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Brain-Computer Interfaces: Neurorehabilitation of Voluntary Movement after Stroke and Spinal Cord Injury, Marquez-Chin Cesar, Kapadia-Desai Naaz, Kalsi-Ryan Sukhvinder


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Автор: Marquez-Chin Cesar, Kapadia-Desai Naaz, Kalsi-Ryan Sukhvinder
Название:  Brain-Computer Interfaces: Neurorehabilitation of Voluntary Movement after Stroke and Spinal Cord Injury
ISBN: 9781636391335
Издательство: Mare Nostrum (Eurospan)
Классификация:


ISBN-10: 1636391338
Обложка/Формат: Hardback
Страницы: 133
Вес: 0.47 кг.
Дата издания: 30.08.2021
Серия: Synthesis lectures on assistive, rehabilitative, and health-preserving technologies
Язык: English
Размер: 23.50 x 19.05 x 0.89 cm
Читательская аудитория: Professional and scholarly
Ключевые слова: Biomedical engineering,Coping with disability,Human-computer interaction, COMPUTERS / Social Aspects / Human-Computer Interaction,HEALTH & FITNESS / Physical Impairments,TECHNOLOGY & ENGINEERING / Biomedical
Подзаголовок: Neurorehabilitation of voluntary movement after stroke and spinal cord injury
Рейтинг:
Поставляется из: Англии
Описание: Stroke and spinal cord injury often result in paralysis with serious negative consequences to the independence and quality of life of those who sustain them. For these individuals, rehabilitation provides the means to regain lost function. Rehabilitation following neurological injuries has undergone revolutionary changes, enriched by neuroplasticity. Neuroplastic-based interventions enhance the efficacy and continue to guide the development of new rehabilitation strategies. This book presents three important technology-based rehabilitation interventions that follow the concepts of neuroplasticity. The book also discusses clinical results related to their efficacy. These interventions are: functional electrical stimulation therapy, which produces coordinated muscle contractions allowing people with paralysis to perform functional movements with rich sensory feedback; robot-assisted therapy, which uses robots to assist, resist, and guide movements with increased intensity while also reducing the physical burden on therapists; and brain–computer interfaces, which make it possible to verify the presence of motor-related brain activity during rehabilitation. Further, the book presents the combined use of these three technologies to illustrate some of the emerging approaches to the neurorehabilitation of voluntary movement. The authors share their practical experiences obtained during the development and clinical testing of functional electrical stimulation therapy controlled by a brain–computer interface as an intervention to restore reaching and grasping.


Brain-Computer Interfaces: Neurorehabilitation of Voluntary Movement after Stroke and Spinal Cord Injury

Автор: Marquez-Chin Cesar, Kapadia-Desai Naaz, Kalsi-Ryan Sukhvinder
Название: Brain-Computer Interfaces: Neurorehabilitation of Voluntary Movement after Stroke and Spinal Cord Injury
ISBN: 1636391311 ISBN-13(EAN): 9781636391311
Издательство: Mare Nostrum (Eurospan)
Рейтинг:
Цена: 9563.00 р.
Наличие на складе: Нет в наличии.

Описание: Stroke and spinal cord injury often result in paralysis with serious negative consequences to the independence and quality of life of those who sustain them. For these individuals, rehabilitation provides the means to regain lost function. Rehabilitation following neurological injuries has undergone revolutionary changes, enriched by neuroplasticity. Neuroplastic-based interventions enhance the efficacy and continue to guide the development of new rehabilitation strategies. This book presents three important technology-based rehabilitation interventions that follow the concepts of neuroplasticity. The book also discusses clinical results related to their efficacy. These interventions are: functional electrical stimulation therapy, which produces coordinated muscle contractions allowing people with paralysis to perform functional movements with rich sensory feedback; robot-assisted therapy, which uses robots to assist, resist, and guide movements with increased intensity while also reducing the physical burden on therapists; and brain–computer interfaces, which make it possible to verify the presence of motor-related brain activity during rehabilitation. Further, the book presents the combined use of these three technologies to illustrate some of the emerging approaches to the neurorehabilitation of voluntary movement. The authors share their practical experiences obtained during the development and clinical testing of functional electrical stimulation therapy controlled by a brain–computer interface as an intervention to restore reaching and grasping.


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