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MedTech Outlook | Monday, February 20, 2023
Benjamin Kummer, Director of Clinical Informatics in Neurology and Vascular Neurologist at Mount Sinai, has been associated with the institution for the past four years. He has experience building, implementing, and enhancing healthcare IT systems in neurological and non-neurological domains across challenging academic environments. He is a triple board-certified neurologist and an expert in clinical informatics.
What are your roles and responsibilities as director of clinical informatics for neurology and vascular neurology at Mount Sinai Health System?
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My focus is on clinical informatics and the neurology department. I treat stroke patients and devote the remainder of my time to conducting research, writing grants and mentoring medical students and residents. The team and I retrieve and review all the data generated by our telehealth systems and discuss ways to improve our informatics tools and EHR systems regularly. As an intermediary between technical people and clinical stakeholders, I advise on how information technology can enhance the collection of information from patients and elevate the care provided by doctors. At our institution, I am also involved in providing both synchronous and asynchronous health care.
Have you observed any changes in the telehealth sector since the pandemic?
Virtual care has been gaining traction in the healthcare sector due to the pandemic. The concept of synchronous telehealth was still a novelty when I began working at Sinai in 2018. Many were apprehensive, and only a few people were interested in learning more about the advancements.
Despite the hesitation surrounding the technology, our institute began experimenting with telehealth by conducting pilot video visits primarily with commercially insured individuals. Once things were normal, Sinai Hospital launched a video visit platform that enabled it to continue its seamless patient registration and consultations. Our health care centre also provides asynchronous care for patients interested in managing their conditions remotely.
What will be the impact of new technologies on the future of medicine?
The private sector is driving most of the innovation and charting new territory in the healthcare sector. While public institutions continue to innovate, they are oriented towards research, which makes it difficult to transfer over to clinical use.
Another prominent challenge is Interoperability because electronic health records and medical tech systems are yet to integrate efficiently. As patients receive treatment from multiple systems, EHR vendors must exchange information to ensure efficiency and accuracy during consultations and diagnosis.
The US recently passed a Telehealth Extension and Evaluation Act, which extends Medicare reimbursement for several telehealth services for two years after the COVID-19 public health emergency. Many changes are taking place, such as the transition to home care to keep less severe patients out of the hospital. Medical technology innovations enable remote measurements of vital signs to assist doctors in providing virtual care in such circumstances. A primary goal of the project is to enhance access to health care for everyone, even without requiring them to leave their homes.
Businesses across the world are allocating large sizes of their budget to invocate in virtual care technology. Private companies will undoubtedly compete to acquire the rural patient population. The influx of companies such as Amazon into the healthcare field concerns healthcare specialists greatly regarding its impact on doctors. By overusing technology, large tech companies remove the human touch necessary in healthcare.
Traditional methods of providing primary health care have given way to more technologically advanced practices. Our team is working on accelerating the diagnosis of a particular stroke using traditional techniques combined with copious amounts of data to detect things seen only on advanced imaging devices, which are available in large academic centres. We are developing an artificial intelligence algorithm to make the diagnosis earlier without having to rely on advanced imaging modality. This project aims to democratize access to cutting-edge technology at a lower cost.
The continuous monitoring of physical and physiological parameters with wearables, which I call passive detection, has become more prevalent. Such advancements, coupled with motion detectors and sensors, help us quantify neurological examination continuously.
What advice would you give your peers and colleagues regarding the use of virtual technology to optimize healthcare processes?
Virtual care novelties are most beneficial to clinical practitioners because they constantly contact their patients. These practitioners can assist in propagating the benefits and educate peers on the use of technology to accelerate real-time patient consultations.
Since the pandemic, younger medical field experts have used telehealth more than seniors. It would be worthwhile to quantify the impact and analyze data to gain insight into how health informatics has improved the quality and efficiency of care delivery.
It is imperative that the current generation of medical practitioners and students focus on reducing the digital divide. When it comes to the use of medical technology, there is always an element of unfairness. The economically disadvantaged sections of society need help to access tech-savvy medical services. There is a need to find ways of ensuring that high-quality care and the benefits associated with it are available to economically disadvantaged members of society.
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