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Video Bar Conferencing Device Market Analysis, Size, Share, Growth, Trends, and Forecasts by 2031
The landscape of communication and collaboration has undergone a remarkable transformation in recent years, driven primarily by the growing demand for remote work solutions and ever-evolving technological advancements. Among the key players in this transformation is the Global Video Bar Conferencing Device Market, a dynamic market that has seen substantial growth and innovation.
𝐆𝐞𝐭 𝐚 𝐅𝐫𝐞𝐞 𝐒𝐚𝐦𝐩𝐥𝐞 𝐑𝐞𝐩𝐨𝐫𝐭:https://www.metastatinsight.com/request-sample/2421
Top Companies
Logitech International S.A.
Plantronics, Inc.
Cisco Systems, Inc.
Neat Company, Inc.
Yealink Inc.
GN Store Nord A/S
Crestron Electronics, Inc.
Owl Labs Inc.
AVer Information Inc.
Konftel AB
Bose Corporation
ViewSonic Corporation
A&T Video Networks Pvt. Ltd.
Vanco International, LLC
BenQ Corporation
This report on Video Bar Conferencing Device Market delves into the details of this market, exploring its evolution, key players, driving factors, challenges, and prospects. Global Video Bar Conferencing Device market is estimated to reach $787.2 Million by 2030; growing at a CAGR of 20.4% from 2023 to 2030.
𝐄𝐱𝐩𝐥𝐨𝐫𝐞 𝐭𝐡𝐞 𝐅𝐮𝐥𝐥 𝐑𝐞𝐩𝐨𝐫𝐭:@https://www.metastatinsight.com/report/video-bar-conferencing-device-market
The evolution of video conferencing can be traced back to the early 2000s when rudimentary webcam solutions were first introduced. These devices represent a leap forward from traditional video conferencing systems, offering simplicity, compactness, and integrated functionality. They combine high-definition cameras, microphones, and speakers into a single, user-friendly device, eliminating the need for elaborate setups and technical expertise.
The future of the Global Video Bar Conferencing Device Market looks promising. As businesses continue to adopt hybrid work models, the demand for flexible, high-quality communication solutions will persist. To stay competitive, manufacturers are likely to focus on improving AI-driven features, enhancing security, and expanding their product portfolios to cater to evolving needs.
The Global Video Bar Conferencing Device Market has evolved into a critical component of modern communication and collaboration. It has not only revolutionized the way businesses connect but has also played a pivotal role in enabling remote work and bridging geographical gaps. As the market continues to grow and innovate, users can expect even more sophisticated and user-friendly solutions that empower seamless and efficient communication in an increasingly interconnected world.
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#VideoBarConferencingDevice#VideoBarConferencingDevicemarket#VideoBarConferencingDeviceindustry#marketsize#marketgrowth#marketforecast#marketanalysis#marketdemand#marketreport#marketresearch
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Hyivy Health Raises $2M Seed Funding to Revolutionize Pelvic Care
FemTech startup Hyivy Health has secured $2M in a seed funding round to advance next-generation pelvic rehabilitation technology to clinical trials in preparation for market entry.
Founded in 2019 by Rachel Bartholomew, the company developed a remote therapeutic monitoring system for gynecology and pelvic medicine.
The round was spearheaded by Zcube – Zambon Research Venture, with the participation of Equation Angels, Beresford Ventures, LLC, FACIT, Women's Equity Lab - Silicon Valley, mHub, and the founding partner of Chai Ventures, according to a report.
Read more: https://nextdigitalhealth.com/funding-news/hyivy-health-raises-2m-seed-funding-to-revolutionize-pelvic-care/
fundingnews #FundingOpportunity #StartupFunding #StartupSuccess #HealthcareNews #HealthcareFunding #nextdigitalhealth #Wi4 #vineetagrawal
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Global Hvac Thermostats Market Research and Future Opportunities Overview 2024 - 2031
The global HVAC (Heating, Ventilation, and Air Conditioning) thermostats market is experiencing a transformative phase driven by technological advancements, increased awareness of energy efficiency, and a growing emphasis on smart home solutions. This article provides an in-depth analysis of the market, including its drivers, challenges, key players, and future trends.
Introduction to HVAC Thermostats
The global HVAC thermostats market is on a robust growth trajectory, driven by the demand for energy-efficient solutions and technological advancements in smart home integration. Despite challenges related to costs and competition, the market's potential for innovation and sustainability presents significant opportunities.
HVAC thermostats are devices that regulate the temperature and humidity levels in residential and commercial buildings. They play a crucial role in maintaining comfort and energy efficiency by controlling heating and cooling systems. With the advent of smart technology, modern thermostats offer features such as remote access, learning capabilities, and integration with home automation systems.
Market Overview
Market Size and Growth Rate
As of 2023, the global HVAC thermostats market is valued at approximately USD 3.5 billion and is expected to grow at a CAGR of 7.8% from 2024 to 2030. This growth is primarily fueled by the rising demand for energy-efficient solutions and the growing adoption of smart home technologies.
Key Drivers of Market Growth
Rising Energy Costs: Increasing energy prices have compelled consumers and businesses to seek energy-efficient solutions, making advanced HVAC thermostats more appealing.
Technological Advancements: The integration of IoT (Internet of Things) technologies in thermostats is enhancing user experience and functionality, driving adoption.
Government Initiatives: Various governments worldwide are promoting energy-efficient systems through incentives and regulations, boosting the HVAC thermostat market.
Challenges Facing the Market
While the market is poised for growth, it also faces several challenges:
High Initial Costs: The upfront investment in advanced thermostats can deter some consumers, especially in cost-sensitive markets.
Market Competition: The increasing number of players and rapid technological changes can create a competitive environment, putting pressure on pricing.
Market Segmentation
The HVAC thermostats market can be segmented based on various factors:
By Type
Mechanical Thermostats: Traditional thermostats that operate on mechanical components.
Digital Thermostats: Electronic devices that offer more precise temperature control.
Smart Thermostats: Advanced devices that can be controlled remotely and learn user preferences.
By Application
Residential: Primarily used in homes for temperature regulation.
Commercial: Utilized in offices, retail spaces, and other commercial establishments.
Industrial: Employed in manufacturing facilities and warehouses for climate control.
By Region
North America: The largest market due to high adoption rates of smart technology.
Europe: Driven by stringent energy efficiency regulations and a growing emphasis on sustainable building practices.
Asia-Pacific: Rapid urbanization and industrial growth are leading to increased demand for HVAC solutions.
Key Players in the Market
The HVAC thermostats market is home to several leading players, including:
Honeywell International Inc.
Nest Labs (Google LLC)
Emerson Electric Co.
