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Active Prospective Control Is Required for Effective Sensorimotor Learning

机译:有效的感觉运动学习需要积极的前瞻性控制

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摘要

Passive modeling of movements is often used in movement therapy to overcome disabilities caused by stroke or other disorders (e.g. Developmental Coordination Disorder or Cerebral Palsy). Either a therapist or, recently, a specially designed robot moves or guides the limb passively through the movement to be trained. In contrast, action theory has long suggested that effective skill acquisition requires movements to be actively generated. Is this true? In view of the former, we explicitly tested the latter. Previously, a method was developed that allows children with Developmental Coordination Disorder to produce effective movements actively, so as to improve manual performance to match that of typically developing children. In the current study, we tested practice using such active movements as compared to practice using passive movement. The passive movement employed, namely haptic tracking, provided a strong test of the comparison, one that showed that the mere inaction of the muscles is not the problem. Instead, lack of prospective control was. The result was no effective learning with passive movement while active practice with prospective control yielded significant improvements in performance.
机译:运动疗法中经常使用被动运动建模来克服由中风或其他疾病(例如发育协调障碍或脑瘫)引起的残疾。治疗师,或者最近专门设计的机器人,可以被动地移动或引导肢体通过要训练的运动。相反,行动理论长期以来一直认为有效的技能获取需要积极地产生动作。这是真的?鉴于前者,我们明确测试了后者。以前,人们开发了一种方法,该方法可以使患有发育协调障碍的儿童主动产生有效的动作,从而提高体力表现,使其与通常发育的儿童相匹配。在当前的研究中,我们测试了使用主动运动的练习与使用被动运动的练习。所采用的被动运动,即触觉跟踪,提供了一种强有力的比较测试,表明该比较简单的肌肉不是问题。相反,缺乏前瞻性控制。结果是被动运动无法有效学习,而前瞻性控制的主动练习可以显着改善绩效。

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