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Motivation dynamically increases noise resistance by internal feedback during movement

机译:动机通过运动中的内部反馈动态增加抗噪性

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摘要

Motivation improves performance, pushing us beyond our normal limits. One general explanation for this is that the effects of neural noise can be reduced, at a cost. If this were possible, reward would promote investment in resisting noise. But how could the effects of noise be attenuated, and why should this be costly? Negative feedback may be employed to compensate for disturbances in a neural representation. Such feedback would increase the robustness of neural representations to internal signal fluctuations, producing a stable attractor. We propose that encoding this negative feedback in neural signals would incur additional costs proportional to the strength of the feedback signal. We use eye movements to test the hypothesis that motivation by reward improves precision by increasing the strength of internal negative feedback. We find that reward simultaneously increases the amplitude, velocity and endpoint precision of saccades, indicating true improvement in oculomotor performance. Analysis of trajectories demonstrates that variation in the eye position during the course of saccades is predictive of the variation of endpoints, but this relation is reduced by reward. This indicates that motivation permits more aggressive correction of errors during the saccade, so that they no longer affect the endpoint. We suggest that such increases in internal negative feedback allow attractor stability, albeit at a cost, and therefore may explain how motivation improves cognitive as well as motor precision.
机译:动机可以提高绩效,使我们超越正常的极限。一种对此的一般解释是,可以降低神经噪声的影响,但要付出一定的代价。如果可能的话,奖励将促进抵抗噪声的投资。但是,如何才能降低噪声的影响,为什么要付出高昂的代价呢?可以采用负反馈来补偿神经表示中的干扰。这样的反馈将增加神经表示对内部信号波动的鲁棒性,从而产生稳定的吸引子。我们建议在神经信号中编码此负反馈将招致与反馈信号强度成比例的额外成本。我们使用眼球运动来检验以下假设:奖励激励通过增加内部负反馈的强度来提高准确性。我们发现奖励同时增加了扫视的幅度,速度和终点精度,这表明动眼功能的真正改善。轨迹分析表明,在扫视过程中眼睛位置的变化可预测端点的变化,但这种关系会因奖励而减少。这表明动机可以在扫视过程中更积极地纠正错误,以使它们不再影响终点。我们建议,这种内部负反馈的增加尽管有一定的成本,但仍能使吸引子稳定,因此可以解释动机如何改善认知能力以及运动精度。

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