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听觉和视觉感觉运动时间重新校准中不同的感觉皮层参与:来自经颅直流电刺激(tDCS)的证据。

Differential sensory cortical involvement in auditory and visual sensorimotor temporal recalibration: Evidence from transcranial direct current stimulation (tDCS).

作者信息

Aytemür Ali, Almeida Nathalia, Lee Kwang-Hyuk

机构信息

Departments of Neuroscience and Psychology, University of Sheffield, Sheffield, UK.

Departments of Neuroscience and Psychology, University of Sheffield, Sheffield, UK.

出版信息

Neuropsychologia. 2017 Feb;96:122-128. doi: 10.1016/j.neuropsychologia.2017.01.012. Epub 2017 Jan 12.

Abstract

Adaptation to delayed sensory feedback following an action produces a subjective time compression between the action and the feedback (temporal recalibration effect, TRE). TRE is important for sensory delay compensation to maintain a relationship between causally related events. It is unclear whether TRE is a sensory modality-specific phenomenon. In 3 experiments employing a sensorimotor synchronization task, we investigated this question using cathodal transcranial direct-current stimulation (tDCS). We found that cathodal tDCS over the visual cortex, and to a lesser extent over the auditory cortex, produced decreased visual TRE. However, both auditory and visual cortex tDCS did not produce any measurable effects on auditory TRE. Our study revealed different nature of TRE in auditory and visual domains. Visual-motor TRE, which is more variable than auditory TRE, is a sensory modality-specific phenomenon, modulated by the auditory cortex. The robustness of auditory-motor TRE, unaffected by tDCS, suggests the dominance of the auditory system in temporal processing, by providing a frame of reference in the realignment of sensorimotor timing signals.

摘要

对动作之后延迟的感觉反馈进行适应会在动作与反馈之间产生主观时间压缩(时间重新校准效应,TRE)。TRE对于感觉延迟补偿以维持因果相关事件之间的关系很重要。目前尚不清楚TRE是否是一种特定感觉模态的现象。在3个采用感觉运动同步任务的实验中,我们使用阴极经颅直流电刺激(tDCS)来研究这个问题。我们发现,视觉皮层上的阴极tDCS,以及在较小程度上听觉皮层上的阴极tDCS,会使视觉TRE降低。然而,听觉和视觉皮层的tDCS对听觉TRE均未产生任何可测量的影响。我们的研究揭示了听觉和视觉领域中TRE的不同性质。视觉运动TRE比听觉TRE更具变异性,是一种特定感觉模态的现象,受听觉皮层调节。不受tDCS影响的听觉运动TRE的稳健性表明,听觉系统在时间处理中占主导地位,通过在感觉运动定时信号重新校准中提供一个参考框架。

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