Advances in upper limb stroke rehabilitation: a technology push.
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The Neurorehabilitation Training Toolkit (NTT): A Novel Worldwide Accessible Motor Training Approach for At-Home Rehabilitation after StrokeInterdisciplinary concepts for design and implementation of mixed reality interactive neurorehabilitation systems for stroke.Stroke patients' utilisation of extrinsic feedback from computer-based technology in the home: a multiple case study realistic evaluationTraining modalities in robot-mediated upper limb rehabilitation in stroke: a framework for classification based on a systematic review.Applications of Brain-Machine Interface Systems in Stroke Recovery and Rehabilitation.Can force feedback and science learning enhance the effectiveness of neuro-rehabilitation? An experimental study on using a low-cost 3D joystick and a virtual visit to a zoo.Considerations in the efficacy and effectiveness of virtual reality interventions for stroke rehabilitation: moving the field forwardA Single-Session Preliminary Evaluation of an Affordable BCI-Controlled Arm Exoskeleton and Motor-Proprioception Platform.Partial weight support of the arm affects corticomotor selectivity of biceps brachii.Effects of combining robot-assisted therapy with neuromuscular electrical stimulation on motor impairment, motor and daily function, and quality of life in patients with chronic stroke: a double-blinded randomized controlled trial.Combining Dopaminergic Facilitation with Robot-Assisted Upper Limb Therapy in Stroke Survivors: A Focused ReviewTechnology-assisted stroke rehabilitation in Mexico: a pilot randomized trial comparing traditional therapy to circuit training in a Robot/technology-assisted therapy gym.The Present and Future of Robotic Technology in Rehabilitation.Assisting drinking with an affordable BCI-controlled wearable robot and electrical stimulation: a preliminary investigation.An exploration of physiotherapists' experiences of robotic therapy in upper limb rehabilitation within a stroke rehabilitation centre.Effects of Robot-Assisted Therapy for the Upper Limb After Stroke.Preliminary Study on Continuous Recognition of Elbow Flexion/Extension Using sEMG Signals for Bilateral Rehabilitation.Posture interacts with arm weight support to modulate corticomotor excitability to the upper limb.Design and Validation of Exoskeleton Actuated by Soft Modules toward Neurorehabilitation-Vision-Based Control for Precise Reaching Motion of Upper Limb.Effect of Robot-Assisted Game Training on Upper Extremity Function in Stroke Patients.Combining Upper Limb Robotic Rehabilitation with Other Therapeutic Approaches after Stroke: Current Status, Rationale, and Challenges.The provision of feedback through computer-based technology to promote self-managed post-stroke rehabilitation in the home.Proactive Ethical Design for Neuroengineering, Assistive and Rehabilitation Technologies: the Cybathlon Lesson.Combining robotic training and inactivation of the healthy hemisphere restores pre-stroke motor patterns in mice.Classification of ankle joint movements based on surface electromyography signals for rehabilitation robot applications.Combining Mental Training and Physical Training With Goal-Oriented Protocols in Stroke Rehabilitation: A Feasibility Case Study.Reliability, validity and discriminant ability of the instrumental indices provided by a novel planar robotic device for upper limb rehabilitation.Rehabilitation robots for the treatment of sensorimotor deficits: a neurophysiological perspective.Mobile Mechatronic/Robotic Orthotic Devices to Assist-Rehabilitate Neuromotor Impairments in the Upper Limb: A Systematic and Synthetic ReviewExoskeleton Technology in Rehabilitation: Towards an EMG-Based Orthosis System for Upper Limb Neuromotor Rehabilitation
P2860
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P2860
Advances in upper limb stroke rehabilitation: a technology push.
description
article científic
@ca
article scientifique
@fr
articolo scientifico
@it
artigo científico
@pt
bilimsel makale
@tr
scientific article published on 20 July 2011
@en
vedecký článok
@sk
vetenskaplig artikel
@sv
videnskabelig artikel
@da
vědecký článek
@cs
name
Advances in upper limb stroke rehabilitation: a technology push.
@en
Advances in upper limb stroke rehabilitation: a technology push.
@nl
type
label
Advances in upper limb stroke rehabilitation: a technology push.
@en
Advances in upper limb stroke rehabilitation: a technology push.
@nl
prefLabel
Advances in upper limb stroke rehabilitation: a technology push.
@en
Advances in upper limb stroke rehabilitation: a technology push.
@nl
P2093
P2860
P1476
Advances in upper limb stroke rehabilitation: a technology push.
@en
P2093
Kiyoshi Nagai
Michelle Johnson
Rui C V Loureiro
William S Harwin
P2860
P304
P356
10.1007/S11517-011-0797-0
P577
2011-07-20T00:00:00Z