Johnson Controls International plc
Ecobee Inc.
These companies are focusing on innovation, strategic partnerships, and expanding their product portfolios to maintain competitive advantages.
Future Trends
Smart Home Integration
The trend toward smart homes is expected to accelerate the adoption of HVAC thermostats. Features like voice control, mobile app integration, and learning algorithms will become standard offerings.
Energy Management Systems
As energy efficiency becomes a priority, HVAC thermostats will increasingly be integrated into larger energy management systems, allowing users to monitor and optimize energy usage more effectively.
Sustainability Focus
The push for sustainability will drive the development of eco-friendly HVAC thermostats that minimize energy consumption and reduce carbon footprints.
Conclusion
The global HVAC thermostats market is on a robust growth trajectory, driven by the demand for energy-efficient solutions and technological advancements in smart home integration. Despite challenges related to costs and competition, the market's potential for innovation and sustainability presents significant opportunities. As consumers and businesses prioritize comfort and energy efficiency, HVAC thermostats will play a vital role in shaping the future of climate control systems. Staying attuned to market trends and technological advancements will be crucial for stakeholders aiming to thrive in this dynamic environment.
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The Rising Adoption of Cloud-Based EHR Systems Will Drive Growth in the Electronic Health Records Market
The global electronic health records (EHR) market size was valued at US$ 24.96 billion in 2023 and is estimated to reach US$ 29.06 billion in 2024. The market is expected to exhibit a CAGR of 2.8% over the forecast period of 2023 to 2030. Electronic health records (EHR) are digital versions of paper-based health and medical records for patients. EHRs contain patient health histories, diagnoses, medications, treatment plans, immunization dates, lab test results, and other clinical information. EHRs aim to improve the quality and safety of healthcare delivery by allowing patients' health information to be securely stored and easily accessed by authorized healthcare providers and medical staff in real-time. The rise of chronic diseases and need for streamlined healthcare services is driving demand for EHR solutions that can support clinical workflows and decision making. The global EHR market is estimated to be valued at US$ 29.06 billion in 2024 and is expected to exhibit a CAGR of 2.8% over the forecast period 2023 to 2030. Key Takeaways Key players operating in the electronic health records market are eClinicalWorks, Cerner Corporation, GE Healthcare, Allscripts Healthcare, LLC, and Epic Systems Corporation. These players are focusing on developing advanced cloud-based EHR solutions and services to gain a competitive edge in the market. The growing prevalence of chronic diseases and need for remote patient monitoring is fueling demand for cloud-based EHR solutions. Cloud deployment enables seamless sharing and exchange of patient health data between healthcare providers in real-time. Technological advancements like integration of AI and machine learning into EHR software are helping improve clinical decision making and streamline various workflows. Vendors are offering predictive analytics capabilities within EHR platforms to aid diagnostics and treatment decisions. Market Trends - Growing adoption of telehealth and virtual care services amid COVID-19 pandemic is driving use of cloud-based EHR platforms for remote patient consultations and sharing of electronic medical records. - Vendors are focusing on leveraging blockchain technology to securely store medical records on distributed ledgers and enable patients to own and control access to their health data. Market Opportunities - Growing healthcare IT spending in emerging markets of Asia Pacific and Latin America offers significant growth opportunities for EHR vendors over the forecast period. - Integrating EHR systems with medical devices, wearables and other digital health technologies through open application programming interfaces (APIs) can enable new remote care delivery models and expansion of patient monitoring outside hospitals. Impact of COVID-19 on Electronic Health Records Market growth The COVID-19 pandemic had a drastic impact on the electronic health records market. At the start of the pandemic in early 2020, healthcare systems saw a steep rise in patient volumes which put immense pressure on their existing paper-based record systems. This highlighted the need for digital tools that could enhance healthcare delivery. EHR systems helped providers effectively manage patient volumes remotely through telehealth solutions. They enabled doctors to review patient records and prescriptions digitally without direct contact. This facilitated continuity of care while minimizing infection risk. Post-COVID, demand is expected to remain high as providers recognize the importance of technology for preparedness against future crises. Adoption of value-based payment models and interoperability standards are also driving increased EHR usage. However, budget constraints amid the economic downturn may impact market growth in the short-term. Overall, COVID-19 has accelerated digital transformation in healthcare, validating the role of EHR systems.
#Electronic Health Records Market Growth#Electronic Health Records Market Analysis#Electronic Health Records Market Demand
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Regulatory Landscape and Compliance in the AI in Clinical Trials Market
The AI in Clinical Trials Market is experiencing rapid growth driven by advancements in artificial intelligence (AI) and machine learning (ML) technologies, coupled with the increasing complexity and cost of clinical trial processes. AI has the potential to transform various aspects of clinical trial design, execution, and analysis by automating tasks, uncovering insights from large datasets, and optimizing decision-making processes.
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One of the primary drivers of market growth is the need for more efficient and cost-effective clinical trial processes to accelerate drug development timelines and reduce development costs. Traditional clinical trial processes are often time-consuming, resource-intensive, and prone to inefficiencies, leading to delays in drug development and high attrition rates. AI-powered solutions offer the potential to streamline various aspects of clinical trial operations, from patient recruitment and eligibility screening to protocol design and monitoring, leading to faster study completion and improved trial outcomes.
Furthermore, AI in clinical trials enables predictive analytics and risk stratification to identify patient populations most likely to benefit from investigational therapies and to predict adverse events or treatment responses. By analyzing patient data from electronic health records (EHRs), medical imaging, wearable devices, and genetic profiles, AI algorithms can identify biomarkers, disease subtypes, and treatment response predictors, enabling more personalized and targeted clinical trial designs. This approach enhances patient selection criteria, increases study power, and improves the likelihood of trial success.
The AI in Clinical Trials Market is Valued USD 1.59 billion in 2024 and projected to reach USD 6.55 billion by 2030, growing at a CAGR of CAGR of 22.4% During the Forecast period of 2024–2032.
The AI in clinical trials market is characterized by the presence of a diverse range of technology providers, including AI startups, healthcare IT companies, and contract research organizations (CROs), offering AI-powered solutions and services for clinical trial optimization. Major players in the market include IBM Watson Health, Oracle Corporation, Microsoft Corporation, BioClinica (a Parexel company), and AiCure, among others. These companies provide AI-driven platforms for patient recruitment, data analytics, remote monitoring, and predictive modeling, catering to the needs of sponsors, investigators, and regulatory agencies across various therapeutic areas and geographies.
