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too-many-rooks · 5 months ago
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Jack Lowden as 'Vaughn' in Calibre (2018)
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uniprismnew · 1 month ago
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The global Cone Beam Computed Tomography (CBCT) market is experiencing significant growth, driven by increasing demand in dental, maxillofacial, and ENT (ear, nose, and throat) applications. Cone Beam CT has revolutionized diagnostic imaging by offering high-resolution 3D images at lower radiation doses compared to conventional CT scans. As healthcare providers and patients alike prioritize precision diagnostics and minimally invasive treatment planning, CBCT has become an essential tool in modern medical imaging.
What is Cone Beam Computed Tomography?
Cone Beam Computed Tomography is a specialized type of X-ray technology that uses a cone-shaped beam to create detailed 3D images of structures like bones, teeth, and airways. Unlike traditional CT scanners that use a fan-shaped beam, CBCT captures data in a single rotation, reducing scan time and radiation exposure.
Initially developed for dental imaging, its use has expanded to various fields including orthopedics, oncology, and ENT surgeries. The technology is especially popular in implantology, orthodontics, and endodontics for its ability to provide precise anatomical views crucial for treatment planning.
Key Market Segments
The CBCT market is broadly segmented by:
Application: Dental, ENT, Orthopedic, Breast Imaging, Others
End User: Hospitals, Dental Clinics, Diagnostic Centers, Academic and Research Institutes
Region: North America, Europe, Asia-Pacific, Latin America, Middle East & Africa
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By Application
The dental segment dominates the market, accounting for more than 60% of the total share. This is due to widespread use in implant planning, orthodontics, and root canal treatment. ENT and orthopedic segments are emerging areas showing promising growth potential.
Market Drivers
1. Rising Demand for Dental Imaging
The increasing prevalence of dental diseases and the surge in cosmetic dentistry procedures are major contributors to CBCT adoption. The technology allows dentists to plan implants with a high degree of precision, reducing complications and improving outcomes.
2. Technological Advancements
Innovations in CBCT systems, such as integration with AI, enhanced image resolution, and portable units, are making the technology more accessible and versatile. Software improvements now allow for automatic segmentation, anatomical landmark detection, and virtual treatment planning.
3. Growing Geriatric Population
An aging population, particularly in developed nations, is leading to a higher incidence of age-related conditions such as osteoporosis, dental disorders, and ENT issues, all of which benefit from CBCT diagnostics.
4. Reduced Radiation Exposure
Compared to conventional CT, CBCT exposes patients to significantly lower radiation doses, which enhances its appeal among healthcare providers and regulatory agencies focused on patient safety.
5. Increasing Use in ENT and Orthopedics
Beyond dentistry, CBCT is gaining traction in ENT diagnostics for evaluating sinus, ear, and airway pathologies. In orthopedics, it is used for joint and bone assessments, especially in trauma cases.
Market Challenges
1. High Equipment Costs
The initial investment required for CBCT equipment can be a barrier, particularly for small clinics and developing countries. Although prices are gradually decreasing, affordability remains a concern.
2. Reimbursement Issues
In many regions, lack of consistent reimbursement policies for CBCT procedures limits their widespread adoption. Healthcare providers are often reluctant to invest in equipment without guaranteed returns.
3. Limited Awareness
In emerging economies, a lack of awareness among both practitioners and patients hinders the adoption of CBCT technology. Training and education are critical to unlocking its full market potential.
4. Regulatory Hurdles
CBCT machines must meet strict regulatory standards, particularly in the U.S. and EU. Delays in approvals can hinder market entry for new manufacturers.
Regional Analysis
North America
The U.S. holds the lion’s share of the CBCT market in North America. The presence of a large number of dental clinics, advanced healthcare infrastructure, and favorable reimbursement policies contribute to market growth.
Europe
Countries like Germany, France, and the UK are leading adopters in Europe, driven by strong public healthcare systems and early technology adoption. The region also benefits from continuous research and development in imaging technologies.
Asia-Pacific
This region is expected to witness the highest CAGR due to the growing demand for dental and ENT imaging, improving healthcare infrastructure, and supportive government policies in countries like China, India, and South Korea.
Latin America and Middle East & Africa
These regions are still in nascent stages of CBCT adoption but are poised for growth as awareness and healthcare investments increase. Brazil and South Africa are key emerging markets.
Competitive Landscape
The CBCT market is moderately consolidated with key players including:
Carestream Health
Danaher Corporation (KaVo Kerr)
Planmeca Oy
Dentsply Sirona
Vatech Co., Ltd.
J. Morita Corporation
PreXion, Inc.
These companies are focused on product innovation, partnerships, and geographic expansion to maintain a competitive edge. Increasing investments in R&D and AI-based imaging platforms are expected to shape the future competitive dynamics.
Future Outlook
The future of the CBCT market looks promising, with ongoing innovations and expanding applications across various medical domains. The integration of artificial intelligence and machine learning for image analysis is set to enhance diagnostic accuracy and workflow efficiency.
Portable and handheld CBCT units are also likely to revolutionize point-of-care diagnostics, especially in remote or underserved regions. Furthermore, cloud-based storage and tele-imaging platforms are expected to support broader access to imaging services.
As the global population continues to age and demand for personalized medical care rises, CBCT will become an increasingly indispensable tool in the diagnostic imaging ecosystem.
Conclusion
The Cone Beam Computed Tomography market is on a robust growth trajectory, driven by technological innovation, expanding applications, and increasing global demand for accurate and low-radiation imaging techniques. While challenges such as high costs and regulatory barriers remain, the overall outlook remains optimistic. Stakeholders in healthcare and medical imaging who invest in CBCT today are well-positioned to benefit from the technology’s growing importance in modern medicine.
Read Full Report: - https://www.uniprismmarketresearch.com/verticals/healthcare/cone-beam-computed-tomography
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dritakk · 3 years ago
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Translating Tags into Different Languagesīefore you can understand how to use exiftool, you must understand metadata.
Filtering with If/Then Conditional Logic.
Exporting Tag Lists to CSV, HTML, JSON, and More.
Displaying Only Tags in a Specific Group.
Managing Duplicate Tag Names in Different Groups.
Reading Metadata with ExifTool: A Simple Example.
Adventurous types who like the idea of a super-basic, super-flexible command line tool will find ExifTool easy to learn and educational, too.
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So who should look at ExifTool's Windows distribution? Windows users with Perl installed on their machines (and some basic skills using the language) will be well-equipped, but the average user will do better with a more familiar tool.
