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Neurorehabilitation Technology

Overview of attention for book
Cover of 'Neurorehabilitation Technology'

Table of Contents

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    Book Overview
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    Chapter 1 Learning in the Damaged Brain/Spinal Cord: Neuroplasticity
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    Chapter 2 Movement Neuroscience Foundations of Neurorehabilitation
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    Chapter 3 Recovery of Sensorimotor Functions After Stroke and SCI: Neurophysiological Basis of Rehabilitation Technology
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    Chapter 4 Use of Technology in the Assessment and Rehabilitation of the Upper Limb After Cervical Spinal Cord Injury
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    Chapter 5 Implementation of Impairment-Based Neurorehabilitation Devices and Technologies Following Brain Injury
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    Chapter 6 The Hand After Stroke and SCI: Restoration of Function with Technology
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    Chapter 7 Neural Coordination of Cooperative Hand Movements: Implications for Rehabilitation Technology
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    Chapter 8 Robotic Gait Training in Specific Neurological Conditions: Rationale and Application
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    Chapter 9 Designing User-Centered Technologies for Rehabilitation Challenge that Optimize Walking and Balance Performance
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    Chapter 10 Psychophysiological Integration of Humans and Machines for Rehabilitation
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    Chapter 11 Sensory-Motor Interactions and the Manipulation of Movement Error
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    Chapter 12 The Role of Haptic Interactions with Robots for Promoting Motor Learning
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    Chapter 13 Implementation of Robots into Rehabilitation Programs: Meeting the Requirements and Expectations of Professional and End Users
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    Chapter 14 Clinical Application of Rehabilitation Therapy Technologies to Children with CNS Damage
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    Chapter 15 Robotic Technologies and Digital Health Metrics for Assessing Sensorimotor Disability
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    Chapter 16 Computational Neurorehabilitation
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    Chapter 17 Precision Rehabilitation: Can Neurorehabilitation Technology Help Make It a Realistic Target?
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    Chapter 18 Spinal Cord Stimulation to Enable Leg Motor Control and Walking in People with Spinal Cord Injury
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    Chapter 19 Functional Electrical Stimulation Therapy: Mechanisms for Recovery of Function Following Spinal Cord Injury and Stroke
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    Chapter 20 Basis and Clinical Evidence of Virtual Reality-Based Rehabilitation of Sensorimotor Impairments After Stroke
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    Chapter 21 Wearable Sensors for Stroke Rehabilitation
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    Chapter 22 BCI-Based Neuroprostheses and Physiotherapies for Stroke Motor Rehabilitation
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    Chapter 23 Passive Devices for Upper Limb Training
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    Chapter 24 Mobile Technology for Cognitive Rehabilitation
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    Chapter 25 Telerehabilitation Technology
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    Chapter 26 Forging Mens et Manus: The MIT Experience in Upper Extremity Robotic Therapy
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    Chapter 27 Three-Dimensional Multi-Degree-of-Freedom Arm Therapy Robot (ARMin)
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    Chapter 28 Upper-Extremity Movement Training with Mechanically Assistive Devices
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    Chapter 29 Technology of the Robotic Gait Orthosis Lokomat
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    Chapter 30 Using Robotic Exoskeletons for Overground Locomotor Training
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    Chapter 31 Beyond Human or Robot Administered Treadmill Training
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    Chapter 32 A Flexible Cable-Driven Robotic System: Design and Its Clinical Application for Improving Walking Function in Adults with Stroke, SCI, and Children with CP
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    Chapter 33 Body Weight Support Devices for Overground Gait and Balance Training
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    Chapter 34 Epilogue: Robots for Neurorehabilitation—The Debate
Attention for Chapter 3: Recovery of Sensorimotor Functions After Stroke and SCI: Neurophysiological Basis of Rehabilitation Technology
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Chapter title
Recovery of Sensorimotor Functions After Stroke and SCI: Neurophysiological Basis of Rehabilitation Technology
Chapter number 3
Book title
Neurorehabilitation Technology
Published by
Springer, Cham, January 2022
DOI 10.1007/978-3-031-08995-4_3
Book ISBNs
978-3-03-108994-7, 978-3-03-108995-4
Authors

Dietz, Volker, Marchal-Crespo, Laura, Reinkensmeyer, David

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 1 Mendeley reader of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 1 100%

Demographic breakdown

Readers by professional status Count As %
Student > Bachelor 1 100%
Student > Postgraduate 1 100%
Readers by discipline Count As %
Sports and Recreations 1 100%
Engineering 1 100%