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Titlebook: Emerging Therapies in Neurorehabilitation; José L Pons,Diego Torricelli Book 2014 Springer-Verlag Berlin Heidelberg 2014 Biomechanics of h

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Upper Limb Neuroprostheses: Recent Advances and Future Directionspinal cord injury and a patient suffering from tremors. These examples were selected to show that the current development of technologies and improved knowledge from the life sciences open new horizons. The message to take home is that an improved therapy that applies the appropriate therapy at the
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Book 2014rkinson’s disease; the second deals with both spinal cord and brain plasticity. The third part covers the most recent rehabilitation and diagnostics technologies, including robotics, neuroprostheses, brain-machine interfaces and electromyography systems. Practical examples and case studies related t
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Emerging Perspectives in Stroke Rehabilitation appropriate therapy to a patient at the correct time, several theoretical considerations must be taken into account—from a clear delineation of rehabilitation goals to an understanding of how a certain therapy can influence the underlying neuroplasticity. With regard to the differences between uppe
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Spinal Cord Plasticity and Neuromodulationrely on modulating and guiding the plasticity of the central nervous system including the spinal cord itself. This chapter first provides a general overview of the evidence for spinal cord plasticity. It reviews the definitions of quality of life (QOL) and discusses how typical research priorities a
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Neural Interfaces as Tools for Studying Brain Plasticityy to control computers, limb prosthesis or powered exoskeletons. Since motor deficits are commonly associated with spinal cord injury, brain injury, limb loss, and neurodegenerative diseases, there is a need to investigate new potential therapies to restore or rehabilitate movement in such clinical
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Neuromodulation on Cerebral Activitiesvated muscles through the corticospinal pathway. This causal relation is of interest in neurorehabilitation to improve motor function for people with motor difficulties. Previous neurorehabilitation methods used external stimulation to modify the corticospinal pathway controlling the motor function
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