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We renamed it, as the instructions recommend, but, as we noted before, we were already well outside the lines of the sort of software we were looking for - or that most users would look for, for that matter. The program's executable file downloads with the (-k) suffix, which tells the Command Prompt to stay open. ExifTool popped back up with all of the image's available metadata displayed (many spaces were blank). Following the instructions, we closed the prompt and dragged an image file into ExifTool's executable. Right away we knew we were in unfamiliar territory. We extracted ExifTool's executable and double-clicked it to open the program's documentation, which includes an extensive list of file types and meta information formats that ExifTools supports. To edit data, you'll need to rename the executable file and open it via a command line, which enables all of the Perl distribution's features.
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Simply place this portable tool's executable file on your desktop and drag an image file into it to produce a Command Prompt window displaying all of the file's available metadata. If you can handle the Perl programming language or have no problem with the Command Prompt (or typing characters and spaces) then ExifTool offers a super-fast way to view and edit an image file's metadata without having to open a substantial program.
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blogwines332 · 4 years ago
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decisionforsight · 4 years ago
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Global Teleradiology Market
Global Teleradiology Market Size, Share, Application Analysis, Regional Outlook, Growth Trends, Key Players, Competitive Strategies and Forecasts to 2030
Teleradiology is a branch of telemedicine that has medical images construed by a radiologist from one location to another for diagnostic and consulting purpose. This facilitates patient care by allowing radiologists in providing services by removing the distance barrier as well as taking care of patient without being physically present at the patients' venue. And also interpretations through non-invasive imaging techniques such as CT, MRI, ultrasound, and nuclear medicine studies and X-rays, and in help proper disease diagnosis and its treatment that is followed by its appropriate treatment. It allows storage of digital radiograph images through picture archiving and communication system (PACS) and radiology information system (RIS) software, which is widely used by urgent care clinics, hospitals, and mobile imaging companies. This has guarantees on-site solutions with remote access through cloud network globally and real-time interpretation. This is especially important when there is a need for a sub-specialist including MRI radiologist, paediatric radiologist, and neuroradiologist. The reason being, these specialists are usually located only in large metropolitan areas that function during the days which allows for the availability of qualified experts 24/7. The technology uses standard network devices (wide area networks, internet, telephone lines, and local area network) and specialized technology (advanced graphic processing, artificial intelligence, voice recognition, and image compression) is used to transmit images, enabling the radiologist to analyse multiple images for a particular study. These images are sent to the distinct locations around the globe by TV radiology viewers. The global teleradiology market was expected at USD 3320.2 million in 2020 and is expected to reach USD 17674.4 million by 2030 with a CAGR of 18.2% during the forecast period.
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Market Dynamics and Factors:
The rapid geriatric population base and the technological advancements in healthcare expenditure paired with elevated occurrence of chronic disorders is one of the major drivers for the growth of the global teleradiology market. Moreover, significant increase in government expenditure on healthcare information sector and rise in focus of key players toward bringing innovation to digital diagnostics are some of the other main factors which will drive the teleradiology market during forecast time. However, the lack of skilled technicians & radiologists are responsible to restrain the market growth.  Furthermore, growing number of imaging tests, rising R&D activities related to e-health, and increasing implementation of PACS and RIS are also boosting the growth of these markets during the next coming years. On the rather hand, high rates of penetration by internet and smartphones paired with elevated healthcare awareness amongst patients are creating immense opportunities for the teleradiology market growth during forecast timeframe. Furthermore, ongoing global efforts aimed at improving the understanding of disease diagnosis and management through education programs are considered to be the challenge for teleradiology market in upcoming years.
Market Segmentation:
Global Teleradiology Market – By Imaging Technique
X-Rays
Computed Tomography (CT)
Ultrasound, Magnetic Resonance Imaging (MRI)
Nuclear Imaging
Fluoroscopy
Mammography
Others
Global Teleradiology Market – By Technology 
Hardware
Software
Telecom & Networking
Others
Global Teleradiology Market – By End-User
Hospitals
Ambulatory Surgical Centers
Diagnostic Centers
Others
Global Teleradiology Market – By Geography
North America
U.S.
Canada
Mexico
Europe
U.K.
France
Germany
Italy
Rest of Europe
Asia-Pacific
Japan
China
India
Australia
Rest of Asia Pacific
ROW
Latin America
Middle East
Africa
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Geographic Analysis:
North America dominate the largest share accounted as 39.45%  for  the growth of the global teleradiology market in 2018 and is anticipated to continue this trend during the forecast period.  This is due to higher amount of funding for R&D, patient awareness levels, and cancer prevalence in this region. In the United States, legislative amendments made by government for diagnostic imaging services will enhance the growth of teleradiology market during the forecast time zone. In addition, amendments in Australia’s Health Insurance Act 1973 for diagnostic imaging have enabled Medicare funding for these diagnostic imaging services from March 2008. The largest share of the U.S. can be attributed to high healthcare expenditure, high prevalence of target diseases, and availability of reimbursements. Europe holds the significant regional market which is attributed to the presence of target population and need for improved disease diagnosis.  Additionally, Asia pacific is expected to fastest rate market owing to the rising demand for innovative and advanced medical platforms coupled with rapidly growing healthcare infrastructure during the forecast time frame. The rapid growth in population aging, improving and modernizing healthcare infrastructure, and favorable government initiatives for improving the healthcare facilities in rural areas are key factors for boosting demand for the teleradiology market in developing country such as China, India, Brazil, and Mexico. 
Competitive Scenario:
The key players of global teleradiology markets are Siemens AG, Agfa-Gevaert Group, Virtual Radiologic, ONRAD, Inc., 4ways Healthcare Limited, Sectra AB, Global Diagnostics Ltd., RamSoft, Inc., Teleradiology Solutions, GE Healthcare, HealthWatch TeleDiagnostics Pvt. Ltd., and Everlight Radiology.
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The report offers statistical data in terms of value (US$) as well as Volume (units) till 2030.
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The data analysis present in the Global Teleradiology Market report is based on the combination of both primary and secondary resources.
