity;
· When the template is small (such as a plasmid template), increasing the amount of primers can increase the yield.
C. Nucleotides (dNTPs):
· The concentration of conventional dNTPs is 0.1~1.0 mM for each nucleotide, usually starting at 0.2 mM, and the dosage can be adjusted according to the system;
· Low concentration (0.05~0.1 mM) can increase fidelity, but will reduce yield;
· High concentration increases yield, especially long-segment PCR, but reduces fidelity.
D. Magnesium ion concentration
· For Taq DNA polymerase, the optimal concentration of magnesium ions is 1.5~2.0 mM;
· The optimal concentration depends on the template, buffer, DNA and dNTPs (each of which may chelate magnesium ions);
· Too low magnesium ion concentration will reduce output;
· Too high magnesium ion concentration will increase non-specific PCR products;
· When optimizing the magnesium ion concentration, it is usually increased by 0.5 mM gradient, up to 4 mM.
E. Taq DNA polymerase concentration
· The recommended concentration is 1~2.5 U/50 μl reaction system.
F. Initial reaction
· Prepare the reaction system on ice;
· Add polymerase at the end;
· After preheating the thermal cycler to the denaturation temperature (94°C), put it in the PCR tube and proceed immediately.
G. Denaturation temperature and time
· The initial denaturation is usually at 94°C, so that the DNA double strands are completely opened;
· Denaturation time is usually 15~30 seconds;
· Avoid prolonged or high temperature incubation;
· Templates with high GC content can increase the denaturation temperature to 98°C.
H. Annealing temperature and time
· Normally, the annealing temperature is the primer Tm minus 5°C, which is between 55 and 60°C;
· Increasing the annealing temperature is conducive to reducing non-specific bands;
· The conventional annealing time is 15-30 seconds.
I. Extended temperature and time
· The extension reaction is usually carried out at 72°C.
· The extension time of Taq enzyme is about 15~30 seconds/kb DNA;
· When the product is less than 1 kb, the recommended extension time is 30 to 60 seconds;
· When the product is larger than 3 kb or the reaction exceeds 30 cycles, a longer extension time may be required.
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IoT in Healthcare Market to be Dominated by Telemedicine Segment through 2026 | TechSci Research
Rising awareness of self-health monitoring and the government initiatives promoting digital health is expected to drive the demand for global IoT in healthcare market in the forecast period.
According to TechSci Research report, “IoT in Healthcare Market - Global Industry Size, Share, Trends, Opportunity and Forecast, 2016-2026 Segmented By Component (Medical Devices, System and Software, Services), By Medical Devices (Stationery Medical Devices, Implants, Wearables), By System and Software (Remote Device Management, Data Analytics, Application Security and Others), By Services (Managed Services, Professional Services), By Application (Telemedicine, Remote Patient Monitoring, Clinical Operations and Workflow Management, Connected Imaging and Others), By End-User (Hospitals and Clinics, Clinical Research Centres and Diagnostic Labs) and By Region”, the global IoT in healthcare market is expected to grow at an impressive CAGR for the forecast period, 2022-2026.
Healthcare institutions are introducing the internet of things technology to improve and enhance patient monitoring services and reduce the costs to provide effective healthcare services. The growing demand for the reduction of the waiting time in emergency rooms to address patients requiring immediate healthcare services is contributing to the global IoT in healthcare market growth.
However, the increasing concerns of data security and cyber-attacks may restrain the global IoT in healthcare market growth for the forecast period.
Browse XX Figures spread through XX Pages and an in-depth TOC on "Global IoT in Healthcare Market”.
https://www.techsciresearch.com/report/iot-in-healthcare-market/7836.html
Global IoT in healthcare market is segmented into component, application, end-user, regional distribution, and company. Based on the component, the market can be divided into medical devices, system and software, and services. The medical devices segment is dominating the market and is expected to hold a major market share for the forecast period, 2022-2026. The medical devices segment is further segmented into stationery medical devices, implants, and wearables. With the growing adoption of internet of things technology by the healthcare institutions and the rise in the dependency on connected medical devices such as stationery medical devices, wearable devices, implantable for monitoring the health condition of patients is expected to drive the medical devices segment growth for the predicted period.