Major vendors in the global AI in Clinical Trials Market are IBM Corporation, Exscientia, Saama Technologies, Unlearn.AI, Inc., BioSymetrics, Euretos, Trials.Ai, Insilico Medicine, Ardigen, Pharmaseal, Koninklijke Philips N.V., Intel, Numerate, AiCure, LLC, Envisagenics, NURITAs, BioAge Labs, Inc., Symphony AI., Median Technologies, Innoplexus, Antidote Technologies, Inc., GNS Healthcare, Koneksa Health, Halo Health Systems, and DEEP LENS AI. and Others
Emerging trends in the AI in clinical trials market include the integration of AI with other emerging technologies, such as blockchain, digital biomarkers, and virtual/augmented reality (VR/AR), to enhance data security, patient engagement, and trial conduct. Blockchain technology ensures data integrity, transparency, and traceability by encrypting and storing clinical trial data in a decentralized and immutable ledger, enhancing regulatory compliance and patient trust. Digital biomarkers, captured from wearable devices and mobile apps, provide continuous streams of objective and real-time patient data, enabling remote monitoring and decentralized trial designs. VR/AR technologies facilitate virtual site visits, remote training, and patient education, improving the efficiency and accessibility of clinical trial operations.
Looking ahead, the AI in clinical trials market is poised for continued growth driven by ongoing technological advancements, regulatory support for digital health innovations, and the increasing adoption of AI-powered solutions by pharmaceutical companies, CROs, and academic research institutions. As stakeholders embrace AI to address challenges in clinical trial design, execution, and analysis, AI-driven clinical trials will become increasingly common, leading to more efficient, data-driven, and patient-centric approaches to drug development. Collaborations between industry stakeholders, regulatory agencies, and patient advocacy groups will be essential in driving innovation, establishing best practices, and ensuring the ethical and responsible use of AI in clinical trials.
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Smart Pacifiers Market will drive parenting innovation owing to growing demand for baby monitoring and soothing
The smart pacifier market has witnessed significant growth in recent years owing to technological innovations that provide parents with new ways to monitor and soothe their infants. Smart pacifiers are being integrated with sensors, trackers, and soothing functions that help parents gain insights into their baby's wellbeing and behavior from a distance. Advantages such as motion and breathing monitoring, temperature tracking, and two-way audio allow parents to check on babies remotely while ensuring their safety and comfort.
The Global Smart Pacifier Market Size is estimated to be valued at US$ 640.2 Mn in 2024 and is expected to exhibit a CAGR of 5.4% over the forecast period 2024 to 2031.
Key Takeaways Key players operating in the smart pacifier market include Brainchild Technologies, LLC, Root3 Labs, BlueMaestro, Washington State University, NiNite , and Nouvo Health. These companies are integrating innovative technologies like sensors, wireless connectivity, and soothing audio/vibrations into traditional pacifier designs.
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#Smart Pacifier#Baby Tech#Infant Health#Parenting Gadgets#Wearable Technology#Baby Monitoring#IoT Devices#Childcare Innovation
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Metaverse Investments: Exploring Opportunities in Virtual Real Estate
Ever thought of one day when you could help buyers explore properties remotely, and experience the ambiance, and surrounding area without the need to travel?
Well, the metaverse is making all of it possible.
With the uprise metaverse, now real estate agents can showcase properties to buyers anywhere in the world, transcending traditional borders and expanding reach. That being said, we are here to explore the potential of the metaverse for real estate. So, let’s know how the metaverse is benefitting real estate and why you should invest in it.
Why Invest in the Metaverse?
The metaverse offers a treasure trove of benefits for the real estate industry, impacting different aspects from marketing and sales to ownership and community building.
The GCC countries are coming to the forefront in the metaverse world. It’s predicted that by 2030, the metaverse could bring in $15 billion into the GCC economies. One of the leading metaverse economies in the region, Saudi Arabia would infuse $7.6 billion, while the UAE would bring in $3.3 billion. In the UAE, Dubai launched its metaverse strategy, promising to generate over 40,000 jobs in the next 5 years. The rapid adoption of the metaverse in real estate is fueled by tech-savvy youth and internet user rates.
Many companies have already invested big money in the metaverse real estate market, some of them are:
List of top companies in the Metaverse Real Estate Market:
Decentraland Foundation
Linden Lab
ShibaLand LLC
Somnium Space LTD.
SuperWorld Inc.
TandB Media Global Thailand Co. LTD.
The Sandbox
Let’s explore more about the transformative benefits of the metaverse for real estate:
Saves realtor’s effort and time
Accompanying clients for house hunting, showing homes, and driving around are too tedious and require much effort. By investing in the metaverse, you can give virtual tours to clients and help them explore the property in and out on their laptops or smartphones. This will not only cut down your time and efforts but also draw in more clients due to the convenience you will provide.
Offers a Global Reach
By welcoming the metaverse, realtors can actually enhance their productivity. VR not only provides convenience but also expands client reach, leading to more potential sales and inquiries. By leveraging VR, realtors can give property tours to clients all over the world.
When it comes to revenue generation, the global demand for the metaverse Real Estate Market was worth USD 358.0 million in 2020. It is expected to reach USD 3600 million by 2025.
As per this article, the global Metaverse Real Estate market size will reach USD million in 2028, growing at a CAGR of Percent over the analysis period.
To put it in short, the use of the metaverse by realtors can streamline their workflow, boost productivity, increase sales, and improve client experience. Because of such benefits, the metaverse is poised to become an important player in the real estate landscape.
Provides Immersive Customer Experience
3D walkthroughs can really be a showstopper of your property tour. Customers get to have their own space to explore the property freely and ask questions, if any. Metaverse platforms can help you add even the minor details on the property in the design. Customers can have a view from the balcony, they can see lights, the storage area, the natural lighting coming through the window, and much more. Such a “never-seen-before” experience can excite customers to take the next step in their buying process.
Offers home buyers unlimited design options
Physically staging a property tour comes with the need to overcome many logistic challenges. For example, setting large pieces of furniture in the house and with small hallways needs a lot of hassle. This can be a tiresome act and can limit the buyer’s design options.
Transactions within the metaverse can be openly tracked and verified on blockchain ledgers, enhancing compliance with financial regulations. By prioritizing security and privacy in their metaverse endeavors, banks can differentiate themselves from potential competitors.
Real-Time Financial Services
The Metaverse with its dynamic characteristics, allows banks to offer real-time services. Be it consultations, transactions, or dispute resolutions, everything can happen instantly, regardless of time or place. This can tremendously boost customer satisfaction and upscale banking operations.
To avoid that, realtors can go for virtual staging. This will help buyers choose furniture or decor as per their liking and see what will look best in the space. The options will be many and the customers will definitely be satisfied with the experience.
Realtors can even select a different standing design according to the preferences of each buyer, helping customize the experience even more.
