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The Role of Movement Representation Techniques in the Motor Learning Process: A Neurophysiological Hypothesis and a Narrative Review

机译:运动表示技术在运动学习过程中的作用:神经生理假说和叙事回顾。

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摘要

We present a neurophysiological hypothesis for the role of motor imagery (MI) and action observation (AO) training in the motor learning process. The effects of movement representation in the brain and those of the cortical–subcortical networks related to planning, executing, adjusting, and automating real movements share a similar neurophysiological activity. Coupled with the influence of certain variables related to the movement representation process, this neurophysiological activity is a key component of the present hypothesis. These variables can be classified into four domains: physical, cognitive–evaluative, motivational–emotional, and direct-modulation. The neurophysiological activity underlying the creation and consolidation of mnemonic representations of motor gestures as a prerequisite to motor learning might differ between AO and MI. Together with variations in cognitive loads, these differences might explain the differing results in motor learning. The mirror neuron system appears to function more efficiently through AO training than MI, and AO is less demanding in terms of cognitive load than MI. AO might be less susceptible to the influence of variables related to movement representation.
机译:我们提出了在运动学习过程中运动图像(MI)和动作观察(AO)训练的作用的神经生理假说。大脑和与计划,执行,调整和自动化真实运动有关的皮层-皮层下网络在大脑中的运动表示效果具有相似的神经生理活动。加上与运动表示过程相关的某些变量的影响,这种神经生理活动是本假设的关键组成部分。这些变量可以分为四个领域:身体的,认知的,评估的,动机的,情感的和直接调节的。作为运动学习先决条件的运动手势的助记符表示的创建和合并所基于的神经生理活动可能在AO和MI之间有所不同。这些差异与认知负荷的变化一起可以解释运动学习的不同结果。镜像神经元系统通过AO训练似乎比MI更有效地起作用,并且AO在认知负荷方面的要求比MI更低。 AO可能不太容易受到与运动表示相关的变量的影响。

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