Based on the application, the market can be divided into telemedicine, remote patient monitoring, clinical operations and workflow management, connected imaging, and others. The telemedicine segment is expected to witness significant growth for the next five years. High penetration of affordable internet services and the proliferation of smart devices is expected to demand of telemedicine segment across the globe for the next five years. The growing penetration of home healthcare services and the surging need to improve the accessibility and reach of healthcare services in remote locations are influencing the growth of the segment.
Based on the end-user, the market is segmented into hospitals and clinics, clinical research centers, and diagnostic labs. The hospitals and clinics segment are expected to account for a major market share for the next five years. The rise in the adoption of IoT-enabled medical devices among healthcare facilities to provide quality healthcare treatment to patients is expected to fuel the demand of the hospitals & clinics segment all over the world. To provide the personalized healthcare treatment by the adoption of connected devices and the presence of skilled doctors and specialized departments in hospitals & clinics is expected to boost the segment demand.
Medtronic, Inc., Koninklijke Philips N.V., General Electric Company, IBM Corporation, Microsoft Corporation, Cerner Corporation, AgaMatrix Hong Kong Ltd, Cisco Systems, Inc., GE Healthcare, Huawei Technologies, Intel Corporation, Siemens Healthcare GmbH, AdhereTech, Inc., Bosch Healthcare Solutions GmbH, SAP SE are the leading players operating in global IoT in healthcare market. Service providers are increasingly focusing on research and development process to fuel higher growth in the market. To meet evolving customer demand with respect to better efficiency and durability, several IoT in healthcare service providers are coming up with their technologically advanced offerings.
Download Sample Report @ https://www.techsciresearch.com/sample-report.aspx?cid=7836
Customers can also request for 10% free customization on this report.
“Market players are making high-end investments for research and development activities for the technological up-gradation of the existing healthcare IT infrastructure and introduce innovative features like generating notifications in case of potential system malfunction to take appropriate steps is expected to fuel the growth of the market. The adoption of the latest technologies such as artificial intelligence, deep learning, machine learning, and others to improve the operational efficiency, predict enhancement, facilitate automation and the surge in the use of connected technology to efficiently manage the operational workflow, as well as the clinical tasks, is expected to propel the global IoT in healthcare market growth till 2026” said Mr. Karan Chechi, Research Director with TechSci Research, a research based global management consulting firm.
“IoT in Healthcare Market - Global Industry Size, Share, Trends, Opportunity and Forecast, 2016-2026 Segmented By Component (Medical Devices, System and Software, Services), By Medical Devices (Stationery Medical Devices, Implants, Wearables), By System and Software (Remote Device Management, Data Analytics, Application Security and Others), By Services (Managed Services, Professional Services), By Application (Telemedicine, Remote Patient Monitoring, Clinical Operations and Workflow Management, Connected Imaging and Others), By End-User (Hospitals and Clinics, Clinical Research Centres and Diagnostic Labs) and By Region” has evaluated the future growth potential of global IoT in healthcare market and provided statistics & information on market size, shares, structure and future market growth. The report intends to provide cutting-edge market intelligence and help decision makers take sound investment decisions. Besides, the report also identifies and analyzes the emerging trends along with essential drivers, challenges, and opportunities in the of global IoT in healthcare market.
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Contact
Mr. Ken Mathews
708 Third Avenue,
Manhattan, NY,
New York – 10017
Tel: +1-646-360-1656
Email: [email protected]
Website: https://www.techsciresearch.com/
For More Market Research Blogs Visit: https://techsciblog.com/
#TechSci#Market Research Reports#Global IoT in Healthcare Market#IoT#IoT in Healthcare Market#IoT in Healthcare Market Size#ICT#IoT in Healthcare Market Forecast
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IoT in Healthcare Market to be Dominated by Telemedicine Segment through 2026 | TechSci Research
Rising awareness of self-health monitoring and the government initiatives promoting digital health is expected to drive the demand for global IoT in healthcare market in the forecast period.
According to TechSci Research report, “IoT in Healthcare Market - Global Industry Size, Share, Trends, Opportunity and Forecast, 2016-2026 Segmented By Component (Medical Devices, System and Software, Services), By Medical Devices (Stationery Medical Devices, Implants, Wearables), By System and Software (Remote Device Management, Data Analytics, Application Security and Others), By Services (Managed Services, Professional Services), By Application (Telemedicine, Remote Patient Monitoring, Clinical Operations and Workflow Management, Connected Imaging and Others), By End-User (Hospitals and Clinics, Clinical Research Centres and Diagnostic Labs) and By Region”, the global IoT in healthcare market is expected to grow at an impressive CAGR for the forecast period, 2022-2026.