The metaverse is a game-changer. It redefines marketing, enhances experiences, streamlines processes, and opens doors to new sales opportunities. As this technology evolves, the real estate landscape needs to adapt and embrace the endless possibilities offered by the virtual world.
Conclusion
Be it for a boost in sales, convenience, cost, or time-saving benefits, the metaverse is reshaping the real estate industry. The real estate companies that embraced this revolution have already started getting profitable results. So, why stick with the traditional real estate marketing process? Leverage the potential of the metaverse and become the industry leader you were meant to be.
Our team of metaverse experts at ibentos guides you every step of the way, ensuring you make the strategic choices that maximize your growth. Ready to carve your niche with us? Contact us today and let’s build your metaverse masterpiece.
Source: https://ibentos.com/blogs/metaverse-investments-exploring-opportunities-in-virtual-real-estate/
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Digital Therapeutics Market 2023 Key Trends, Challenges and Standardization to 2030
The Digital Therapeutics Market has emerged as a transformative force in the healthcare sector, leveraging digital technologies to deliver evidence-based therapeutic interventions to patients. This innovative approach represents a convergence of healthcare and technology, aiming to improve patient outcomes and enhance overall well-being. With the increasing prevalence of chronic diseases and the growing adoption of digital health solutions, the digital therapeutics market is poised for significant growth.
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One of the key drivers propelling the expansion of the digital therapeutics market is the rising global burden of chronic diseases. Conditions such as diabetes, cardiovascular diseases, and mental health disorders are escalating, demanding effective and accessible solutions. Digital therapeutics offer a scalable and cost-effective means of delivering personalized interventions, empowering patients to manage their health actively. Governments around the world are recognizing the potential of these digital solutions, aligning their healthcare policies to encourage the integration of digital therapeutics into traditional healthcare systems.
However, the market is not without its challenges. Privacy and security concerns, regulatory complexities, and the need for robust evidence of efficacy pose significant obstacles. Ensuring the confidentiality of patient data and complying with stringent regulations are critical considerations for digital therapeutics providers. Regulatory bodies are working towards establishing frameworks that balance innovation with patient safety, fostering a conducive environment for the growth of the digital therapeutics market.
Despite these challenges, the digital therapeutics market is buoyed by several growth factors. The increasing penetration of smartphones and internet connectivity, coupled with a growing tech-savvy population, has created a favorable environment for the adoption of digital health solutions. Moreover, the ongoing COVID-19 pandemic has accelerated the acceptance of telehealth and digital therapeutics, with patients and healthcare providers seeking remote alternatives to traditional care delivery models.
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Government organizations play a pivotal role in shaping the landscape of the digital therapeutics market. Regulatory bodies such as the Food and Drug Administration (FDA) in the United States and the European Medicines Agency (EMA) have been actively working to establish clear guidelines for the approval and regulation of digital therapeutics. For instance, the FDA has provided a regulatory pathway for certain digital therapeutics to be prescribed as standalone treatments for specific medical conditions. Such initiatives provide a regulatory framework that fosters innovation while ensuring patient safety.
Key Companies profiled: Pear Therapeutics, Inc.; Akili Interactive Labs, Inc.; HYGIEIA; DarioHealth Corp.; BigHealth; GAIA AG; Limbix Health, Inc.; OMADA HEALTH, INC.; Welldoc, Inc.; 2Morrow, Inc; Teladoc Health, Inc.; Propeller Health (ResMed); Fitbit LLC; CANARY HEALTH; Noom, Inc.
Digital Therapeutics Market Segmentation
Application Outlook (Revenue, USD Billion, 2018 - 2030)
Diabetes
Obesity
End Use Outlook (Revenue, USD Billion, 2018 - 2030)
Patients
Providers
Payers
Employers
By Geography
North America (U.S., Canada, and Mexico)
Europe (Germany, France, Italy, Spain, U.K., Russia, and Rest of Europe)
Asia Pacific (China, India, Japan, Australia, and Rest of Asia Pacific)
South America (Brazil, Argentina, and Rest of South America)
Middle East & Africa (South Africa, UAE, and Rest of ME&A)
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Exploring Authenticity and the Future of DEI with Joseph Santana
In this episode of Live in the Lab, host Keith Bilous has a fascinating conversation with Joseph Santana, CEO of Joseph Santana LLC and a leader in business impacting diversity, equity and inclusion efforts. Joseph shares his journey of transformation and the principles that have guided his success. He discusses the importance of authenticity, maintaining integrity, and developing a results-oriented mindset. Moreover, he highlights the significance of fulfilling commitments and the transformational power of visualization. Joseph also delves into the challenges organizations face in relation to DEI, emphasizing the need for authenticity and the importance of supporting underrepresented groups. He also discusses the significance of remote work in DEI discussions and the need for organizations to evolve to support a more diverse workforce. Joseph shares his insights on the future of DEI, the importance of diversity for creativity and innovation, and why DEI will remain a strategically important topic for organizations for the next 50 years. Watch this episode for an insightful discussion on diversity, equity, inclusion and the future of work. Don't forget to like and subscribe for more thought-provoking conversations! Ready for an insightful discussion on Diversity, Equity, Inclusion and the future of work? Watch now!"
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Global Digital Stethoscope Market Is Estimated To Witness High Growth Owing To Rising Demand For Remote Patient Monitoring And Increasing Adoption Of Telemedicine.
A) Market Overview:
Digital stethoscopes are devices that provide high-quality sound reproduction, allowing healthcare professionals to listen to and diagnose heart, lung, and other body sounds. These devices come with advanced features such as noise reduction, amplification, and connectivity to electronic health record (EHR) systems. The use cases for digital stethoscopes include remote patient monitoring, telemedicine consultations, and recording and sharing of auscultation sounds for further analysis.
The global Digital Stethoscope market is estimated to be valued at US$ 101.57 million in 2022 and is expected to exhibit a CAGR of 6.36% over the forecast period 2023-2030, as highlighted in a new report published by Coherent Market Insights.
B) Market Dynamics:
The two drivers fueling the growth of the Digital Stethoscope Market Growth are the rising demand for remote patient monitoring and the increasing adoption of telemedicine. Remote patient monitoring allows healthcare providers to monitor patient's physiological parameters, including heart and lung sounds, from a distance. This helps in early detection of abnormalities and timely intervention. Telemedicine consultations are becoming increasingly popular due to their convenience and cost-effectiveness. Digital stethoscopes play a crucial role in these virtual consultations, enabling healthcare professionals to listen to patients' heart and lung sounds in real time.
