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首页> 外文期刊>Neuron >Rethinking motor learning and savings in adaptation paradigms: model-free memory for successful actions combines with internal models.
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Rethinking motor learning and savings in adaptation paradigms: model-free memory for successful actions combines with internal models.

机译:重新思考运动学习和节省适应范例:成功行动的无模型记忆与内部模型相结合。

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摘要

Although motor learning is likely to involve multiple processes, phenomena observed in error-based motor learning paradigms tend to be conceptualized in terms of only a single process: adaptation, which occurs through updating an internal model. Here we argue that fundamental phenomena like movement direction biases, savings (faster relearning), and interference do not relate to adaptation but instead are attributable to two additional learning processes that can be characterized as model-free: use-dependent plasticity and operant reinforcement. Although usually "hidden" behind adaptation, we demonstrate, with modified visuomotor rotation paradigms, that these distinct model-based and model-free processes combine to learn an error-based motor task. (1) Adaptation of an internal model channels movements toward successful error reduction in visual space. (2) Repetition of the newly adapted movement induces directional biases toward the repeated movement. (3) Operant reinforcement through association of the adapted movement with successful error reduction is responsible for savings.
机译:尽管运动学习可能涉及多个过程,但在基于错误的运动学习范例中观察到的现象往往仅通过单个过程来概念化:适应,这是通过更新内部模型而发生的。在这里,我们认为运动方向偏差,节省(更快的重新学习)和干扰等基本现象与适应无关,而是可归因于两个额外的学习过程,这些过程可被描述为无模型:依赖于使用的可塑性和操作性增强。尽管通常在适应后被“隐藏”,但我们使用修改后的粘性运动范例证明了这些基于模型和无模型的独特过程相结合,可以学习基于错误的运动任务。 (1)调整内部模型可引导运动成功减少视觉空间中的错误。 (2)新适应运动的重复会引起朝向重复运动的方向偏向。 (3)通过将匹配的运动与成功的误差减少相关联来进行操作加强以节省成本。

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