Healthcare institutions are introducing the internet of things technology to improve and enhance patient monitoring services and reduce the costs to provide effective healthcare services. The growing demand for the reduction of the waiting time in emergency rooms to address patients requiring immediate healthcare services is contributing to the global IoT in healthcare market growth.
However, the increasing concerns of data security and cyber-attacks may restrain the global IoT in healthcare market growth for the forecast period.
Browse XX Figures spread through XX Pages and an in-depth TOC on "Global IoT in Healthcare Market”.
https://www.techsciresearch.com/report/iot-in-healthcare-market/7836.html
Global IoT in healthcare market is segmented into component, application, end-user, regional distribution, and company. Based on the component, the market can be divided into medical devices, system and software, and services. The medical devices segment is dominating the market and is expected to hold a major market share for the forecast period, 2022-2026. The medical devices segment is further segmented into stationery medical devices, implants, and wearables. With the growing adoption of internet of things technology by the healthcare institutions and the rise in the dependency on connected medical devices such as stationery medical devices, wearable devices, implantable for monitoring the health condition of patients is expected to drive the medical devices segment growth for the predicted period.
Based on the application, the market can be divided into telemedicine, remote patient monitoring, clinical operations and workflow management, connected imaging, and others. The telemedicine segment is expected to witness significant growth for the next five years. High penetration of affordable internet services and the proliferation of smart devices is expected to demand of telemedicine segment across the globe for the next five years. The growing penetration of home healthcare services and the surging need to improve the accessibility and reach of healthcare services in remote locations are influencing the growth of the segment.
Based on the end-user, the market is segmented into hospitals and clinics, clinical research centers, and diagnostic labs. The hospitals and clinics segment are expected to account for a major market share for the next five years. The rise in the adoption of IoT-enabled medical devices among healthcare facilities to provide quality healthcare treatment to patients is expected to fuel the demand of the hospitals & clinics segment all over the world. To provide the personalized healthcare treatment by the adoption of connected devices and the presence of skilled doctors and specialized departments in hospitals & clinics is expected to boost the segment demand.
Medtronic, Inc., Koninklijke Philips N.V., General Electric Company, IBM Corporation, Microsoft Corporation, Cerner Corporation, AgaMatrix Hong Kong Ltd, Cisco Systems, Inc., GE Healthcare, Huawei Technologies, Intel Corporation, Siemens Healthcare GmbH, AdhereTech, Inc., Bosch Healthcare Solutions GmbH, SAP SE are the leading players operating in global IoT in healthcare market. Service providers are increasingly focusing on research and development process to fuel higher growth in the market. To meet evolving customer demand with respect to better efficiency and durability, several IoT in healthcare service providers are coming up with their technologically advanced offerings.
Download Sample Report @ https://www.techsciresearch.com/sample-report.aspx?cid=7836
Customers can also request for 10% free customization on this report.
“Market players are making high-end investments for research and development activities for the technological up-gradation of the existing healthcare IT infrastructure and introduce innovative features like generating notifications in case of potential system malfunction to take appropriate steps is expected to fuel the growth of the market. The adoption of the latest technologies such as artificial intelligence, deep learning, machine learning, and others to improve the operational efficiency, predict enhancement, facilitate automation and the surge in the use of connected technology to efficiently manage the operational workflow, as well as the clinical tasks, is expected to propel the global IoT in healthcare market growth till 2026” said Mr. Karan Chechi, Research Director with TechSci Research, a research based global management consulting firm.
“IoT in Healthcare Market - Global Industry Size, Share, Trends, Opportunity and Forecast, 2016-2026 Segmented By Component (Medical Devices, System and Software, Services), By Medical Devices (Stationery Medical Devices, Implants, Wearables), By System and Software (Remote Device Management, Data Analytics, Application Security and Others), By Services (Managed Services, Professional Services), By Application (Telemedicine, Remote Patient Monitoring, Clinical Operations and Workflow Management, Connected Imaging and Others), By End-User (Hospitals and Clinics, Clinical Research Centres and Diagnostic Labs) and By Region” has evaluated the future growth potential of global IoT in healthcare market and provided statistics & information on market size, shares, structure and future market growth. The report intends to provide cutting-edge market intelligence and help decision makers take sound investment decisions. Besides, the report also identifies and analyzes the emerging trends along with essential drivers, challenges, and opportunities in the of global IoT in healthcare market.
