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效应器独立性运动记忆的衰减和巩固。

The decay and consolidation of effector-independent motor memories.

机构信息

Department of Health and Kinesiology, Texas A&M University, College Station, TX, 77843, USA.

Department of Kinesiology, University of Wisconsin-Milwaukee, Milwaukee, WI, 53151, USA.

出版信息

Sci Rep. 2022 Feb 24;12(1):3131. doi: 10.1038/s41598-022-07032-7.

Abstract

Learning a motor adaptation task produces intrinsically unstable or transient motor memories. Despite the presence of effector-independent motor memories following the learning of novel environmental dynamics, it remains largely unknown how those memory traces decay in different contexts and whether an "offline" consolidation period protects memories against decay. Here, we exploit inter-effector transfer to address these questions. We found that newly acquired motor memories formed with one effector could be partially retrieved by the untrained effector to enhance its performance when the decay occurred with the passage of time or "washout" trials on which error feedback was provided. The decay of motor memories was slower following "error-free" trials, on which errors were artificially clamped to zero or removed, compared with "washout" trials. However, effector-independent memory components were abolished following movements made in the absence of task errors, resulting in no transfer gains. The brain can stabilize motor memories during daytime wakefulness. We found that 6 h of wakeful resting increased the resistance of effector-independent memories to decay. Collectively, our results suggest that the decay of effector-independent motor memories is context-dependent, and offline processing preserves those memories against decay, leading to improvements of the subsequent inter-effector transfer.

摘要

学习运动适应任务会产生内在不稳定或短暂的运动记忆。尽管在学习新的环境动力学后会存在与效应器无关的运动记忆,但这些记忆痕迹在不同的情况下如何衰减,以及“离线”巩固期是否能保护记忆免受衰减,在很大程度上仍然未知。在这里,我们利用效应器间转移来解决这些问题。我们发现,用一个效应器形成的新获得的运动记忆可以被未训练的效应器部分检索,以提高其性能,当随着时间的推移或提供错误反馈的“冲刷”试验出现衰减时。与“冲刷”试验相比,在“无错误”试验后,运动记忆的衰减较慢,在“无错误”试验中,人为地将错误固定为零或消除。然而,在没有任务错误的情况下进行运动时,与效应器无关的记忆成分被消除,导致没有转移增益。大脑可以在白天清醒时稳定运动记忆。我们发现,6 小时的清醒休息增加了效应器无关记忆对衰减的抵抗力。总的来说,我们的结果表明,与效应器无关的运动记忆的衰减是依赖于上下文的,离线处理可以保护这些记忆免受衰减,从而提高随后的效应器间转移的效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/07cb/8873205/c411316a2a2c/41598_2022_7032_Fig1_HTML.jpg

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