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为未知做好准备:工作记忆如何在感知和预期动作之间建立联系。

Preparing for the unknown: How working memory provides a link between perception and anticipated action.

机构信息

Leibniz Research Centre for Working Environment and Human Factors, Dortmund, Germany.

Leibniz Research Centre for Working Environment and Human Factors, Dortmund, Germany.

出版信息

Neuroimage. 2022 Oct 15;260:119466. doi: 10.1016/j.neuroimage.2022.119466. Epub 2022 Jul 14.

Abstract

What mechanisms underlie the transfer of a working memory representation into a higher-level code for guiding future actions? Electrophysiological correlates of attentional selection and motor preparation processes within working memory were investigated in two retrospective cuing tasks. In the first experiment, participants stored the orientation and location of a grating. Subsequent feature cues (selective vs. neutral) indicated which feature would be the target for later report. The oscillatory response in the mu and beta frequency range with an estimated source in the sensorimotor cortex contralateral to the responding hand was used as correlate of motor preparation. Mu/beta suppression was stronger following the selective feature cues compared to the neutral cue, demonstrating that purely feature-based selection is sufficient to form a prospective motor plan. In the second experiment, another retrospective cue was included to study whether knowledge of the task at hand is necessary to initiate motor preparation. Following the feature cue, participants were cued to either compare the stored feature(s) to a probe stimulus (recognition task) or to adjust the memory probe to match the target feature (continuous report task). An analogous suppression of mu oscillations was observed following a selective feature cue, even ahead of task specification. Further, a subsequent selective task cue again elicited a mu/beta suppression, which was stronger after a continuous report task cue. This indicates that working memory is able to flexibly store different types of information in higher-level mental codes to provide optimal prerequisites for all required action possibilities.

摘要

在将工作记忆的表示转移到指导未来行动的更高层次代码的过程中,哪些机制起作用?在两项回溯式提示任务中,研究了工作记忆内注意选择和运动准备过程的电生理相关性。在第一个实验中,参与者存储了光栅的方向和位置。随后的特征提示(选择性与中性)指示了哪个特征将成为稍后报告的目标。在感觉运动皮层对侧与反应手相对应的区域中,以 mu 和 beta 频带的振荡反应作为运动准备的相关物。与中性提示相比,选择性特征提示后 mu/beta 抑制更强,表明仅基于特征的选择足以形成前瞻性运动计划。在第二个实验中,还包括另一个回溯提示,以研究是否需要了解手头的任务才能开始运动准备。在特征提示之后,参与者被提示要么将存储的特征(s)与探针刺激进行比较(识别任务),要么调整记忆探针以匹配目标特征(连续报告任务)。即使在任务指定之前,也观察到类似的 mu 振荡抑制。此外,随后的选择性任务提示再次引起 mu/beta 抑制,在连续报告任务提示后更强。这表明工作记忆能够灵活地将不同类型的信息存储在更高层次的心理代码中,为所有所需的行动可能性提供最佳的前提条件。

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