Browse Related Reports:
Organ-on-Chip Market - Global Industry Size, Share, Trends, Opportunity and Forecast, 2016-2026 Segmented By Type (Liver, Heart, Lung, Kidney, Others), By Offering (Products v/s Services), By Material Type (Polymer, PDMS, Glass, Silicon, Others), By Application (Physiological Model Development, Drug Discovery, Toxicological Research, Molecular Biology, Others), By End User (Pharmaceutical & Biotechnology Companies, Academic & Research Institutes, Cosmetic Industry, Others), By Region
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Contact
Mr. Ken Mathews
708 Third Avenue,
Manhattan, NY,
New York – 10017
Tel: +1-646-360-1656
Email: [email protected]
Website: https://www.techsciresearch.com/
For More Market Research Blogs Visit: https://techsciblog.com/
#TechSci#Market Research Reports#Global IoT in Healthcare Market#ICT#IoT in Healthcare Market#IoT in Healthcare Market Size#IoT in Healthcare Market Forecast
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Environmentally Friendly Packaging & the Impact on Customer Satisfaction
In recent years, almost every business has aimed to become as environmentally friendly as possible, whether that be by using environmentally friendly products or just simply turning equipment off when not in use. In the packaging industry, the growing trend of becoming more environmentally friendly has been taken off, and it would seem that even consumers are looking to embrace the trend. Businesses are now starting to choose environmentally friendly packaging over that of non eco-friendly packaging, and consumers are becoming more and more influenced by this choice.
There are a number of ways to make your business more environmentally friendly, with the choice in packaging being the common focus for all businesses. Choosing packaging made from recycled, renewable ingredients is a simple way to reduce negative environmental impact. For packaging to be considered eco-friendly, it must have a minimal impact on the environment during its life cycle (from the creation of the packaging to the recycling of the packaging). There are a number of advantages to using eco-friendly packaging:
Decreases your Carbon Footprint: The obvious benefit to eco-friendly packaging is reducing your carbon footprint. Being made from bio-degradable, recycled materials means there is less waste of natural resources.
Disposal: Another benefit of eco-friendly packaging is the ease of disposal, often costing a considerable amount to move and dispose of supplies. Eco-friendly packaging on the other hand is compostable, reusable, and recyclable, meaning that after its original use, the packaging can be buried (compostable), recycled (Broken down and made into more packaging) or re-used (you can either re-use it yourself or recycle it to be used again).
Brand Image: One of the biggest benefits of using eco-friendly packaging is how it reflects on your business. When consumers learn you’re using eco-friendly packaging, it reinforces the idea that your business is a responsible company, willing to look out for the environment. Better brand image leads to better sales and better profits, all because you looked out for the environment.
Cost Benefits: The best news for your business is that eco-friendly packaging is actually cost-effective. With companies reducing the materials used in their packaging, manufacturing the packaging ends up costing less. With fewer materials, packaging weighs less, saving on transportation costs when compared to before.
However, the main question is, do consumers really care about eco-packaging? Well, fortunately, it appears they do. According to an article from sustainablebrands.com, “more than three-quarters of consumers claim that eco-friendly packaging has an influence on the beverage brand they purchase." Consumers are even willing to purchase products that might cost a little more if the packaging is eco-friendly and are sometimes even willing to avoid a specific brand for their lack of eco-friendly packaging. All of this information has lead to a large majority of businesses taking the environment into account as a part of their business strategy, looking to focus on using eco-friendly materials -- with renewable materials becoming a key focus from businesses.
While the stats do look promising, it’s worth noting that “environmental factors were a bigger influence for more developing countries like Brazil, Turkey and India, than in already developed areas like the UK, USA or Japan.” Developing countries saw around 60% of all surveyed saying that they actively look out for environmental information when thinking about purchases, compared to only 25% from the more developed countries. In another article by campaignlive.co.uk, it is said that in an online survey of 1,000 people, conducted by Toluna, “Almost two-fifths of respondents said they would be more likely to buy a product if it had less packaging than a rival’s. More than one-third said they thought some products have too much packaging, and 32% said they like products to have a lot of packaging, only if they are fragile.” It is shown that consumers link the amount of packaging on a product with value, with over-packaged products causing consumers to believe they will have to pay more for it, as well as the obvious impacts on the environment compared to well packaged eco-friendly packaging.
