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Human Motion Capture and Identification for Assistive Systems Design in Rehabilitation

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HUMAN MOTION CAPTURE AND IDENTIFICATION FOR ASSISTIVE SYSTEMS DESIGN IN REHABILITATION A guide to the core ideas of human motion capture in a rapidly changing technological landscapeHuman Motion Capture and Identification for Assistive Systems Design in Rehabilitation aims to fill a gap in the literature by providing a link between sensing, data analytics, and signal processing through the characterisation of movements of clinical significance. As noted experts on the topic, the authors apply an application-focused approach in offering an essential guide that explores various affordable and readily available technologies for sensing human motion.The book attempts to offer a fundamental approach to the capture of human bio-kinematic motions for the purpose of uncovering diagnostic and severity assessment parameters of movement disorders. This is achieved through an analysis of the physiological reasoning behind such motions. Comprehensive in scope, the text also covers sensors and data capture and details their translation to different features of movement with clinical significance, thereby linking them in a seamless and cohesive form and introducing a new form of assistive device design literature. This important book:Offers a fundamental approach to bio-kinematic motions and the physiological reasoning behind such motionsIncludes information on sensors and data capture and explores their clinical significanceLinks sensors and data capture to parameters of interest to therapists and cliniciansAddresses the need for a comprehensive coverage of human motion capture and identification for the purpose of diagnosis and severity assessment of movement disordersWritten for academics, technologists, therapists, and clinicians focusing on human motion, Human Motion Capture and Identification for Assistive Systems Design in Rehabilitation provides a holistic view for assistive device design, optimizing various parameters of interest to relevant audiences.

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HUMAN MOTION CAPTURE AND IDENTIFICATION FOR ASSISTIVE SYSTEMS DESIGN IN REHABILITATION A guide to the core ideas of human motion capture in a rapidly changing technological landscapeHuman Motion Capture and Identification for Assistive Systems Design in Rehabilitation aims to fill a gap in the literature by providing a link between sensing, data analytics, and signal processing through the characterisation of movements of clinical significance. As noted experts on the topic, the authors apply an application-focused approach in offering an essential guide that explores various affordable and readily available technologies for sensing human motion.The book attempts to offer a fundamental approach to the capture of human bio-kinematic motions for the purpose of uncovering diagnostic and severity assessment parameters of movement disorders. This is achieved through an analysis of the physiological reasoning behind such motions. Comprehensive in scope, the text also covers sensors and data capture and details their translation to different features of movement with clinical significance, thereby linking them in a seamless and cohesive form and introducing a new form of assistive device design literature. This important book:Offers a fundamental approach to bio-kinematic motions and the physiological reasoning behind such motionsIncludes information on sensors and data capture and explores their clinical significanceLinks sensors and data capture to parameters of interest to therapists and cliniciansAddresses the need for a comprehensive coverage of human motion capture and identification for the purpose of diagnosis and severity assessment of movement disordersWritten for academics, technologists, therapists, and clinicians focusing on human motion, Human Motion Capture and Identification for Assistive Systems Design in Rehabilitation provides a holistic view for assistive device design, optimizing various parameters of interest to relevant audiences.

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Возрастное ограничение:
0+
Объем:
243 стр.
ISBN:
9781119515234
Общий размер:
17 МБ
Общее кол-во страниц:
243
Издатель:
Правообладатель:
John Wiley & Sons Limited