C) Market Key Trends:
One key trend in the Digital Stethoscope Market is the integration of artificial intelligence (AI) technology. AI algorithms can assist healthcare professionals in the interpretation of auscultation sounds, improving accuracy and efficiency in diagnosis. For example, AI-powered digital stethoscopes can detect early signs of heart murmurs or abnormal lung sounds, helping in the early detection of cardiovascular and respiratory diseases.
D) SWOT Analysis:
Strengths:
- High sound quality and advanced features of digital stethoscopes.
- Rising demand for remote patient monitoring and telemedicine.
Weaknesses:
- High cost compared to traditional stethoscopes.
- Limited penetration in developing regions.
Opportunities:
- Growing adoption of telehealth services.
- Technological advancements leading to the development of more advanced digital stethoscopes.
Threats:
- Lack of standardized protocols for the interpretation of auscultation sounds.
- Data privacy and security concerns.
E) Key Takeaways:
- The global digital stethoscope market is expected to witness high growth, exhibiting a CAGR of 6.36% over the forecast period, due to increasing demand for remote patient monitoring and the adoption of telemedicine.
- North America is dominating the digital stethoscope market, owing to the presence of advanced healthcare infrastructure and a high adoption rate of telehealth services.
- Key players operating in the global Digital Stethoscope Market include Eko Devices, FarmaSino Pharmaceuticals, Contec Medical Systems, Qufu Longer Care Meditech Limited, Exanovo Group, Think Labs Medical LLC, Sensi Cardiac, and 3M.
In conclusion, the global digital stethoscope market is poised for significant growth due to the rising demand for remote patient monitoring and the increasing adoption of telemedicine. The integration of AI technology and the development of more advanced devices are expected to drive further advancements in this market. However, challenges related to data privacy and limited penetration in developing regions need to be addressed for the widespread adoption of digital stethoscopes.
#Digital Stethoscope Market#Digital Stethoscope Market Demand#Digital Stethoscope Market Sale#Digital Stethoscope Market Trends#Digital Stethoscope Market Analysis#Coherent Market Insights#Digital Stethoscope Market Growth
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Edge AI Software Market Size to Reach at a Highest CAGR of 27.4% by 2028
Edge AI Software Market, by Material Type (Copper, Low Carbon), End-Use (Residential, Commercial, Industrial), Implementation (New Construction, Retrofit) and Geography (North America, Europe, Asia-Pacific, Middle East and Africa and South America)
The global edge AI software market size is projected to reach a CAGR of 27.4% from 2021-2028.
Edge Artificial Intelligence (AI) software is a combination of edge computing technology and machine learning. This AI software automatically transforms raw data into movements or events, predictions, insights without costly analysis of data and big data. The software tools that are offered are in the form of frameworks and software development kit which offers benefit of merging AI abilities with software applications.
Increasing enterprise workloads on cloud, rapid developments of IoT, and growth in number of intelligent applications are some of the factors that have supported long-term expansion for Edge AI Software Market.
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Regional Analysis
China will remain among the fastest growing in this cluster of regional markets. Led by countries such as Australia, India, and South Korea, the market in Asia-Pacific.
Key Players
WS Corporation
Anagog Inc.
Bragi Inc.
Foghorn Systems Pvt Ltd
Google LLC
IBM Corporation
Microsoft Corporation
Nutanix Inc.
TIBCO Software Inc.
Veea Systems Inc.
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Recent Developments
28 September, 2021-TIBCO Software Inc., a global leader in enterprise data, empowers its customers to connect, unify, and confidently predict business outcomes, solving the world's most complex data-driven challenges. TIBCO announced an evolution of its data quality capabilities into the new TIBCO DQ product family, along with key enhancements to TIBCO® Data Virtualization and TIBCO EBX® within the Unify portfolio.
September 29,2021-TIBCO has launched Cloud Discover and Cloud Composer, along with TIBCO LABS Gallery, a new way for customers to interact with its innovation centre.
Reasons to Acquire
Increase your understanding of the market for identifying the best and suitable strategies and decisions on the basis of sales or revenue fluctuations in terms of volume and value, distribution chain analysis, market trends and factors
Gain authentic and granular data access for Edge AI Software Market so as to understand the trends and the factors involved behind changing market situations
Qualitative and quantitative data utilization to discover arrays of future growth from the market trends of leaders to market visionaries and then recognize the significant areas to compete in the future
In-depth analysis of the changing trends of the market by visualizing the historic and forecast year growth patterns
Purchase This Report: https://www.delvens.com/checkout/edge-AI-software-market-trends-forecast-till-2028
Scope of the Research:
Edge AI Software Market is segmented into component, data source, application, industry vertical and region:
On the basis of Component
Solutions
Services
On the basis of Data Source
Speech Recognition
Biometric Data
Sensor Data
Mobile Data
On the basis of Application
Autonomous Vehicles
Access Management
Video Surveillance
Remote Monitoring & Predictive Maintenance
Telemetry
Energy Management
On the basis of Industry Vertical
Government & Public
Manufacturing
Automotive
Energy & Utilities
Telecom
Healthcare
Others
On the basis of Region
Asia Pacific
North America
Europe
South America
Middle East & Africa
About Us:
Delvens is a strategic advisory and consulting company headquartered in New Delhi, India. The company holds expertise in providing syndicated research reports, customized research reports and consulting services. Delvens qualitative and quantitative data is highly utilized by each level from niche to major markets, serving more than 1K prominent companies by assuring to provide the information on country, regional and global business environment. We have a database for more than 45 industries in more than 115+ major countries globally.
Delvens database assists the clients by providing in-depth information in crucial business decisions. Delvens offers significant facts and figures across various industries namely Healthcare, IT & Telecom, Chemicals & Materials, Semiconductor & Electronics, Energy, Pharmaceutical, Consumer Goods & Services, Food & Beverages. Our company provides an exhaustive and comprehensive understanding of the business environment.
