Electromechanical and Robot-Assisted Arm Training After Stroke

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Electromechanical and robot-assisted arm training for improving arm function and activities of daily living after stroke.

BACKGROUND Electromechanical and robot-assisted arm training devices are used in rehabilitation and might help to improve arm function after stroke. OBJECTIVES To assess the effectiveness of electromechanical and robot-assisted arm training for improving activities of daily living and arm function and motor strength of patients after stroke, and the acceptability and safety of the therapy. ...

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Electromechanical-assisted training for walking after stroke.

BACKGROUND Electromechanical and robotic-assisted gait training devices are used in rehabilitation and might help to improve walking after stroke. This is an update of a Cochrane Review first published in 2007. OBJECTIVES To investigate the effects of automated electromechanical and robotic-assisted gait training devices for improving walking after stroke. SEARCH METHODS We searched the Coc...

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Electromechanical-assisted training for walking after stroke: updated evidence.

Methods We searched the Cochrane Stroke Group Trials Register (last searched April 2012), the Cochrane Central Register of Controlled Trials (CENTRAL; The Cochrane Library 2012, Issue 2), MEDLINE (1966 to November 2012), EMBASE (1980 to November 2012), CINAHL (1982 to November 2012), AMED (1985 to November 2012), SPORTDiscus (1949 to September 2012), the Physiotherapy Evidence Database (PEDro, ...

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Retraining of interjoint arm coordination after stroke using robot-assisted time-independent functional training.

We have developed a haptic-based approach for retraining of interjoint coordination following stroke called time-independent functional training (TIFT) and implemented this mode in the ARMin III robotic exoskeleton. The ARMin III robot was developed by Drs. Robert Riener and Tobias Nef at the Swiss Federal Institute of Technology Zurich (Eidgenossische Technische Hochschule Zurich, or ETH Zuric...

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Robot-assisted movement training for the stroke-impaired arm: Does it matter what the robot does?

Robot-assisted movement training improves arm movement ability following acute and chronic stroke. Such training involves two interacting processes: the patient trying to move and the robot applying forces to the patient's arm. A fundamental principle of motor learning is that movement practice improves motor function; the role of applied robotic forces in improving motor function is still uncl...

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ژورنال

عنوان ژورنال: Stroke

سال: 2012

ISSN: 0039-2499,1524-4628

DOI: 10.1161/strokeaha.112.674226