What is PLA packaging?
Firstly, PLA stands for Polylactic Acid. It’s a new type of high molecular polymer material and is commonly known as corn plastic. PLA is made from renewable resources, is biodegradable and has characteristics similar to Polypropylene (PP), Polyethylene (PE) and Polystyrene (PS). There are many uses for PLA and the most recognised include the following:
Bottles
Biodegradable medical devices (screws, pins, rods, plates etc.)
3D printing
Packaging
How is PLA packaging made?
PLA is a polyester made with two possible monomers or building blocks: lactic acid, and lactide. Lactic acid is produced by fermentation under controlled conditions of a carbohydrate source, such as corn starch or sugarcane, making the process sustainable and renewable.
PLA can be produced by the direct condensation of lactic acid. However, this process usually results in a low-density form of PLA (not ideal). In order to produce high-density PLA, the lactic acid must be heated in the presence of an acid catalyst to form cyclic lactide. This is known as ring-opening polymerisation.
How can PLA packaging be disposed?
When it comes to renewable and biodegradable packaging, the PLA packaging play a key part in the sustainability of the given product.
For PLA, there are two main methods of disposing:
1. Compost degradation – Within the first 180 days of a PLA product’s life, it’s 100% biodegradable and can be composted to ensure sustainability. PLA will decompose into digestible polymer fragments in about 7 days at 60°C in a moist environment - a typical composting condition for a large composting operation.
2. Renewable energy recovery (incineration) – Because PLA doesn’t contain any chlorine atoms, so can be safely incinerated under controlled conditions without producing any dioxins (highly toxic chemicals). Although, as biodegradability is the primary motive for PLA and other bioplastics, incineration should be considered after compost degradation as the end-of-life option.
What is PCR Packaging?
PCR means Post-Consumer Recycled material or Post Consumer Resin, and generally refers to plastics such as PET, PP and HDPE which are widely recycled and then reprocessed into a resin that is used to make new packaging. In simple terms, it is packaging that is being given a second life.
Why use PCR in your packaging?
Principally, because it helps the environment. Virgin plastics are generally processed from fossil fuels so reprocessing them has massive benefits to the environment. But that’s not the only reason to use them: The more people that use PCR resin, the greater the demand will be. This in turn drives more recycling of used plastic packaging, helping the commercial case to recycle and means that less plastic ends up in landfill, rivers or then becomes yet more plastic in the ocean. So by using PCR, you help the “snowball effect” of recycling. Many countries around the world are bringing in legislation to force the use of PCR and being a step ahead will help you to be compliant with regulations. Using PCR adds a responsible element to your brand and shows your marketplace that you care. Many consumers will be prepared to pay more for products packaged in PCR packaging, making your product more valuable and potentially more profitable.
Sugarcane Packaging Vs Paper Packaging
If you’d like to learn more about our sugarcane packaging tableware range, or the differences between the two types of materials and how they’re used, please reach out to us today.
In our latest blog we explore the differences between sugarcane packaging and paper packaging products, so you can make an informed decision based on your business needs and values.
While products made from paper and the sugarcane by-product bagasse, look and feel similar, their main differences lie in the way the materials are grown and produced.
Not only is sugarcane food packaging a much better alternative than plastic, there’s also quite a big difference in volume of raw product required between paper vs sugarcane food packaging.
We’ll start our article by delving into sugarcane or bagasse containers, as that’s what our compostable tableware range is made from.
How do spray bottles pump fluid?
Spray bottles are an extremely useful type of machine and an excellent demonstration of basic plumbing principles. A spray-bottle head is made up of only a few parts. It has a trigger lever, which activates a small pump. This pump is attached to a plastic tube that draws cleaning fluid from the bottom of the reservoir. The pump forces this liquid down a narrow barrel and out a small hole at the gun's muzzle. The hole, or nozzle, serves to focus the flowing liquid so that it forms a concentrated stream.
The only complex element in this design is the fluid pump, and it's about as simple as they come. The main moving element is a piston, housed inside a cylinder. Inside the cylinder, there is a small spring. To operate the pump, you pull the trigger back, pushing the piston into the cylinder. The moving piston compresses the spring, so when you release the trigger, the piston is pushed back out of the cylinder. These two strokes of the piston, into the cylinder and out again, constitute the entire pump cycle.