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Note-Taking Management Software Market Growing Popularity and Emerging Trends in the Industry
Latest edition released by AMA on Global Note-Taking Management Software Market to regulate the balance of demand and supply. This intelligence report on Note-Taking Management Software includes Investigation of past progress, ongoing market scenarios, and future prospects. Data True to market on the products, strategies and market share of leading companies of this particular market are mentioned. It’s a 360-degree overview of the global market’s competitive landscape. The report further predicts the size and valuation of the global market during the forecast period. Some of the key players profiled in the study are
Microsoft Corporation (OneNote) (United States)
Google LLC (Google Keep) (United States)
Evernote Corporation (United States)
Ginger Labs, Inc. (Notability) (United States)
Slite (Sweden)
Shiny Frog (Bear) (Ireland)
Milanote (Australia)
Automattic Inc. (Simplenote)
Notion Labs Inc. (United States)
Apple Inc. (Apple Notes) (United States) In the case of remotely operated applications and programs carried out across the geographically dispersed areas, the operational complexity is maximum. Thus, to enable access for such notes and other documents simultaneously for the number of note-taking management software providers have introduced note sharing options which have ultimately encouraged the demand for note-taking management tools. For instance, Google LLC has introduced a cloud-based platform named Google Keep which enables users to remotely extract, update and monitor notes which are saved on remote systems. Google keep also enables consumers to share these notes. Google has introduced this feature in 2014 with huge design changes and new functionality. Market Trends: Upsurging Use of AI-enabled Note Taking Management Software
Strategic Collaboration has led to Technologically Enhanced Note Taking Management Software
Opportunities: Growing Penetration of Mobile-Based Note Taking Management Applications
Introduction to Structured Note Taking Software
Improves Organizational Performance by Prioritizing Content and Organizing Effectively
Market Drivers: Growing Adoption of Collaborative Note-taking Tools Or Note Sharing
Introduction to Enterprise Based Employee Intranet Software
Upsurging Demand for Note Taking Management Software from Consumer Applications
Presented By
AMA Research & Media LLP
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Internet of Things (IoT) in Healthcare Market to be Worth $312.7 Billion by 2030 - Exclusive Report by Meticulous Research®
According to a new market research report titled, ‘IoT in Healthcare Market by Component (Monitoring Devices (Glucose, Cardiac, Respiratory, Blood Pressure), Pacemaker, Ventilator, Infusion Pump}, Software), Application (Telehealth, Imaging, Operation Management), End User - Global Forecast to 2030’ published by Meticulous Research®, the IoT in healthcare market is projected to reach $312.7 billion by 2030, at a CAGR of 15% from 2023 to 2030.
Download Free Sample Report Now @ https://www.meticulousresearch.com/download-sample-report/cp_id=4945
The healthcare industry is rapidly shifting from paper-based healthcare to digital healthcare technology. Effective use of IoT-enabled solutions in healthcare fulfils the need for better diagnosis and treatment, thereby reducing the cost of healthcare services. This digital approach is patient-centric and uses data from across the healthcare continuum to improve the patient experience and the population's health and reduce a load of chronic diseases in the population.
The increasing burden of chronic diseases, rising number of patients, growing geriatric population, technological advancements in the healthcare sector, and focus on digitalization in the healthcare industry are driving the IoT in healthcare market growth. The rising focus on telehealth and the growing adoption of IoT-enabled medical devices and sensors for effective treatment delivery provide market growth opportunities. However, patient data security concerns and issues related to data management and interoperability are creating challenges for the growth of this market to some extent. High implementation and ownership costs of IoT infrastructure and a lack of consumer awareness about healthcare IoT in emerging economies hinder the market growth.
Some of the key players in the IoT in healthcare market include Medtronic plc (U.S.), GE HealthCare Technologies Inc. (U.S.), Koninklijke Philips N.V., Philips (Netherlands), Siemens Healthineers (Germany), Abbot Laboratories (U.S.), Boston Scientific Corporation (U.S.), Honeywell Life Care Solutions (U.S.), BIOTRONIK SE & Co. KG (Germany), AgaMatrix, Inc. (U.S.), Securitas Healthcare, LLC. (U.S.), AliveCor (U.S.), iHealth Labs, Inc. (U.S.), Johnson & Johnson (U.S.), Baxter (U.S.), OMRON Healthcare, Inc. (Japan), Intel Corporation (U.S.), International Business Machines Corporation (U.S.), and Microsoft Corporation (U.S.).
Growing Focus on Telehealth to Offer Opportunities for Internet of Things (IoT) in Healthcare Market Growth
Telehealth uses communication technologies and digital information, such as smartphones and computers, to manage and access remote healthcare services. Many countries increasingly adopt telehealth in their healthcare services infrastructure. With IoT-based solutions, healthcare providers and patients can monitor their progress through the automated record of patients’ vitals and other health conditions. The data collection and remote connectivity of IoT technology make it perfect for expanding and enabling telemedicine services government bodies across the globe are also emphasizing the use of telehealth technologies, thus driving market growth. For instance, in February 2020 CDC issued a guideline to healthcare providers to adopt telehealth services to reduce the risk of COVID-19 spread. Additionally, the shortage of healthcare providers, the rising elderly population, the increasing burden of chronic diseases, and technological advancements in the healthcare sector provide market growth opportunities.
Speak to our Analysts to Understand the Impact of COVID-19 on Your Business: https://www.meticulousresearch.com/speak-to-analyst/cp_id=4945
IoT in Healthcare Market is segmented by Component (Medical Devices [by Type {Benchtop & Portable Medical Devices, Implantable Medical Devices, Wearable Medical Devices}, by Product {Imaging Systems, Monitoring Devices, Cardiovascular Devices, Patient Monitors, Ventilators, Infusion Pumps, Anesthesia Machines, Hearing Devices, Dialysis Machine, Other IoT-enabled Medical Devices}], Software [Data Collection and Analytics, Device Integration, Hospital Operation Management, Others], Services), Application (Telehealth/Telemedicine, Hospital Operations & Workflow Management, Inpatient Monitoring, Imaging, Other Applications), End User (Hospitals & Clinics, Home Care & Long-Term Care Centers, Health Insurance Companies, Personal Users, Other End Users), and Geography (North America, Europe, Asia-Pacific, Latin America, and the Middle East & Africa).
Based on component, the IoT in healthcare market is segmented into medical devices, software, and services. In 2023, the medical devices segment is expected to account for the largest share of the IoT in healthcare market. Wearable IoT medical devices and home monitoring systems provide clinicians with essential data about patients' vital signs, physical activity, and other health parameters. These parameters play an important role in remote patient monitoring. IoT-enabled medical devices act as a support system for healthcare providers as it eliminates the need for the physical presence of doctors. Moreover, the growing emphasis on patient care and safety, the need for patient data for accurate diagnosis, and consumer inclination toward medical devices for self-care drive the market.
Based on application, the IoT in healthcare market is segmented into telehealth/telemedicine, hospital operations & workflow management, inpatient monitoring, imaging, and other applications. In 2023, the telemedicine segment is expected to account for the largest share of the IoT in healthcare market. The largest share of the segment is attributed to the high adoption of telemedicine in healthcare services by many countries, increased accessibility to healthcare services in remote locations through telemedicine, and government initiatives for the adoption of telemedicine.
Quick Buy – IoT in Healthcare Market Research Report: https://www.meticulousresearch.com/Checkout/83099439
IoT telemedicine can enable healthcare providers to remotely monitor patients' health status in real-time, allowing for early intervention and better management of chronic conditions. IoT-enabled remote patient monitoring solutions can include wearable devices that monitor vital signs, such as heart rate, blood pressure, and glucose levels, and send the data to healthcare providers for review.