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100+ charts exploring and analysing the Global Teleradiology Market from critical angles including retail forecasts, consumer demand, production and more
15+ profiles of top producing states, with highlights of market conditions and retail trends
Regulatory outlook, best practices, and future considerations for manufacturers and industry players seeking to meet consumer demand
Benchmark wholesale prices, market position, plus prices for raw materials involved in Global Teleradiology Market type
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analyticsindiam · 5 years ago
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COVID-19: A Data Scientists Contribution In Maintaining Physical Health And Well-being Explained
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When we discuss a medical emergency where lakhs of people are in their death bed, and few more lakhs are exposed to the immediate threat, what comes to our mind first is the role of the emergency workers like healthcare professionals, leading the way in this time of crisis. Data Scientists, a white-collar job, with the provision of working from a comfortable set up of home, what can they possibly offer to repair the unprecedented loss of human tribe? Well to answer these let's understand how a data scientist works under the hood. And then let’s look at the role the data scientists can play to ease the effects of COVID-19 pandemic on the well-being of the human tribe. So what’s the illusively elusive term ‘The data science’? The data science is the collective term for data collection, data cleaning, data exploration and modelling. Data can be found in huge size and in many forms and variables, thus making data management complex and a big deal. When we think about large amount of data, statistics is the subject that comes to our mind. So are data scientists basically statistician? The answer would be both Yes and No. Yes, since managing data and fitting it into an efficient model requires an understanding of statistical concepts. A huge area of data science algorithm development covers knowledge about linear algebra and differential calculus. But a statistician may not have knowledge about IDEs and Web scrapping using new-age computing languages like Python and R. So to explain the job profile more clearly, Josh Wills, director of data engineering at Slack said “Person who is better at statistics than any software engineer and better at software engineering than any statistician”. So basically implementing statistics and differential calculus, designing a model using artificial intelligence, machine learning, etc. using programming languages such as Python, R and demonstrating the final model using data visualization tools like Tableau and Power BI is what Data Scientists do, in a nutshell. Now coming to the need of the hour, the COVID 19 pandemic, let’s see how the novel coronavirus is affecting the human race in terms of physical health and well-being and how data science can help ease the situation. The novel coronavirus, which by the time is slowly losing its novelty as the period of contamination is increasing day by day, is highly contagious. Also, there is no possible medicine to cure the disease discovered so far. As the number of people with the disease is increasing, the healthcare facilities are also saturating due to the high volume of patients, leading to a complete collapse of the healthcare system. Social distancing is a way to check the spread, nevertheless, let’s not forget that humans are after all social beings. That is why it is of utmost importance to study the virus for obtaining any possible medication or vaccination.  The challenges are that: a vaccine against a coronavirus was never found before. Also, other coronaviruses such as common cold do not create long-term immunity upon its exposure to the human body. Without the invention of a vaccine, it is nearly impossible to eliminate the virus from the planet. A data scientist can make use of the available genomic data and upon its analysis can provide an understanding of genetic issues and can also help in studying reactions to various kinds of drugs and its effect on diseases. Many types of research involving Generative Adversarial Networks (GAN), a deep learning technique that uses two neural networks, competing against each other in order to generate new synthetic data that can very well replicate real data, is being used to discover the possible drug/vaccine for COVID-19. Google DeepMind had released a dataset of the Protein structure of SARS-CoV-2 which is appreciated for predicting the protein structure of COVID-19 accurately. X-Ray and CT-Scan datasets are also being used to study about many effects of COVID-19 on the human body, Pneumonia being the one. Making use of the demographic data available alongside, AI is used to detect the hotspot zone of infectious disease. Monitoring the availability of hospital resources accounts in dealing with enormous amounts of information. Data science thus comes to rescue, and can be used to keep count of existing essential human resource available like medical professionals, in the vicinity of the zone of interest. Johns Hopkins University, IBM and Tableau, in association with Centers for Disease Control and Prevention (CDC) of US, China and Europe and the World Health Organization (WHO) have released interactive databases that uses real-time graphic information system for viewing details about the patient infected, recovered or died due to this virus. Data Scientists helped in designing a faster way of Contact Tracing, an efficient move to suppress the spread to a large extent. Some contact tracing apps with over a million downloads are India’s Arogya Setu, Singapore’s Trace Together and South Korea’s Corona Watch. These apps by utilizing Bluetooth and GPS technology of the mobile phone sends alerts to users when they breach social distancing norms. If for say, someone comes within close proximity of 10 people during a day, all of them will be enlisted as the person contact chain. In case the nodal man is found to be positive, his contact chain will be intimated through the app and will be insisted to go and get tested. It will also alert the healthcare professional of that area.   The MVP features of these apps are Login credentials, Bluetooth access, self-assessment test, symptom reporter, hotspot locator, affected people details. The efficacy of this idea, however, solely depends upon the rate of downloads. Another app called COVID Symptom Tracker uses machine learning to enable people interact with the app and discuss symptoms and travel history for detecting possible cases. Data scientists are also working to forecast the spread of coronavirus. The machine-learning department of Carnegie Mellon University built a model that processes data from several sources such as flu-related Google searches, Twitter activity, and web traffic to predict the spread of the virus. The data science can be used to study the effect of the virus on some more than others. It can help decide the measures that can help reduce the spread. Data science can also derive an analogy between environmental or genomic factors to the people who are getting advanced respiratory problems. Thus, in conclusion, data science is being used efficiently by new-age data scientists to stabilize the situation and for reshaping the human livelihood. A lot more things still need to be done. Fellow data scientists, are you listening? Read the full article
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silverloading346 · 4 years ago
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Dicom viewer open source or Dicom viewer online or Dicom viewer download are all ways to view medical image files. The features of these Dicom viewer software is that they are suited for patient CDs/DVDs. One can use it for measurements as well as for annotations, for displaying of attributes, for processing of medical images, zooming and panning of DICOM images and much more.
Related:
RadiAnt-DICOM VIEWER
This is a Dicom viewer download which specifically caters to medical images. It has an interface which is intuitive as well as the performance of this is unrivalled. This is used to view patients’ CDs without having to install addition components.
ezDICOM
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This is a Dicom viewer download option which is available and using this one can view MRIs, ultrasound images as well as CT scans. It can’t only read images from a single format but from multiple formats. It also helps to convert these images to formats that are proprietary.
DICOM Viewer
This software is complete and powerful and handles all DICOM files of different modalities. It handles angiograms, x-rays, ultrasounds, MRI, Nuclear, CT scans etc. It has a user-friendly interface and has multi-monitor, biplane displays, PACS/CD/Network overview as well as conversion to WMV and more.