The downstroke, the piston pushing in, shrinks the area of the cylinder, forcing fluid out of the pump. The upstroke, the spring pushing the piston back out, expands the cylinder area, sucking fluid into the pump. In a spray bottle, you need to suck cleaning fluid in from the reservoir below and force it out through the barrel above. In order to get all of the fluid moving through the barrel, the pump must only force the fluid up -- it cannot force the fluid back into the reservoir. In other words, the fluid must move through the pump in only one direction.
The device that makes this possible is called a one-way valve. A spray bottle has two one-way valves in the pumping system: one between the pump and the reservoir and one between the pump and the nozzle. Typically, the valve between the pump and the reservoir consists of a tiny rubber ball that rests neatly inside a small seal. The sides of the seal are angled so that the ball won't fall through. Depending on the design, either gravity or a small spring holds this ball against the seal so that the water passageway is blocked off when you are not pumping. When the piston moves out (when you release the trigger), the expanding area of the cylinder sucks on the fluid below, pulling the ball up out of the seal. Since the ball is lifted up, fluid is free to flow from the reservoir. But when you squeeze the trigger, the outward force of the moving fluid pushes the ball into the seal, blocking off the passageway to the reservoir. Consequently, the pressurized fluid is pushed only into the barrel.
In a spray mechanism, the one-way valve between the pump and the nozzle is a sort of cup, which fits over the end of the barrel. On the upstroke, the inward pressure from the pump pulls the cup against the barrel, so air can't flow in through the nozzle. On the downstroke, the fluid pushing out lifts the cup off the barrel slightly and flows on through the nozzle. Without this second one-way valve, the pump system wouldn't be able to draw fluid up from the reservoir because there would be no suction (no drop in air pressure). The upstroke wouldn't lower the air pressure in the pump; it would only draw in more air to maintain that pressure.
5 Benefits of Using Tubes Packaging for Cosmetic Containers
In the cosmetics industry, we can see a great increase in demand for different types of cosmetic products, such as hair removal, anti-aging, and sunscreen products. The interesting thing is that both men and women are the buyers of these products. These products are sold in attract containers that protect the integrity of the material inside. Let's read about some of the benefits of tubes as cosmetic containers.
For cosmetic containers, plastic tubes are becoming the ideal choice. The reason is that they are attractive and versatile. That's the reason they can satisfy the needs of this fast-growing industry. Given below are some reasons these products are a great choice. Read on.
Affordable
Today, consumers are quite conscious as far as spending money is concerned. They try their level best to save as much money as possible. If you want to reduce your packaging costs, you can try the squeeze tubes.
Fancy cosmetic containers, such as glass are quite expensive. Therefore, they add to the price of the product. On the other hand, plastic tubes use the best technology available. Therefore, they are the most affordable option you can try. The cost is low but the container quality is great.
Versatile
Unlike plastic or glass, plastic tubes offer more versatility. The thing is that they are designed to carry a lot of a substance, such as a sunscreen or shampoo. Apart from this, the openings are adjustable to accommodate the product viscosity. This allows you to store different types of substances, such as cosmetic foundations, astringent toners, and creams, just to name a few. So, versatility is another primary benefit of using these tube containers.
Eco-friendly
Heavy jars of plastic and glass containers are quite eco-friendly. As a matter of fact, small containers don't waste plastic as they are recyclable. Actually, the makers of these products make use of green processes in order to have a minimal effect on the environment. Therefore, if you are looking for an eco-friendly option, we suggest that you try out these containers.
Transportable
Unlike glass containers, plastic tubes are more portable. The reason is that they cover less space, easier to transport and are less fragile. They are much easier to ship as they are more stable. Plus, they can make sure that the quality of the product is always high. You can carry multiple tubes in your own pocket.
Easy to use
Unlike jars that need to be unscrewed before each use, tubes are much easier and convenient. All you need to do is pop the lid, press the tube and the substance will come out. Therefore, they are much easier to handle than glass containers, which makes them an ideal choice for most users.
Long story short, these are the benefits of tubes as cosmetic containers. If you are a manufacturer of a cosmetic product, we suggest that you consider using cosmetic tubes. They can help you bring the costs down and offer your products at a much lower price. Hope this helps.
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