Based on the end user, the IoT in healthcare market is segmented into hospitals & clinics, home care & long-term care centers, health insurance companies, personal users, and other end users. The home care & long-term care centers segment is projected to register the highest CAGR during the forecast period. People suffering from chronic diseases prefer home care & long-term care over hospitals and clinics owing to the comfort and convenience of patients in home care, less cost, and faster recovery. This is expected to drive the market. IoT-enabled medical devices in care centers help patients and healthcare providers monitor health in real time for treatment planning and tracking patients' health conditions.
Based on geography, the IoT in healthcare market is segmented into North America, Europe, Asia-pacific, Latin America, and the Middle East & Africa. Asia-Pacific is projected to register for the highest CAGR over the forecast period. The growth of this market is attributed to the fast-growing healthcare industry, efforts to digitalize the healthcare infrastructure in India, China, and other emerging economies, investments & reforms to modernize China’s healthcare infrastructure, and the need to manage the burden of chronic diseases.
To gain more insights into the market with a detailed table of content and figures, click here: https://www.meticulousresearch.com/product/healthcare-iot-market-4945
Scope of the Report:
IoT in Healthcare Market Assessment, by Component
Medical Devices
Medical Devices, by Type
Benchtop & Portable Medical Devices
Implantable Medical Devices
Wearable Medical Devices
Medical Devices, by Product
Imaging Systems
Monitoring Devices
Blood Glucose Monitoring Devices
Cardiac Monitoring Devices
Blood Pressure Monitoring Devices
Multiparameter Monitoring Devices
Respiratory Monitoring Devices
Fetal and Neonatal Monitoring Device
Neurological Monitoring Devices
Other Monitoring Devices (Oxygen Concentrator, Thermometer, and Weight Monitoring Devices)
Cardiovascular Devices
Implantable Cardioverter Defibrillators
Pacemakers
Patient Monitors
Ventilators
Infusion Pumps
Anesthesia Machines
Hearing Devices
Dialysis Machines
Other IoT-enabled Medical Devices
Note: Other monitoring devices include Oxygen Concentrator, Thermometer, and Weight Monitoring Devices
Note: Other IoT-enabled medical devices include sleep therapy devices, medical emergency response systems, hand hygiene monitors, posture and activity tracking systems, and connected inhalers.
Note: Consumer electronic devices such as smartwatches and fitness trackers are not considered under the scope of this study
Software
Data Collection and Analytics
Device Integration
Hospital Operation Management
Other Software
Services
Other software include medication management, hospital components management, and data and application security.
IoT in Healthcare Market Assessment, by Application
Telehealth/Telemedicine
Hospital Operations & Workflow Management
Inpatient Monitoring
Imaging
Other Applications
Other applications include Fitness and wellness Measurement, Predictive Device Maintenance, and Medication Management
IoT in Healthcare Market Assessment, by End User
Hospitals & Clinics
Home Care & Long-Term Care Centers
Health Insurance Companies
Personal Users
Other End Users
Other end users include academic & research institutes, defense, and government agencies.
IoT in Healthcare Market Assessment, by Geography
North America
U.S.
Canada
Europe
U.K.
Germany
France
Spain
Italy
Rest of Europe
Asia-Pacific
Japan
China
India
Rest of Asia-Pacific
Latin America
Middle East & Africa
Download Free Sample Report Now @ https://www.meticulousresearch.com/download-sample-report/cp_id=4945 About Meticulous Research®
Meticulous Research® was founded in 2010 and incorporated as Meticulous Market Research Pvt. Ltd. in 2013 as a private limited company under the Companies Act, 1956. Since its incorporation, the company has become the leading provider of premium market intelligence in North America, Europe, Asia-Pacific, Latin America, and the Middle East & Africa.
Contact: Mr. Khushal Bombe Meticulous Market Research Inc. 1267 Willis St, Ste 200 Redding, California, 96001, U.S. USA: +1-646-781-8004 Europe : +44-203-868-8738 APAC: +91 744-7780008 Email- [email protected] Visit Our Website: https://www.meticulousresearch.com/ Connect with us on LinkedIn- https://www.linkedin.com/company/meticulous-research Content Source: https://www.meticulousresearch.com/pressrelease/204/healthcare-iot-market-2030
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Remoter labs llc
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Remoter labs llc
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Tomorrow’s Technology on the Space Station Today
Tablets, smart appliances, and other technologies that are an indispensable part of daily life are no longer state-of-the-art compared to the research and technology development going on over our heads. As we celebrate 20 years of humans continuously living and working in space aboard the International Space Station, we’re recapping some of the out-of-this-world tech development and research being done on the orbiting lab too.
Our Space Technology Mission Directorate (STMD) helps redefine state-of-the-art tech for living and working in space. Here are 10 technologies tried and tested on the space station with helping hands from its astronaut occupants over the years.
1. Astronaut Wanna-Bees
Astronauts on the space station are responsible for everything from conducting science experiments and deploying satellites to tracking inventory and cleaning. While all are necessary, the crew can delegate some jobs to the newest robotic inhabitants – Astrobees.
youtube
These cube-shaped robots can work independently or in tandem, carrying out research activities. Once they prove themselves, the bots will take on some of the more time-consuming tasks, such as monitoring the status of dozens of experiments. The three robots – named Bumble, Honey, and Queen – can operate autonomously following a programmed set of instructions or controlled remotely. Each uses cameras for navigation, fans for propulsion, and a rechargeable battery for power. The robots also have a perching arm that lets them grip handrails or hold items. These free-flying helpers take advantage of another STMD technology called Gecko Grippers that “stick” to any surface.
2. Getting a Grip in Microgravity
We wanted to develop tools for grabbing space junk, and something strong and super-sticky is necessary to collect the diverse material orbiting Earth. So, engineers studied the gecko lizard, perhaps the most efficient “grabber” on this planet. Millions of extremely fine hairs on the bottom of their feet make an incredible amount of contact with surfaces so the gecko can hold onto anything. That inspired our engineers to create a similar material.
Now the Gecko Gripper made by OnRobot is sold on the commercial market, supporting industrial activities such as materials handling and assembly. The NASA gecko adhesive gripper that’s being tested in microgravity on the Astrobee robots was fabricated on Earth. But other small plastic parts can now be manufactured in space.
3. Make It, or Don’t Take It
Frequent resupply trips from Earth to the Moon, Mars, and other solar system bodies are simply not realistic. In order to become truly Earth-independent and increase sustainability, we had to come up with ways to manufacture supplies on demand.
