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运动诱发的选择反应性能波动。

Motor-induced oscillations in choice response performance.

机构信息

Department of Cognition, Emotion, and Methods in Psychology, Faculty of Psychology, University of Vienna, Vienna, Austria.

Cognitive Science Research Hub, University of Vienna, Vienna, Austria.

出版信息

Psychophysiology. 2023 Feb;60(2):e14172. doi: 10.1111/psyp.14172. Epub 2022 Aug 30.

Abstract

Recently, numerous studies have revealed 4-12 Hz fluctuations of behavioral performance in a multitude of tasks. The majority has utilized stimuli near detection threshold and observed related fluctuations in hit-rates, attributing these to perceptual or attentional processes. As neural oscillations in the 8-20 Hz range also feature prominently in cortical motor areas, they might cause fluctuations in the ability to induce responses, independent of attentional capabilities. Additionally, different effectors (e.g., the left versus right hand) might be cyclically prioritized in an alternating fashion, similar to the attentional sampling of distinct locations, objects, or memory templates. Here, we investigated these questions via a behavioral dense-sampling approach. Twenty-six participants performed a simple visual discrimination task using highly salient stimuli. We varied the interval between each motor response and the subsequent target from 330 to 1040 ms, and analyzed performance as a function of this interval. Our data show significant fluctuations of both RTs and sensitivity between 12.5 and 25 Hz, but no evidence for an alternating prioritization of left- versus right-hand responses. While our results suggest an impact of motor-related signals on performance oscillations, they might additionally be influenced by perceptual processes earlier in the processing hierarchy. In summary, we demonstrate that behavioral oscillations generalize to situations involving highly salient stimuli, closer to everyday life. Moreover, our work adds to the literature by showing fluctuations at a high speed, which might be a consequence of both low task difficulty and the involvement of sensorimotor rhythms.

摘要

最近,许多研究揭示了在多种任务中行为表现的 4-12 Hz 波动。大多数研究都利用了接近检测阈值的刺激,并观察到相关的击中率波动,将这些波动归因于感知或注意力过程。由于 8-20 Hz 范围内的神经振荡在皮质运动区域也很突出,它们可能会导致独立于注意力能力的反应诱导能力波动。此外,不同的效应器(例如,左手与右手)可能会以交替的方式周期性地优先化,类似于对不同位置、对象或记忆模板的注意力采样。在这里,我们通过一种行为密集采样方法研究了这些问题。26 名参与者使用高度显著的刺激执行简单的视觉辨别任务。我们将每个运动反应与随后的目标之间的间隔从 330 毫秒变化到 1040 毫秒,并根据该间隔分析性能。我们的数据显示 RT 和敏感性在 12.5 和 25 Hz 之间有显著的波动,但没有左、右手反应交替优先化的证据。虽然我们的结果表明运动相关信号对性能波动有影响,但它们可能还受到处理层次结构中更早的感知过程的影响。总之,我们证明了行为波动可以推广到涉及高度显著刺激的情况,更接近日常生活。此外,我们的工作通过显示高速波动来补充文献,这可能是任务难度低和参与感觉运动节律的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6499/10078311/09443ac22516/PSYP-60-0-g001.jpg

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