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Neurorehabilitation technology[elect...
~
Dietz, Volker.
Neurorehabilitation technology[electronic resource] /
紀錄類型:
書目-電子資源 : Monograph/item
杜威分類號:
616.8046
書名/作者:
Neurorehabilitation technology/ edited by David J. Reinkensmeyer, Volker Dietz.
其他作者:
Reinkensmeyer, David J.
出版者:
Cham : : Springer International Publishing :, 2016.
面頁冊數:
xxii, 647 p. : : ill. (some col.), digital ;; 24 cm.
Contained By:
Springer eBooks
標題:
Nervous system - Diseases
標題:
Medical rehabilitation - Technological innovations.
標題:
Physical therapy - Technological innovations.
標題:
Robotics in medicine.
標題:
Medicine & Public Health.
標題:
Neurology.
標題:
Rehabilitation Medicine.
標題:
Physiotherapy.
標題:
Biomedical Engineering.
ISBN:
9783319286037
ISBN:
9783319286013
內容註:
Introduction: Rationale for Machine Use -- Part I Basic Framework: Motor Recovery, Learning, and Neural Impairment -- Learning in the Damaged Brain/Spinal Cord: Neuroplasticity -- Movement Neuroscience Foundations of Neurorehabilitation -- Designing Robots That Challenge to Optimize Motor Learning -- Multisystem Neurorehabilitation in Rodents with Spinal Cord Injury -- Sensory-Motor Interactions and Error Augmentation -- Normal and Impaired Cooperative Hand Movements: Role of Neural Coupling -- Clinical Assessment and Rehabilitation of the Upper Limb Following Cervical Spinal Cord Injury -- Part II Human-Machine Interaction in Rehabilitation Practice -- Application Issues for Robotics -- The Human in the Loop -- Robotic and wearable sensor technologies for measurements/clinical assessments -- Clinical Aspects for the Application of Robotics in Neurorehabilitation -- Clinical Application of Robotics and Technology in Restoration of Walking -- Standards and Safety Aspects for Medical Devices in the Field of Neurorehabilitation -- Clinical Application of Rehabilitation Technologies in Children and Youths Undergoing Neurorehabilitation -- Part III Robots for Upper Extremity Recovery -- Restoration of Hand Function in Stroke and Spinal Cord Injury -- Forging Mens et Manus: the MIT Experience in Upper Extremity Robotic Therapy -- Three-Dimensional Multi-Degree-of-Freedom Arm Therapy Robot (ARMin) -- Implementation of Impairment Based Neuro-Rehabilitation Devices and Technologies following Brain Injury -- Part IV Robotics for Locomotion Recovery -- Technology of the Robotic Gait Orthosis Lokomat -- Beyond Human or Robot Administered Treadmill Training -- Toward Flexible Assistance for Locomotor Training: Design and Clinical Testing of a Cable-Driven Robot for Stroke, Spinal Cord Injury, and Cerebral Palsy -- Robot-Aided Gait Training with LOPES -- Robotic Devices for Overground Gait and Balance Training -- Using Robotic Exoskeletons for Overground Locomotor Training -- Functional Electrical Stimulation Therapy: Recovery of Function Following Spinal Cord Injury and Stroke -- Passive Devices for Upper Limb Training -- Upper-Extremity Therapy with Spring Orthoses -- Virtual Reality for Sensorimotor Rehabilitation Post-Stroke: Design Principles and Evidence -- Wearable Sensors for Rehabilitation -- BCI-based Neuroprostheses and Physiotherapies for Stroke Motor Rehabilitation -- Epilogue: What Lies Ahead?
摘要、提要註:
This revised, updated second edition provides an accessible, practical overview of major areas of technical development and clinical application in the field of neurorehabilitation movement therapy. The initial section provides a rationale for technology application in movement therapy by summarizing recent findings in neuroplasticity and motor learning. The following section then explains the state of the art in human-machine interaction requirements for clinical rehabilitation practice. Subsequent sections describe the ongoing revolution in robotic therapy for upper extremity movement and for walking, and then describe other emerging technologies including electrical stimulation, virtual reality, wearable sensors, and brain-computer interfaces. The promises and limitations of these technologies in neurorehabilitation are discussed. Throughout the book the chapters provide detailed practical information on state-of-the-art clinical applications of these devices following stroke, spinal cord injury, and other neurologic disorders. The text is illustrated throughout with photographs and schematic diagrams which serve to clarify the information for the reader. Neurorehabilitation Technology, Second Edition is a valuable resource for neurologists, biomedical engineers, roboticists, rehabilitation specialists, physiotherapists, occupational therapists and those training in these fields.
電子資源:
http://dx.doi.org/10.1007/978-3-319-28603-7
Neurorehabilitation technology[electronic resource] /
Neurorehabilitation technology
[electronic resource] /edited by David J. Reinkensmeyer, Volker Dietz. - 2nd ed. - Cham :Springer International Publishing :2016. - xxii, 647 p. :ill. (some col.), digital ;24 cm.
