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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 Designing Robots That Challenge to Optimize Motor Learning
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    Chapter 4 Multisystem Neurorehabilitation in Rodents with Spinal Cord Injury
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    Chapter 5 Sensory-Motor Interactions and Error Augmentation
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    Chapter 6 Normal and Impaired Cooperative Hand Movements: Role of Neural Coupling
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    Chapter 7 Clinical Assessment and Rehabilitation of the Upper Limb Following Cervical Spinal Cord Injury
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    Chapter 8 Application Issues for Robotics
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    Chapter 9 The Human in the Loop
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    Chapter 10 Robotic and Wearable Sensor Technologies for Measurements/Clinical Assessments
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    Chapter 11 Clinical Aspects for the Application of Robotics in Locomotor Neurorehabilitation
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    Chapter 12 Clinical Application of Robotics and Technology in the Restoration of Walking
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    Chapter 13 Standards and Safety Aspects for Medical Devices in the Field of Neurorehabilitation
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    Chapter 14 Clinical Application of Rehabilitation Technologies in Children Undergoing Neurorehabilitation
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    Chapter 15 Restoration of Hand Function in Stroke and Spinal Cord Injury
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    Chapter 16 Forging Mens et Manus: The MIT Experience in Upper Extremity Robotic Therapy
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    Chapter 17 Three-Dimensional Multi-degree-of-Freedom Arm Therapy Robot (ARMin)
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    Chapter 18 Implementation of Impairment-Based Neurorehabilitation Devices and Technologies Following Brain Injury
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    Chapter 19 Technology of the Robotic Gait Orthosis Lokomat
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    Chapter 20 Beyond Human or Robot Administered Treadmill Training
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    Chapter 21 Toward Flexible Assistance for Locomotor Training: Design and Clinical Testing of a Cable-Driven Robot for Stroke, Spinal Cord Injury, and Cerebral Palsy
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    Chapter 22 Robot-Aided Gait Training with LOPES
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    Chapter 23 Robotic Devices for Overground Gait and Balance Training
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    Chapter 24 Using Robotic Exoskeletons for Over-Ground Locomotor Training
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    Chapter 25 Functional Electrical Stimulation Therapy: Recovery of Function Following Spinal Cord Injury and Stroke
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    Chapter 26 Passive Devices for Upper Limb Training
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    Chapter 27 Upper-Extremity Therapy with Spring Orthoses
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    Chapter 28 Virtual Reality for Sensorimotor Rehabilitation Post Stroke: Design Principles and Evidence
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    Chapter 29 Wearable Wireless Sensors for Rehabilitation
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    Chapter 30 BCI-Based Neuroprostheses and Physiotherapies for Stroke Motor Rehabilitation
Attention for Chapter 8: Application Issues for Robotics
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Citations

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Chapter title
Application Issues for Robotics
Chapter number 8
Book title
Neurorehabilitation Technology
Published by
Springer International Publishing, August 2016
DOI 10.1007/978-3-319-28603-7_8
Book ISBNs
978-3-31-928601-3, 978-3-31-928603-7
Authors

Markus Wirz PT, PhD, Rüdiger Rupp PhD, Markus Wirz, Rüdiger Rupp

Editors

David J. Reinkensmeyer, Volker Dietz

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 11 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 11 100%

Demographic breakdown

Readers by professional status Count As %
Student > Master 4 36%
Student > Ph. D. Student 3 27%
Researcher 1 9%
Professor > Associate Professor 1 9%
Unknown 2 18%
Readers by discipline Count As %
Engineering 3 27%
Computer Science 2 18%
Medicine and Dentistry 2 18%
Neuroscience 1 9%
Nursing and Health Professions 1 9%
Other 0 0%
Unknown 2 18%