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MedTech Outlook | Friday, November 30, 2018
With the advancements in digital and communication technologies, there has been tremendous growth in the field of medical image processing. Leveraging the latest technologies in medical imaging to analyze the changes has a critical impact on clinical practices. Through analysis, the data captured helps healthcare providers to investigate the situation accurately. According to Jonathan Lewin, MD, chairman of the department of radiology, Johns Hopkins School of Medicine, advancements over the last few years have wholly revolutionized every aspect of medicine.
Lately, the development of open and portable MRIs has replaced the traditional systems with less restriction on the users. The new scanners developed can accommodate heavier people with less difficulty. With one-step forward, the researchers from Japan Railway Technical Institute developed a superconducting magnetic system, which reduces the overall size of the system and alters the stationary behavior of the MRI scanner. In the upcoming days, oMRI scanner will be portable enough along with adequate diagnosis processing to reduce the stress level of the patients.
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From the survey done by experts at the University of Cincinnati, it is seen that real-time health data analytics has led to an increase in the data collected and requires big data analytics tools for data processing and mining. Through intensive analysis and imaging algorithms, the critical metrics are extracted from big data and processed to achieve better and more accurate diagnosed results. Data storage through cloud platforms and extracting key features through the Radiology Information System (RIS), and PACS helps in retrieving better reports from clinical and operational data.
Furthermore, deployment of 3-Dimensional images and even 4D in the future will help capture better medical images with an enlarged portion of the desired area. Usage of ultrasound tests is limited to specific applications due to its inability to capture high-resolution detailed images. By integrating 3D technology to ultrasound has made it possible to enhance ultrasound resolution, and improve patient care. A study conducted by the University of California has suggested that through 3D integration, the resolution of ultrasound can be increased by a factor of 50.
While medical imaging advances exponentially over the years, the requirements continue to increase. The main limitation observed during the process is contamination, which can minimize the outcomes and results in poor prediction. With standard test measures and regulations, the contamination process can be limited and help in achieving better results.
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