Introduction: Rationale for Machine Use -- Part I Basic Framework: Motor Recovery, Learning, and Neural Impairment -- Learning in the Damaged Brain/Spinal Cord: Neuroplasticity -- Movement Neuroscience Foundations of Neurorehabilitation -- Designing Robots That Challenge to Optimize Motor Learning -- Multisystem Neurorehabilitation in Rodents with Spinal Cord Injury -- Sensory-Motor Interactions and Error Augmentation -- Normal and Impaired Cooperative Hand Movements: Role of Neural Coupling -- Clinical Assessment and Rehabilitation of the Upper Limb Following Cervical Spinal Cord Injury -- Part II Human-Machine Interaction in Rehabilitation Practice -- Application Issues for Robotics -- The Human in the Loop -- Robotic and wearable sensor technologies for measurements/clinical assessments -- Clinical Aspects for the Application of Robotics in Neurorehabilitation -- Clinical Application of Robotics and Technology in Restoration of Walking -- Standards and Safety Aspects for Medical Devices in the Field of Neurorehabilitation -- Clinical Application of Rehabilitation Technologies in Children and Youths Undergoing Neurorehabilitation -- Part III Robots for Upper Extremity Recovery -- Restoration of Hand Function in Stroke and Spinal Cord Injury -- Forging Mens et Manus: the MIT Experience in Upper Extremity Robotic Therapy -- Three-Dimensional Multi-Degree-of-Freedom Arm Therapy Robot (ARMin) -- Implementation of Impairment Based Neuro-Rehabilitation Devices and Technologies following Brain Injury -- Part IV Robotics for Locomotion Recovery -- Technology of the Robotic Gait Orthosis Lokomat -- Beyond Human or Robot Administered Treadmill Training -- Toward Flexible Assistance for Locomotor Training: Design and Clinical Testing of a Cable-Driven Robot for Stroke, Spinal Cord Injury, and Cerebral Palsy -- Robot-Aided Gait Training with LOPES -- Robotic Devices for Overground Gait and Balance Training -- Using Robotic Exoskeletons for Overground Locomotor Training -- Functional Electrical Stimulation Therapy: Recovery of Function Following Spinal Cord Injury and Stroke -- Passive Devices for Upper Limb Training -- Upper-Extremity Therapy with Spring Orthoses -- Virtual Reality for Sensorimotor Rehabilitation Post-Stroke: Design Principles and Evidence -- Wearable Sensors for Rehabilitation -- BCI-based Neuroprostheses and Physiotherapies for Stroke Motor Rehabilitation -- Epilogue: What Lies Ahead?
This revised, updated second edition provides an accessible, practical overview of major areas of technical development and clinical application in the field of neurorehabilitation movement therapy. The initial section provides a rationale for technology application in movement therapy by summarizing recent findings in neuroplasticity and motor learning. The following section then explains the state of the art in human-machine interaction requirements for clinical rehabilitation practice. Subsequent sections describe the ongoing revolution in robotic therapy for upper extremity movement and for walking, and then describe other emerging technologies including electrical stimulation, virtual reality, wearable sensors, and brain-computer interfaces. The promises and limitations of these technologies in neurorehabilitation are discussed. Throughout the book the chapters provide detailed practical information on state-of-the-art clinical applications of these devices following stroke, spinal cord injury, and other neurologic disorders. The text is illustrated throughout with photographs and schematic diagrams which serve to clarify the information for the reader. Neurorehabilitation Technology, Second Edition is a valuable resource for neurologists, biomedical engineers, roboticists, rehabilitation specialists, physiotherapists, occupational therapists and those training in these fields.
ISBN: 9783319286037
Standard No.: 10.1007/978-3-319-28603-7doiSubjects--Topical Terms:
670147
Nervous system
--Diseases
LC Class. No.: RC350.4
Dewey Class. No.: 616.8046
Neurorehabilitation technology[electronic resource] /
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Introduction: Rationale for Machine Use -- Part I Basic Framework: Motor Recovery, Learning, and Neural Impairment -- Learning in the Damaged Brain/Spinal Cord: Neuroplasticity -- Movement Neuroscience Foundations of Neurorehabilitation -- Designing Robots That Challenge to Optimize Motor Learning -- Multisystem Neurorehabilitation in Rodents with Spinal Cord Injury -- Sensory-Motor Interactions and Error Augmentation -- Normal and Impaired Cooperative Hand Movements: Role of Neural Coupling -- Clinical Assessment and Rehabilitation of the Upper Limb Following Cervical Spinal Cord Injury -- Part II Human-Machine Interaction in Rehabilitation Practice -- Application Issues for Robotics -- The Human in the Loop -- Robotic and wearable sensor technologies for measurements/clinical assessments -- Clinical Aspects for the Application of Robotics in Neurorehabilitation -- Clinical Application of Robotics and Technology in Restoration of Walking -- Standards and Safety Aspects for Medical Devices in the Field of Neurorehabilitation -- Clinical Application of Rehabilitation Technologies in Children and Youths Undergoing Neurorehabilitation -- Part III Robots for Upper Extremity Recovery -- Restoration of Hand Function in Stroke and Spinal Cord Injury -- Forging Mens et Manus: the MIT Experience in Upper Extremity Robotic Therapy -- Three-Dimensional Multi-Degree-of-Freedom Arm Therapy Robot (ARMin) -- Implementation of Impairment Based Neuro-Rehabilitation Devices and Technologies following Brain Injury -- Part IV Robotics for Locomotion Recovery -- Technology of the Robotic Gait Orthosis Lokomat -- Beyond Human or Robot Administered Treadmill Training -- Toward Flexible Assistance for Locomotor Training: Design and Clinical Testing of a Cable-Driven Robot for Stroke, Spinal Cord Injury, and Cerebral Palsy -- Robot-Aided Gait Training with LOPES -- Robotic Devices for Overground Gait and Balance Training -- Using Robotic Exoskeletons for Overground Locomotor Training -- Functional Electrical Stimulation Therapy: Recovery of Function Following Spinal Cord Injury and Stroke -- Passive Devices for Upper Limb Training -- Upper-Extremity Therapy with Spring Orthoses -- Virtual Reality for Sensorimotor Rehabilitation Post-Stroke: Design Principles and Evidence -- Wearable Sensors for Rehabilitation -- BCI-based Neuroprostheses and Physiotherapies for Stroke Motor Rehabilitation -- Epilogue: What Lies Ahead?
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