Dicomite DICOM Viewer for Android
This has a simple user interface and can be used on touch screen devices. It has a file browser, supports thumbnail displays as well as multi-frame images. It supports explicit as well as implicit DICOM files and displays grayscale images. It also has the ability to share rendered images with other applications.
Radiant Dicom Viewer For Mac Download Mac
OsiriX HD for Mac
This software has fast performance and the user interface is interactive as well as intuitive. It also has 3d/4d and 5d navigation supported. Old versions of garageband. It is a Dicom viewer open source and it is used by more than 50000 users.
Micro Dicom for Windows
This software is used to open as well as save images in DICOM formats. It allows for DICOM images to be opened without compression. It also opens other graphic image formats like jpeg, gif, tiff and more. Using this one can display patient list details, images from different examinations as well as it supports drag and drop options.
Most Popular Software for 2016 – Sante DICOM Viewer
Radiant Dicom Reader
This software is free and it is a medical image viewer software for DICOM files. It has stability and is easy to use and the interface to is intuitive as well as it has very comprehensive features. It can be used either on stand-alone systems or even can be distributed in DVD/CD without having to install the software. It does not even require Java or .NET to run. It is compatible with Windows, XP, and Vista. You can also see Radiology Software
What is Dicom Viewer Software?
https://silverloading346.tumblr.com/post/653130616550948864/clementine-mac-os-10-7. These Dicom viewer download as well as Dicom viewer online software are different ways in which medical images can be viewed in DICOM formats. This is without compression. Using these software, one can adjust the brightness and contrast, zoom as well as pan images, measure and annotate. You can also see Image Scanner Software
It has inbuilt file browsers and some even support thumbnail displays. They allow automatic grouping of images, multi-frame images, and compression of images. These software help to view basic information about the patient in DICOM files. It displays different palettes for grayscale.
Using this one can have an interactive histogram. Dragging and pinching of gestures is possible. There is a possibility of sharing images with other applications and navigation between frames or series or even images using the back and next buttons. It also allows you to auto-hide the menus and to interact with the images using touch gestures like one finger dragging or adjusting window levels. Nch videopad registration code 2020. They usually support multiple file types and are fast as well as easy to use.
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theconservativebrief · 7 years ago
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In the children’s gaming app Doctor Kids, a popular purchase in the Google and Amazon app stores, kids get to play doctor in a children’s hospital. They get to clean patients’ teeth as a dentist, straighten crooked bones inside an X-ray scan, and play optometrist by helping kids with blurry vision get the right prescription glasses, all against a backdrop of brightly colored characters and a twinkling soundtrack.
Until suddenly, the game is interrupted. A bubble pops up with a new mini game idea, and when a child clicks on the bubble, they are invited to purchase it for $1.99, or unlock all new games for $3.99. There’s a red X button to cancel the pop-up, but if the child clicks on it, the character on the screen shakes its head, looks sad, and even begins to cry.
The Doctor Kids app cries when a child clicks away from the ad. Bubadu/Campaign for a Commercial Free Childhood
The game, developed by the Slovenian software company Bubadu and intended for kids as young as 6, is marketed as “educational” because it teaches kids about different types of medical treatments.
But it’s structured so that the decision to not buy anything from the game essentially shames the child into thinking they’ve done something wrong. Pulling such a move on a gamer as young as 5 raises troubling ethical questions, especially as children’s gaming apps — and advertising within them — have become increasingly popular.
On Tuesday, a group of 22 consumer and public health advocacy groups sent a letter to the Federal Trade Commission calling on the organization to look into the questionable practices of the children’s app market. The letter asks the FTC to investigate apps that “routinely lure young children to make purchases and watch ads” and hold the developers of these games accountable.
The letter to the FTC, which the organization confirmed to Vox it received but would not comment on, was sent in conjunction with the publication of a study from the University of Michigan and the C.S. Mott Children’s Hospital in Ann Arbor that analyzed children’s apps. The researchers studied 135 apps means for children as young as 5, and found that these apps are riddled with problematic advertising methods, including manipulation and shaming.
“This is the first study to systematically explore just how commercialized the preschool app market is,” Josh Golin, the executive director of the Campaign for a Commercial-Free Childhood, which organized the groups sending the letter to the FTC, tells me. “What the study found is that the ads are extremely disruptive and often overwhelm the playing experience. That’s unfair to children and deceptive to parents who think they are downloading games which are educational. It’s fundamentally unfair to manipulate a young child who doesn’t understand what is happening.”
Today, children 8 and under average about two hours and 19 minutes a day of screen time, according to the safe technology nonprofit Common Sense Media, while kids 8 to 12 spend an average of four hours and 38 minutes. The time spent on screens has shifted dramatically since 2011, when the daily average for kids 8 and under was one hour and 55 minutes. Children are also more likely to spend more time on smartphones than on TV, computers, or video game systems, and 30 percent of American children start playing with electronic devices while they are still in diapers.
The American Academy of Pediatrics warns that the overuse of screens can put children at risk of problems like obesity and sleep deprivation. Studies are also finding that limiting screen time, unsurprisingly, improves brain function and academic performance in kids.
But the University of Michigan study is the first to look at exactly how many ads make their way into kids’ games, and what their advertising strategies are.
Researchers from the University of Michigan Medical School — led by Jenny Radesky, a developmental behavioral expert and pediatrician at the C.S. Mott Children’s Hospital — analyzed 135 children’s apps, many of which are the most popular ones at the Google Play store. The team found that 95 percent of the games have at least one ad, and many of those ads push the player to buy an upgrade within the game.
Ads in games for children that are marketed as “educational.” Campaign for a Commercial-Free Childhood
Many of these ads are specifically designed to look like part of the app. In Dentist Game For Kids from Edujoy, for example, a smiling cartoon tooth that looks like it could be a part of a game instead leads to an ad when clicked. In the game Talking Tom, from the Cypress company Outfit7, a present drops from the ceiling that looks like it’s a part of the game but is, in fact, a button that triggers an ad. In Olaf’s Adventures, from Disney, there are illuminated cakes placed inside the game’s winter wonderland that, when clicked on, ask the child to pay $3.99 to “protect Anna’s cake.” Other games continually push young players to buy things, whether it’s tokens, levels, or new characters.
The Michigan researchers write that this is problematic for children because they usually can’t tell the difference between an ad and the game itself.
