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首页> 外文期刊>Experimental Brain Research >Manipulating visual-motor experience to probe for observation-induced after-effects in adaptation learning.
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Manipulating visual-motor experience to probe for observation-induced after-effects in adaptation learning.

机译:操纵视觉电机体验对适应学习中观察后效应的探讨。

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Observers can learn to move in novel, adapted environments after watching a learning or expert model. Although this is an effective practice technique, it is unclear how this learning is achieved and if observers update an internal model of their visual-motor environment, as shown through the presence of after-effects (i.e., negative carry-over effects when aiming in a normal environment following exposure to perturbed conditions). For such updating to occur via observational practice, it has been reasoned that the observer requires the motor capabilities to perform the task they are observing. To test this, we first trained three groups to physically move in clockwise (CW) or counterclockwise (CCW) rotated environments. When immediately returned to a normal environment, after-effects were seen. We then attempted to wash out these effects before allowing two of these groups (CW and CCW), and a na?ve observation only group, to watch a video of an actor performing in a CW environment. This observation phase was immediately followed by another test for after-effects and a direct test of learning when aiming in the rotated environment. Consistent with previous data, there were direct learning effects due to observation. Although after-effects increased for the experienced observers, these were small and were not significantly different from a physical practice only group that did not undergo the observation phase. Therefore, even with a motor repertoire for the rotated environment, there was a lack of evidence that observational practice results in implicit (re)updating of an internal model for aiming.
机译:观察员可以在观看学习或专家模型后学会在新颖的,适应的环境中移动。虽然这是一种有效的实践技术,但目前尚不清楚如何实现该学习,并且如果观察者更新其视觉电机环境的内部模型,如通过后效应的存在(即,在瞄准时的负载效果暴露于扰动条件后的正常环境)。对于通过观察实践发生这种更新,已经推理了观察者需要电动机能力来执行他们观察的任务。为了测试这一点,我们首先训练了三个组,以便以顺时针(CW)或逆时针(CCW)旋转环境物理地移动。当立即返回正常环境时,看到了后续效果。然后我们试图在允许这些组(CW和CCW)中的两个(CW和CCW)和NA ve观察,观察在CW环境中执行的视频。该观察阶段紧接着接下来进行一次后效应的一次测试和在瞄准旋转环境时的学习直接测试。与以前的数据一致,由于观察,存在直接的学习效果。虽然经验丰富的观察者的后效应增加,但是这些较小,并且与没有经历观察阶段的小组的物理实践没有显着差异。因此,即使具有旋转环境的电动机曲目,缺乏证据表明观察实践导致隐式(重新)更新用于瞄准的内部模型。

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