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TRNS 对时间感觉表现的研究。

A tRNS investigation of the sensory representation of time.

机构信息

Dipartimento di Psicologia Generale, Università di Padova, Padova, Italy.

École de Psychologie, Université Laval, Québec, Canada.

出版信息

Sci Rep. 2018 Jul 9;8(1):10364. doi: 10.1038/s41598-018-28673-7.

Abstract

The understanding of the mechanisms underlying the representation of temporal intervals in the range of milliseconds/seconds remains a complex issue. Different brain areas have been identified as critical in temporal processing. The activation of specific areas is depending on temporal range involved in the tasks and on the modalities used for marking time. Here, for the first time, transcranial random noise stimulation (tRNS) was applied over the right posterior parietal (P4) and right frontal (F4) cortex to investigate their role in intra- and intermodal temporal processing involving brief temporal intervals (<1 sec). Eighty University students performed a time bisection task involving standard durations lasting 300 ms (short) and 900 ms (long). Each empty interval to be judged was marked by two successive brief visual (V) or auditory (A) signals defining four conditions: VV, VA, AV or AA. Participants were assigned to one of these four conditions. Half of the participants received tRNS over P4 and half over F4. No effect of stimulation was observed on temporal variability (Weber ratio). However, participants that were stimulated over P4 overestimated temporal intervals in the random condition compared to the sham condition. In addition to showing an effect of tRNS on perceived duration rather than on temporal variability, the results of the present study confirm that the right posterior parietal cortex is involved in the processing of time intervals and extend this finding to several sensory modality conditions.

摘要

理解毫秒/秒范围内时间间隔表示的机制仍然是一个复杂的问题。已经确定了不同的大脑区域在时间处理中至关重要。特定区域的激活取决于任务中涉及的时间范围以及用于标记时间的模式。在这里,首次将经颅随机噪声刺激(tRNS)施加于右顶后(P4)和右额(F4)皮质,以研究它们在涉及短暂时间间隔(<1 秒)的内模态和外模态时间处理中的作用。80 名大学生执行了一项时间二分任务,涉及持续 300 毫秒(短)和 900 毫秒(长)的标准持续时间。要判断的每个空间隔都由两个连续的短视觉(V)或听觉(A)信号标记,定义了四种条件:VV、VA、AV 或 AA。参与者被分配到这四种条件之一。一半的参与者接受 P4 上的 tRNS,另一半接受 F4 上的 tRNS。刺激对时间变化(韦伯比)没有影响。然而,与假刺激相比,接受 P4 刺激的参与者在随机条件下高估了时间间隔。除了显示 tRNS 对感知时间而不是时间变化的影响外,本研究的结果还证实了右顶后皮质参与了时间间隔的处理,并将这一发现扩展到了几种感觉模态条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7576/6037735/4e3d65588895/41598_2018_28673_Fig1_HTML.jpg

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