Children “lack a meta-awareness about advertising and are unable to critically reflect upon their reactions to it,” the study finds. “ When advertisements are combined with rewards, both cognitive and emotional processes respond to persuasion. In the case of the gamified ads we documented — those involving watching ads to collect tokens or gameplay items — children under 6 years may be especially susceptible to this approach because of their responsiveness to positive reinforcers.”
Other games continually push young players to buy things, whether it’s tokens, levels, or new characters
Some gaming developers also fill their apps for kids with pop-up ads that interrupt play, and make the cancel button nearly impossible to find. In the letter to the FTC, the CCFC notes that “adults know how frustrating it can be when they cannot click on a small ‘X’ to close an ad, or can’t even find a place to click. It is particularly unfair to employ these tactics on young kids, whose fine motor skills are just developing.”
The Michigan researchers believe this type of deceitful marketing could be violating the Federal Trade Commission Act, which prohibits misleading advertising practices.
“Many of the games are falsely marketed as being ‘free’ when it’s actually often impossible to advance in the game without making in-app purchases,” Golin of the CFCC tells me. “These games are deceptive to parents and are particularly unfair to children.”
And emotionally manipulative tactics, like the way Bubadu’s Doctor Kids makes its characters cry when children don’t purchase anything from the game, can be especially deleterious to kids.
In the game Strawberry Shortcake Bake Shop, for example, Strawberry Shortcake frequently tells children playing to spend money on a more expensive kitchen tool or to upgrade recipes. She coos to the player that purchases have “lots of fun activities to do together!”
“Children are known to develop trusting emotional parasocial relationships with media characters and pay more attention to and learn better from familiar characters,” the study authors write. Games that encourage kids to buy through character encouragement, or discouragement, “may also lead children to feel an emotionally charged need to make purchases.”
The American Academy of Pediatrics believes apps for children 5 and younger should be free of advertising. Iliana Mestari/Getty Images
It’s a questionable trade-off given that the evidence of these games’ educational value is mixed at best.
In a widely cited study from 2015, Temple University’s Kathy Hirsh-Pasek outlines how they can be a good source for children to cultivate the skill of active learning — if the games are developed properly, of course. But she also wrote how concerned she was with how many poorly designed, visually distracting children’s apps are on the market. The Michigan study concludes that apps that are inundated with distracting ads and pop-ups might undermine their academic value altogether.
The American Academy of Pediatrics holds that apps for children 5 and younger should have zero advertising. (It also has guidelines for limiting screen time and monitoring media use.)
As child and adolescent psychologist Richard Freed told Vox, “there’s too much money to be made” to not advertise to kids
But gaming, of course, is a huge business, and as child and adolescent psychologist Richard Freed told Vox, “there’s too much money to be made” to not advertise to kids. Candy Crush, the inescapable and ageless game, helped parent company King earn $1.99 billion last year. Markus Persson, the creator of Minecraft, is a billionaire (albeit an unhappy one), and Microsoft spent $2.5 billion this year to buy Minecraft’s parent company, Mojang. Keith Chapman’s Paw Patrol empire, which includes the children’s gaming app Paw Patrol Rescue Run, generates more than $1 billion annually.
The techniques of these kids’ apps follow the wider playbook of big tech. In a 2015 paper developed by AdMob, the mobile advertising company owned by Google, the tech giant lays out a strategy it calls “hybrid monetization.” This method, which combines in-app purchases with strategically timed ads, is a precise formula that gets gamers to spend money, especially the non-paying ones who download the app for free. Tech companies are already employing psychologists to apply persuasive design to their inventions, where this new field of psychology is applied to make sure the tech being developed will get users hooked.
This all seems like fair game when trying to make money off adult gamers. But with apps that deploy this strategy for young children who are only just beginning to discover the world and their surroundings, the playing field is completely skewed.
The Federal Communications Commission has been regulated TV ads targeting kids since the ’70s. The FTC has guidelines for children’s advertising for digital companies, but it is constantly developing as the weird, wide world of the web evolves. Golin and the other members of the watchdog groups want the FTC to ask app developers to stop using manipulative advertising techniques on children, and to fine them if they continue. Golin also notes that there need to be “cross-platform rules” from the FTC.
While it might be hard for the government to actually enforce restrictions on giant gaming companies, Golin says Google and Apple should monitor their app stores, which makes sense considering these big tech companies might very well be the only ones that can rein in this type of behavior.
“Our findings show that the early childhood app market is a Wild West, with a lot of apps appearing more focused on making money than the child’s play experience,” Radesky, the Michigan study’s lead author, says. “This has important implications for advertising regulation, the ethics of child app design, as well as how parents discern which children’s apps are worth downloading.”
Original Source -> Apps for preschoolers are flooded with manipulative ads, according to a new study
via The Conservative Brief
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theinvinciblenoob · 7 years ago
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Bob Ackerman Jr. Contributor
Robert Ackerman Jr. is the founder and a managing director of Allegis Capital, an early-stage cybersecurity venture firm, and a founder of DataTribe, a startup “studio” for fledgling cyber startups staffed by former government technology innovators and cybersecurity professionals.
More posts by this contributor
Can data science save social media?
The Trump team has failed to address the nation’s mounting cybersecurity threats
As a relentless swarm of successful cyber attacks severely disrupt companies in every industry and require enormous expenditures to repair the damage, what typically gets lost in the shuffle is that some industries are victimized more than others — sometimes far more. The corporate victim that almost always grabs this dubious spotlight is the healthcare industry — the second-largest industry in the U.S. and one in which hacker meddling of operations not only costs lots of time, money and operational downtime, but threatens lives.
The healthcare industry itself is partly responsible. In a seemingly admirable quest to maximize the quality of patient care, tunnel vision gives short shrift to other priorities, specifically cybersecurity.
In aggregate, healthcare organizations on average spend only half as much on cybersecurity as other industries. For this and other reasons, such as the unusually high value of stolen patient records on the black market, attracting extra-large flocks of hackers, hospitals especially find themselves in a never-ending cyber war zone. FortiGuard Labs, a major security protection firm, reports that in 2017, healthcare saw an average of almost 32,000 intrusion attacks per day per organization as compared to more than 14,300 per organization in other industries.
Some attacks are outright deadly. For example, MedStar Health, a huge, Maryland-based healthcare system, was severely incapacitated by a ransomware attack that made national headlines when, among other things, it threatened lives. Compromised by a well-known security vulnerability, MedStar Health was not only forced to shut down its email and vast records database, but was unable to provide radiation treatment to cancer patients for days.
