神经康复
神经认知
认知
康复
生物反馈
任务(项目管理)
运动学习
心理学
神经可塑性
认知康复治疗
神经假体
计算机科学
物理医学与康复
神经科学
人机交互
医学
工程类
系统工程
作者
Giovanni Morone,Grazia Fernanda Spitoni,Daniela De Bartolo,Sheida Ghanbari Ghooshchy,Fulvia Di Iulio,Stefano Paolucci,Pierluigi Zoccolotti,Marco Iosa
标识
DOI:10.1080/17434440.2019.1574567
摘要
Introduction: In recent years, neurorehabilitation has moved from a 'bottom-up' to a 'top down' approach. This change has also involved the technological devices developed for motor and cognitive rehabilitation. It implies that during a task or during therapeutic exercises, new 'top-down' approaches are being used to stimulate the brain in a more direct way to elicit plasticity-mediated motor re-learning. This is opposed to 'Bottom up' approaches, which act at the physical level and attempt to bring about changes at the level of the central neural system.Areas covered: In the present unsystematic review, we present the most promising innovative technological devices that can effectively support rehabilitation based on a top-down approach, according to the most recent neuroscientific and neurocognitive findings. In particular, we explore if and how the use of new technological devices comprising serious exergames, virtual reality, robots, brain computer interfaces, rhythmic music and biofeedback devices might provide a top-down based approach.Expert commentary: Motor and cognitive systems are strongly harnessed in humans and thus cannot be separated in neurorehabilitation. Recently developed technologies in motor-cognitive rehabilitation might have a greater positive effect than conventional therapies.
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