Handbook of Digital Technologies in Movement Disorders aims to unite these factors to provide a comprehensive guide to patient focused treatments for movement disorders. Sections cover an introduction to digital technologies, concepts, and terminologies, review various perspectives on technology in movement disorders, including patient and medical professionals, and present technologies used in detecting, measuring progression, and determining response to treatments. Additional chapters review the technology used in various treatments of movement disorders, including assistive and robotic technologies. Finally, the last section examines the challenges with technology, including privacy and other ethical issues. Over the past few years, there have been fundamental changes in the diagnosing and treating patients with chronic diseases, significantly affecting management of neurological movement disorders. In addition, the health and fitness sector developed several devices to better classify, track, and potentially treat chronic diseases. Both handling and interpreting these large datasets has been revolutionized, by machine and deep learning approaches, leading to new and more effective therapies, resulting in longer survival rates.
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Professor Bhidayasiri graduated in medicine from Chulalongkorn University, Thailand, in 1993, receiving membership of the Royal College of Physicians of London and Ireland in 1998 and certified by the American Board of Psychiatry and Neurology in 2005. He was awarded the fellowship of the Royal College of Physicians of London in 2008 and the Royal College of Physicians of Ireland in 2010.
Professor Bhidayasiri established the Chulalongkorn Centre of Excellence for Parkinson’s Disease, the tertiary care centre affiliated with Chulalongkorn University, providing multidisciplinary care for patients with PD, tremor, dystonia, and various forms of movement disorders in Thailand. His research interests are in data science and technology-based objective assessment, with several of the devices he has developed with his team adopted for clinical use, including a diagnostic tremor algorithm, a nocturnal device for monitoring nocturnal hypokinesia, a tremor suppression glove, a PD shoe, and a PD anti-choking mug. Importantly, adjustable laser-guided walking stick has been taken on nationwide by the Ministry of Social Development and Human Security of Thailand for patients with freezing of gait, with established cost-effectiveness. He is currently working with various stakeholders to implement national digital screening for PD, and nationwide lifestyle preventive strategies focusing on the mantra “Eat, Move, Sleep”.
Professor Bhidayasiri serves as the Specialty Chief Editor for the section Neurotechnology in Frontiers in Neurology and Associate Editor of Journal of Parkinson’s Disease. He published the first American Academy of Neurology practice parameters for tardive syndromes with Stan Fahn, and also three international textbooks, with his first “Neurological Differential Diagnosis”, being one of the best-selling neurological textbooks on amazon.com in 2005. A Lancet review called it “a pearl of a book for any clinician who is asked to assess patients with symptoms and signs, suggestive of neurological disorders”. The other two books are International Neurology (endorsed by the World Federation of Neurology), and Movement Disorders: A Video Atlas. In addition, he has authored over 230 peer-reviewed publications and has filed 17 patent and petty-patent applications on algorithms, wearable sensors, and assistive devices.
Professor Bhidayasiri has received both a National Distinguished Researcher in Medical Sciences Award and the President’s Distinguished Service Award from the MDS in 2015, and a Leader in Innovation Fellowship Award from the Royal Academy of Engineering (UK) in 2016. He is also a member of the Academy of Science of the Royal Society of Thailand, a past chair of the Asian-Oceanian section of the International Parkinson and Movement Disorder Society (MDS-AOS) and currently an international executive committee member of the MDS.
Over the past few years, there have been fundamental changes in the diagnosing and treating patients with chronic diseases, significantly affecting management of neurological movement disorders. In addition, the health and fitness sector developed several devices to better classify, track, and potentially treat chronic diseases. Both handling and interpreting these large datasets has been revolutionized, by machine and deep learning approaches, leading to new and more effective therapies, resulting in longer survival rates.
Handbook of Digital Technologies in Movement Disorders aims to unite these factors to provide a comprehensive guide to patient focused treatments for movement disorders. This book is divided into five distinct sections, starting with an introduction to digital technologies, concepts, and terminologies. The following section reviews various perspectives on technology in movement disorders, including patient and medical professionals. The third section presents technologies used in detecting, measuring progression, and determining response to treatments. This is followed by reviewing the technology used in various treatments of movement disorders including assistive and robotic technologies. Finally, the last section examines the challenges with technology including privacy and other ethical issues.
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