Such trouble typically starts when a doctor or other healthcare worker is persuaded to open an email sent by an attacker and click a link or attachment that downloads malware to his computer, a so-called “phishing” attack. The attacker can then use this software to gain access to the healthcare organization’s financial, administrative and clinical information systems.
Attackers also can use the health network to spread into connected medical devices and equipment, such as ventilators, X-ray and MRI machines, medical lasers and even electric wheelchairs.
Any medical device connected to a network is potentially at risk from being taken over and exploited by hackers.
Hospitals and other healthcare providers must practice better cybersecurity hygiene.
Compounding the threat are prevalent and vulnerable Internet of Medical Things (IoMT) devices, which integrate components and software from dozens of suppliers with minimal concern for security. Even individual patients can be targeted. A few years ago, former U.S. Vice President Dick Cheney’s doctors disabled his pacemaker’s capabilities because there were concerns about reports that attackers could hack such devices and kill the patient.
It’s a dire situation that must be addressed. Hospitals and other healthcare providers must practice better cybersecurity hygiene. For starters, healthcare organizations must improve the speed and thoroughness of software patching and update processes. As much as possible, organizations also need to use threat intelligence and automation, as well as institute cyber-awareness training programs to protect against social media attacks and other attack vectors.
As IoMT devices proliferate, more elaborate network segmentation and inspection is required. A segmented strategy enables organizations to institute checks and policies at various points of the network to control users, applications and data flow and to more quickly identify and isolate security threats. And on the network visibility front, healthcare organizations need more insight throughout the network, including the cloud.
Hospitals and other healthcare organizations must do a better job of protecting patient’s records, as well.  Since the transformation from paper records to digitized Electronic Health Records (EHRs), records are commonly updated and then sent by doctors to specialists in other hospitals. The problem is that hospitals are not banks, where financial information is locked up and not shared. This unencrypted information is vulnerable to profit-hungry hacker attacks.
A solution to this is likely to be homomorphic encryption, an impressive technology that allows for the encryption of data-in-use and that has tremendous potential to lock down the most valuable medical information. Specifically, this technology can secure and protect sensitive medical records and personally identifiable information (PII), often the target of cyber thieves.
Notwithstanding the fact that data-rich healthcare records are worth more than 10 times a credit card on the black market, this would shut down the most aggressive “data-focused” hackers.
These improvements will not occur without substantial monetary investment and effort. It’s commendable that hospitals focus overwhelmingly on day-to-day quality of care, but times change, and they must look at their mission with a broader perspective. Because they fail to do so, hospitals typically pay up in almost non-stop ransomware attacks, minimizing the possibility of additional health threats while systems are down.
Among the obstacles that hospitals face in pursuing the path toward change is intensifying merger and acquisition activity in the healthcare sector. IT integration challenges, including different medical technologies, create additional vulnerabilities, as does the need to share information between newly merged organizations.
The reputation of and trust in healthcare organizations depends on their understanding of the true extent of threats and taking sufficient measures to guard against them. The healthcare industry has no choice but to improve its capabilities regarding security. Nothing short of our lives are at stake.
via TechCrunch
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uniprismnew · 1 month ago
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Cone Beam Computed Tomography Market Emerging Opportunities and Future Outlook 2025 to 2033
The global Cone Beam Computed Tomography (CBCT) market is experiencing significant growth, driven by increasing demand in dental, maxillofacial, and ENT (ear, nose, and throat) applications. Cone Beam CT has revolutionized diagnostic imaging by offering high-resolution 3D images at lower radiation doses compared to conventional CT scans. As healthcare providers and patients alike prioritize precision diagnostics and minimally invasive treatment planning, CBCT has become an essential tool in modern medical imaging.
What is Cone Beam Computed Tomography?
Cone Beam Computed Tomography is a specialized type of X-ray technology that uses a cone-shaped beam to create detailed 3D images of structures like bones, teeth, and airways. Unlike traditional CT scanners that use a fan-shaped beam, CBCT captures data in a single rotation, reducing scan time and radiation exposure.
Initially developed for dental imaging, its use has expanded to various fields including orthopedics, oncology, and ENT surgeries. The technology is especially popular in implantology, orthodontics, and endodontics for its ability to provide precise anatomical views crucial for treatment planning.
Key Market Segments
The CBCT market is broadly segmented by:
Application: Dental, ENT, Orthopedic, Breast Imaging, Others
End User: Hospitals, Dental Clinics, Diagnostic Centers, Academic and Research Institutes
Region: North America, Europe, Asia-Pacific, Latin America, Middle East & Africa
Download a Free Sample Report: - https://tinyurl.com/453kmuff
By Application
The dental segment dominates the market, accounting for more than 60% of the total share. This is due to widespread use in implant planning, orthodontics, and root canal treatment. ENT and orthopedic segments are emerging areas showing promising growth potential.
Market Drivers
1. Rising Demand for Dental Imaging
The increasing prevalence of dental diseases and the surge in cosmetic dentistry procedures are major contributors to CBCT adoption. The technology allows dentists to plan implants with a high degree of precision, reducing complications and improving outcomes.
2. Technological Advancements
Innovations in CBCT systems, such as integration with AI, enhanced image resolution, and portable units, are making the technology more accessible and versatile. Software improvements now allow for automatic segmentation, anatomical landmark detection, and virtual treatment planning.
3. Growing Geriatric Population
An aging population, particularly in developed nations, is leading to a higher incidence of age-related conditions such as osteoporosis, dental disorders, and ENT issues, all of which benefit from CBCT diagnostics.
4. Reduced Radiation Exposure
Compared to conventional CT, CBCT exposes patients to significantly lower radiation doses, which enhances its appeal among healthcare providers and regulatory agencies focused on patient safety.
5. Increasing Use in ENT and Orthopedics
Beyond dentistry, CBCT is gaining traction in ENT diagnostics for evaluating sinus, ear, and airway pathologies. In orthopedics, it is used for joint and bone assessments, especially in trauma cases.
Market Challenges
1. High Equipment Costs
The initial investment required for CBCT equipment can be a barrier, particularly for small clinics and developing countries. Although prices are gradually decreasing, affordability remains a concern.
2. Reimbursement Issues
In many regions, lack of consistent reimbursement policies for CBCT procedures limits their widespread adoption. Healthcare providers are often reluctant to invest in equipment without guaranteed returns.
3. Limited Awareness
In emerging economies, a lack of awareness among both practitioners and patients hinders the adoption of CBCT technology. Training and education are critical to unlocking its full market potential.
