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运动记忆的衰退与情境变化检测无关。

The Decay of Motor Memories Is Independent of Context Change Detection.

作者信息

Brennan Andrew E, Smith Maurice A

机构信息

School of Engineering and Applied Sciences, Harvard University, Cambridge, Massachusetts, United States of America.

School of Engineering and Applied Sciences, Harvard University, Cambridge, Massachusetts, United States of America; Center for Brain Science, Harvard University, Cambridge, Massachusetts, United States of America.

出版信息

PLoS Comput Biol. 2015 Jun 25;11(6):e1004278. doi: 10.1371/journal.pcbi.1004278. eCollection 2015 Jun.

Abstract

When the error signals that guide human motor learning are withheld following training, recently-learned motor memories systematically regress toward untrained performance. It has previously been hypothesized that this regression results from an intrinsic volatility in these memories, resulting in an inevitable decay in the absence of ongoing error signals. However, a recently-proposed alternative posits that even recently-acquired motor memories are intrinsically stable, decaying only if a change in context is detected. This new theory, the context-dependent decay hypothesis, makes two key predictions: (1) after error signals are withheld, decay onset should be systematically delayed until the context change is detected; and (2) manipulations that impair detection by masking context changes should result in prolonged delays in decay onset and reduced decay amplitude at any given time. Here we examine the decay of motor adaptation following the learning of novel environmental dynamics in order to carefully evaluate this hypothesis. To account for potential issues in previous work that supported the context-dependent decay hypothesis, we measured decay using a balanced and baseline-referenced experimental design that allowed for direct comparisons between analogous masked and unmasked context changes. Using both an unbiased variant of the previous decay onset analysis and a novel highly-powered group-level version of this analysis, we found no evidence for systematically delayed decay onset nor for the masked context change affecting decay amplitude or its onset time. We further show how previous estimates of decay onset latency can be substantially biased in the presence of noise, and even more so with correlated noise, explaining the discrepancy between the previous results and our findings. Our results suggest that the decay of motor memories is an intrinsic feature of error-based learning that does not depend on context change detection.

摘要

当在训练后停止引导人类运动学习的误差信号时,最近习得的运动记忆会系统地向未训练的表现退化。此前有人推测,这种退化是由于这些记忆中存在内在的波动性,导致在没有持续误差信号的情况下不可避免地衰退。然而,最近提出的另一种观点认为,即使是最近获得的运动记忆本质上也是稳定的,只有在检测到环境变化时才会衰退。这个新理论,即上下文依赖衰退假说,做出了两个关键预测:(1)在停止误差信号后,衰退开始应该会系统地延迟,直到检测到上下文变化;(2)通过掩盖上下文变化来损害检测的操作应该会导致衰退开始的延迟延长,并且在任何给定时间衰减幅度减小。在这里,我们研究了在学习新的环境动态后运动适应的衰退情况,以便仔细评估这个假说。为了解决先前支持上下文依赖衰退假说的工作中存在的潜在问题,我们使用了一种平衡且以基线为参考的实验设计来测量衰退,这种设计允许对类似的掩盖和未掩盖的上下文变化进行直接比较。使用先前衰退开始分析的无偏变量以及该分析的一种新的高功效组水平版本,我们没有发现衰退开始系统延迟的证据,也没有发现掩盖的上下文变化会影响衰减幅度或其开始时间的证据。我们进一步展示了在存在噪声的情况下,尤其是存在相关噪声时,先前对衰退开始潜伏期的估计可能会有很大偏差,这解释了先前结果与我们的发现之间的差异。我们的结果表明,运动记忆的衰退是基于误差学习的一个内在特征,不依赖于上下文变化检测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b36/4482542/c90028944c31/pcbi.1004278.g001.jpg

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