A demonstration of the first 3D printer in space was tested on the space station in 2014, proving it worked in microgravity. This paved the way for the first commercial 3D printer in space, which is operated by Made In Space. It has successfully produced more than 150 parts since its activation in 2016. Designs for tools, parts, and many other objects are transmitted to the station by the company, which also oversees the print jobs. Different kinds of plastic filaments use heat and pressure in a process that’s similar to the way a hot glue gun works. The molten material is precisely deposited using a back-and-forth motion until the part forms. The next logical step for efficient 3D printing was using recycled plastics to create needed objects.
4. The Nine Lives of Plastic
To help fragile technology survive launch and keep food safe for consumption, NASA employs a lot of single-use plastics. That material is a valuable resource, so we are developing a number of ways to repurpose it. The Refabricator, delivered to the station in 2018, is designed to reuse everything from plastic bags to packing foam. The waste plastic is super-heated and transformed into the feedstock for its built-in 3D printer. The filament can be used repeatedly: a 3D-printed wrench that’s no longer needed can be dropped into the machine and used to make any one of the pre-programmed objects, such as a spoon. The dorm-fridge-sized machine created by Tethers Unlimited Inc. successfully manufactured its first object, but the technology experienced some issues in the bonding process likely due to microgravity’s effect on the materials. Thus, the Refabricator continues to undergo additional testing to perfect its performance.
5. Speed Metal
An upcoming hardware test on the station will try out a new kind of 3D printer. The on-demand digital manufacturing technology is capable of using different kinds of materials, including plastic and metals, to create new parts. We commissioned TechShot Inc. to build the hardware to fabricate objects made from aerospace-grade metals and electronics. On Earth, FabLab has already demonstrated its ability to manufacture strong, complex metal tools and other items. The unit includes a metal additive manufacturing process, furnace, and endmill for post-processing. It also has built-in monitoring for in-process inspection. When the FabLab is installed on the space station, it will be remotely operated by controllers on Earth. Right now, another printer created by the same company is doing a different kind of 3D printing on station.
6. A Doctor’s BFF
Today scientists are also learning to 3D print living tissues. However, the force of gravity on this planet makes it hard to print cells that maintain their shape. So on Earth, scientists use scaffolding to help keep the printed structures from collapsing.
The 3D BioFabrication Facility (BFF) created by TechShot Inc. could provide researchers a gamechanger that sidesteps the need to use scaffolds by bioprinting in microgravity. This first American bioprinter in space uses bio-inks that contain adult human cells along with a cell-culturing system to strengthen the tissue over time. Eventually, that means that these manufactured tissues will keep their shape once returned to Earth’s gravity! While the road to bioprinting human organs is likely still many years away, these efforts on the space station may move us closer to that much-needed capability for the more than 100,000 people on the wait list for organ transplant.
7. Growing Vitamins
Conditions in space are hard on the human body, and they also can be punishing on food. Regular deliveries of food to the space station refresh the supply of nutritious meals for astronauts. But prepackaged food stored on the Moon or sent to Mars in advance of astronauts could lose some nutritional value over time.
That’s why the BioNutrients experiment is underway. Two different strains of baker’s yeast which are engineered to produce essential nutrients on demand are being checked for shelf life in orbit. Samples of the yeast are being stored at room temperature aboard the space station and then are activated at different intervals, frozen, and returned to Earth for evaluation. These tests will allow scientists to check how long their specially-engineered microbes can be stored on the shelf, while still supplying fresh nutrients that humans need to stay healthy in space. Such microbes must be able to be stored for months, even years, to support the longer durations of exploration missions. If successful, these space-adapted organisms could also be engineered for the potential production of medicines. Similar organisms used in this system could provide fresh foods like yogurt or kefir on demand. Although designed for space, this system also could help provide nutrition for people in remote areas of our planet.
8. Rough and Ready
Everything from paints and container seals to switches and thermal protection systems must withstand the punishing environment of space. Atomic oxygen, charged-particle radiation, collisions with meteoroids and space debris, and temperature extremes (all combined with the vacuum) are just some conditions that are only found in space. Not all of these can be replicated on Earth. In 2001, we addressed this testing problem with the Materials International Space Station Experiment (MISSE). Technologists can send small samples of just about any technology or material into low-Earth orbit for six months or more. Mounted to the exterior of the space station, MISSE has tested more than 4,000 materials. More sophisticated hardware developed over time now supports automatic monitoring that sends photos and data back to researchers on Earth. Renamed the MISSE Flight Facility, this permanent external platform is now owned and operated by the small business, Alpha Space Test & Research Alliance LLC. The woman-owned company is developing two similar platforms for testing materials and technologies on the lunar surface.
9. Parachuting to Earth
Small satellites could provide a cheaper, faster way to deliver small payloads to Earth from the space station. To do just that, the Technology Education Satellite, or TechEdSat, develops the essential technologies with a series of CubeSats built by college students in partnership with NASA. In 2017, TechEdSat-6 deployed from the station, equipped with a custom-built parachute called exo-brake to see if a controlled de-orbit was possible. After popping out of the back of the CubeSat, struts and flexible cords warped the parachute like a wing to control the direction in which it travelled. The exo-brake uses atmospheric drag to steer a small satellite toward a designated landing site. The most recent mission in the series, TechEdSat-10, was deployed from the station in July with an improved version of an exo-brake. The CubeSat is actively being navigated to the target entry point in the vicinity of the NASA’s Wallops Flight Facility on Wallops Island, Virginia.
10. X-ray Vision for a Galactic Position System
Independent navigation for spacecraft in deep space is challenging because objects move rapidly and the distances between are measured in millions of miles, not the mere thousands of miles we’re used to on Earth. From a mission perched on the outside of the station, we were able to prove that X-rays from pulsars could be helpful. A number of spinning neutron stars consistently emit pulsating beams of X-rays, like the rotating beacon of a lighthouse. Because the rapid pulsations of light are extremely regular, they can provide the precise timing required to measure distances.
The Station Explorer for X-Ray Timing and Navigation (SEXTANT) demonstration conducted on the space station in 2017 successfully measured pulsar data and used navigation algorithms to locate the station as it moved in its orbit. The washing machine-sized hardware, which also produced new neutron star science via the Neutron star Interior Composition Explorer (NICER), can now be miniaturized to develop detectors and other hardware to make pulsar-based navigation available for use on future spacecraft.
As NASA continues to identify challenges and problems for upcoming deep space missions such as Artemis, human on Mars, and exploring distant moons such as Titan, STMD will continue to further technology development on the space station and Earth.
Make sure to follow us on Tumblr for your regular dose of space: http://nasa.tumblr.com
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