4. Regulatory Hurdles
CBCT machines must meet strict regulatory standards, particularly in the U.S. and EU. Delays in approvals can hinder market entry for new manufacturers.
Regional Analysis
North America
The U.S. holds the lion’s share of the CBCT market in North America. The presence of a large number of dental clinics, advanced healthcare infrastructure, and favorable reimbursement policies contribute to market growth.
Europe
Countries like Germany, France, and the UK are leading adopters in Europe, driven by strong public healthcare systems and early technology adoption. The region also benefits from continuous research and development in imaging technologies.
Asia-Pacific
This region is expected to witness the highest CAGR due to the growing demand for dental and ENT imaging, improving healthcare infrastructure, and supportive government policies in countries like China, India, and South Korea.
Latin America and Middle East & Africa
These regions are still in nascent stages of CBCT adoption but are poised for growth as awareness and healthcare investments increase. Brazil and South Africa are key emerging markets.
Competitive Landscape
The CBCT market is moderately consolidated with key players including:
Carestream Health
Danaher Corporation (KaVo Kerr)
Planmeca Oy
Dentsply Sirona
Vatech Co., Ltd.
J. Morita Corporation
PreXion, Inc.
These companies are focused on product innovation, partnerships, and geographic expansion to maintain a competitive edge. Increasing investments in R&D and AI-based imaging platforms are expected to shape the future competitive dynamics.
Future Outlook
The future of the CBCT market looks promising, with ongoing innovations and expanding applications across various medical domains. The integration of artificial intelligence and machine learning for image analysis is set to enhance diagnostic accuracy and workflow efficiency.
Portable and handheld CBCT units are also likely to revolutionize point-of-care diagnostics, especially in remote or underserved regions. Furthermore, cloud-based storage and tele-imaging platforms are expected to support broader access to imaging services.
As the global population continues to age and demand for personalized medical care rises, CBCT will become an increasingly indispensable tool in the diagnostic imaging ecosystem.
Conclusion
The Cone Beam Computed Tomography market is on a robust growth trajectory, driven by technological innovation, expanding applications, and increasing global demand for accurate and low-radiation imaging techniques. While challenges such as high costs and regulatory barriers remain, the overall outlook remains optimistic. Stakeholders in healthcare and medical imaging who invest in CBCT today are well-positioned to benefit from the technology’s growing importance in modern medicine.
Read Full Report: - https://www.uniprismmarketresearch.com/verticals/healthcare/cone-beam-computed-tomography
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technicaldr · 8 years ago
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Telemedicine Technology
Telehealth technology is constantly evolving. Several decades ago, physicians and other health professionals engaged in telehealth using radios and telephones. Since the advent of the Internet Age and the widespread use of smartphones, telehealth technology has changed dramatically. Now, telehealth technology might include a smartphone app or an online video conferencing software. And with the growth of mobile medical devices, telehealth equipment is starting to incorporate sophisticated devices that can measure a patients’ vitals or scan health data in the home, without supervision by a medical professional.
HOW DO TELEHEALTH AND TELEMEDICINE TECHNOLOGY DIFFER?
There’s much debate in the healthcare field about the difference between telehealth and telemedicine. Many companies use the terms interchangeably. This is hardly surprising considering how rapidly the healthcare tech field is changing.
 Most of the time, the medical field uses telehealth as an umbrella term to mean using telecommunications technology to provide health services. This might include hosting an online support group, examining a patient’s x-rays and providing a diagnosis from a remote location, or educating a group about a medical issue through an online videoconference. Telehealth can encompass not only healthcare services, but also nonclinical health education and public health programs.
 Telemedicine, on the other hand, is a niche within telehealth. Telemedicine involves a healthcare provider useing telecommunications technology to provide healthcare to a patient. This might include having a remote, video visit with a patient, sharing a patient’s medical information and health record with another healthcare provider for a second opinion, or even conducting robotic surgery from another location. Telemedicine has a clinical component.
 So how do telehealth and telemedicine technology differ? In most cases, they’re both relying on similar technologies – telecommunications technology. However, since telemedicine always deals with private patient health information, telemedicine technology needs to be secure and HIPAA compliant. A telehealth technology on the other hand, may be used to share general health information or health education and does not need to follow the same security requirements.
Let’s review the basic telehealth technologies available.
ON-SITE KIOSKS
Some telehealth providers offer on-site telehealth kiosks that can be placed in a retail clinic, community center, or job site. These kiosks usually include a computer interface, a variety of medical monitoring devices (to take vital signs, for example), and a connection to a healthcare provider. Because the equipment is all in one place, patients have everything they need to connect with a physician once they get to the kiosk location.
MOBILE APPS
There are an incredible number of health apps available. Anyone with a smartphone or mobile device can download a health app to track their weight, monitor their sleep patterns, see a doctor remotely via 2-way video, get medication reminder text messages, learn about an illness, get tips for preventing infection, chat with an on-call doctor, stay connected to an online support group…the list goes on. Mobile health apps can be as sophisticated as tracking and reporting a patient’s health information to their healthcare provider, to as simple as providing daily health education tips.
TELEPHONE
Many healthcare providers use the phone to consult with other specialists on patient cases, discuss medication requirements with a pharmacist, and even provide a diagnosis to a patient in urgent cases (sometimes called teletriage).
INTERNET
Websites like WebMD and Mayoclinic have turned the internet into an online medical encyclopedia, a place to get information on health conditions. With a simple wi-fi connection, people can look-up medical symptoms, take a public health course, join an online support chat group, or even chat with a medical professional.
ONLINE VIDEO CONFERENCING AND WEBCAMS
Online video conferencing has greatly expanded telehealth solutions. With an internet connection and a webcam, many people can now have a face-to-face visit with a healthcare provider remotely. In cases where a healthcare professional is using this telehealth technology to share patient health data, the software needs to be secure. But in other situations where the goal is to educate a group of health professionals about Ebola, for example, the organizer can use a simple video conferencing technology like GotoMeeting or even Skype. Since many computers and mobile devices now have integrated webcams and microphones, most people have access to this telehealth technology.
SECURE EMAIL (STORE-AND-FORWARD)
As with any other telecommunications technology, people can use email to communicate about their health conditions, get reminders about preventative care and health appointments, and stay-up-to-date on medical findings. With the recent adoption of patient portals and electronic health records, more healthcare providers and patients are using secure email messaging systems to communicate about lab results and their medical conditions. Physicians also use this form of telehealth technology to share patient medical data, especially photos and recorded videos, with specialists at other locations. For example, a physician at a small clinic might use a secure email messaging system to send a patient x-ray to a radiologist at a distant location for diagnosis.
Telemedicine technology takes many different forms and will continue to change as new technologies become widely available and affordable.
Technical Dr. Inc.'s insight:
Contact Details : [email protected] or 877-910-0004 www.technicaldr.com
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decisionforsight · 4 years ago
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Global Teleradiology Market
Global Teleradiology Market Size, Share, Growth, Industry Trends and Forecast 2020-2030
The global teleradiology market was expected at USD 3320.2 million in 2020 and is expected to reach USD 17674.4 million by 2030 with a CAGR of 18.2% during the forecast period.Teleradiology is a branch of telemedicine that has medical images construed by a radiologist from one location to another for diagnostic and consulting purpose. This facilitates patient care by allowing radiologists in providing services by removing the distance barrier as well as taking care of patient without being physically present at the patients' venue. And also interpretations through non-invasive imaging techniques such as CT, MRI, ultrasound, and nuclear medicine studies and X-rays, and in help proper disease diagnosis and its treatment that is followed by its appropriate treatment. It allows storage of digital radiograph images through picture archiving and communication system (PACS) and radiology information system (RIS) software, which is widely used by urgent care clinics, hospitals, and mobile imaging companies. This has guarantees on-site solutions with remote access through cloud network globally and real-time interpretation. This is especially important when there is a need for a sub-specialist including MRI radiologist, paediatric radiologist, and neuroradiologist. The reason being, these specialists are usually located only in large metropolitan areas that function during the days which allows for the availability of qualified experts 24/7. The technology uses standard network devices (wide area networks, internet, telephone lines, and local area network) and specialized technology (advanced graphic processing, artificial intelligence, voice recognition, and image compression) is used to transmit images, enabling the radiologist to analyse multiple images for a particular study. These images are sent to the distinct locations around the globe by TV radiology viewers. 
Download Sample Copy of the Report to understand the structure of the complete report (Including Full TOC, Table & Figures) @ https://www.decisionforesight.com/request-sample/DFS020139
Market Dynamics and Factors:
The rapid geriatric population base and the technological advancements in healthcare expenditure paired with elevated occurrence of chronic disorders is one of the major drivers for the growth of the global teleradiology market. Moreover, significant increase in government expenditure on healthcare information sector and rise in focus of key players toward bringing innovation to digital diagnostics are some of the other main factors which will drive the teleradiology market during forecast time. However, the lack of skilled technicians & radiologists are responsible to restrain the market growth.  Furthermore, growing number of imaging tests, rising R&D activities related to e-health, and increasing implementation of PACS and RIS are also boosting the growth of these markets during the next coming years. On the rather hand, high rates of penetration by internet and smartphones paired with elevated healthcare awareness amongst patients are creating immense opportunities for the teleradiology market growth during forecast timeframe. Furthermore, ongoing global efforts aimed at improving the understanding of disease diagnosis and management through education programs are considered to be the challenge for teleradiology market in upcoming years.
Market Segmentation : 
Global Teleradiology Market – By Imaging Technique
X-Rays
Computed Tomography (CT)
Ultrasound, Magnetic Resonance Imaging (MRI)
Nuclear Imaging
Fluoroscopy
Mammography
Others
Global Teleradiology Market – By Technology 
Hardware
Software
Telecom & Networking
Others
Global Teleradiology Market – By End-User
Hospitals
Ambulatory Surgical Centers
Diagnostic Centers
Others
Global Teleradiology Market – By Geography
North America
U.S.
Canada
Mexico
Europe
U.K.
France
Germany
Italy
Rest of Europe
Asia-Pacific
Japan
China
India
Australia
Rest of Asia Pacific
ROW
Latin America
Middle East
Africa
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Geographic Analysis:
North America dominate the largest share accounted as 39.45%  for  the growth of the global teleradiology market in 2018 and is anticipated to continue this trend during the forecast period.  This is due to higher amount of funding for R&D, patient awareness levels, and cancer prevalence in this region. In the United States, legislative amendments made by government for diagnostic imaging services will enhance the growth of teleradiology market during the forecast time zone. In addition, amendments in Australia’s Health Insurance Act 1973 for diagnostic imaging have enabled Medicare funding for these diagnostic imaging services from March 2008. The largest share of the U.S. can be attributed to high healthcare expenditure, high prevalence of target diseases, and availability of reimbursements. Europe holds the significant regional market which is attributed to the presence of target population and need for improved disease diagnosis.  Additionally, Asia pacific is expected to fastest rate market owing to the rising demand for innovative and advanced medical platforms coupled with rapidly growing healthcare infrastructure during the forecast time frame. The rapid growth in population aging, improving and modernizing healthcare infrastructure, and favorable government initiatives for improving the healthcare facilities in rural areas are key factors for boosting demand for the teleradiology market in developing country such as China, India, Brazil, and Mexico. 
Competitive Scenario:
The key players of global teleradiology markets are Siemens AG, Agfa-Gevaert Group, Virtual Radiologic, ONRAD, Inc., 4ways Healthcare Limited, Sectra AB, Global Diagnostics Ltd., RamSoft, Inc., Teleradiology Solutions, GE Healthcare, HealthWatch TeleDiagnostics Pvt. Ltd., and Everlight Radiology.
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How will this Market Intelligence Report Benefit You?
The report offers statistical data in terms of value (US$) as well as Volume (units) till 2030.
Exclusive insight into the key trends affecting the Global Teleradiology industry, although key threats, opportunities and disruptive technologies that could shape the Global Teleradiology Market supply and demand.
The report tracks the leading market players that will shape and impact the Global Teleradiology Market most.
The data analysis present in the Global Teleradiology Market report is based on the combination of both primary and secondary resources.
The report helps you to understand the real effects of key market drivers or retainers on Global Teleradiology Market business.
The 2021 Annual Global Teleradiology Market offers:
100+ charts exploring and analysing the Global Teleradiology Market from critical angles including retail forecasts, consumer demand, production and more
15+ profiles of top producing states, with highlights of market conditions and retail trends
Regulatory outlook, best practices, and future considerations for manufacturers and industry players seeking to meet consumer demand
Benchmark wholesale prices, market position, plus prices for raw materials involved in Global Teleradiology Market type
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