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Cathodal transcranial direct-current stimulation over right posterior parietal cortex enhances human temporal discrimination ability

机译:右后棱镜的阴极经颅直流刺激提高人类时间辨别能力

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Time perception associated with durations from 1?s to several minutes involves activity in the right posterior parietal cortex (rPPC). It is unclear whether altering the activity of the rPPC affects an individual's timing performance. Here, we investigated the human timing performance under the application of transcranial direct-current stimulation (tDCS) that altered the neural activities of the rPPC. We measured the participants' duration-discrimination threshold by administering a behavioral task during the tDCS application. The tDCS conditions consisted of anodal, cathodal, and sham conditions. The electrodes were placed over the P4 position (10-20 system) and on the left supraorbital forehead. On each task trial, the participant observed two visual stimuli and indicated which was longer. The amount of difference between the two stimulus durations was varied repeatedly throughout the trials according to the participant's responses. The correct answer rate of the trials was calculated for each amount of difference, and the minimum amount with the correct answer rate exceeding 75% was selected as the threshold. The data were analyzed by a linear mixed-effects models procedure. Nineteen volunteers participated in the experiment. We excluded three participants from the analysis: two who reported extreme sleepiness while performing the task and one who could recognize the sham condition correctly with confidence. Our analysis of the 16 participants' data showed that the average value of the thresholds observed under the cathodal condition was lower than that of the sham condition. This suggests that inhibition of the rPPC leads to an improvement in temporal discrimination performance, resulting in improved timing performance. In the present study, we found a new effect that cathodal tDCS over the rPPC enhances temporal discrimination performance. In terms of the existence of anodal/cathodal tDCS effects on human timing performance, the results were consistent with a previous study that investigated temporal reproduction performance during tDCS application. However, the results of the current study further indicated that cathodal tDCS over the rPPC increases accuracy of observed time duration rather than inducing an overestimation as a previous study reported.
机译:与持续时间相关的时间感知从1?s到几分钟内涉及右后视皮质(RPPC)的活性。目前尚不清楚改变RPPC的活动是否会影响个人的时序性能。在这里,我们在跨颅直流刺激(TDC)的应用下调查了人类时序性能,改变了RPPC的神经活动。我们通过在TDCS应用程序期间管理行为任务来衡量参与者的持续时间辨别阈值。 TDCS条件包括阳极,阴极和假条件。将电极放在P4位置(10-20个系统)上并在左侧弓形额前。在每个任务试验中,参与者观察到两个可视刺激并指出的时间更长。根据参与者的反应,在整个试验期间重复多种刺激持续时间之间的差异量。针对每种差异计算试验的正确答案率,选择了超过75%的正确答案率的最小量作为阈值。通过线性混合效应模型程序分析数据。十九志愿者参加了实验。我们从分析中排除了三位参与者:两名谁报告了极端嗜睡,同时执行任务,一个人能够正确地识别虚假条件的人。我们对16名参与者数据的分析表明,在阴极条件下观察到的阈值的平均值低于假条件的阈值。这表明抑制RPPC导致时间辨别性能的提高,导致时间性能提高。在本研究中,我们发现了一种新的效果,即阴极TDC在RPPC上提高了时间辨别性能。就阳极/阴极TDC对人类时机性能的影响而言,结果与先前的研究一致,以在TDCS应用期间研究了时间繁殖性能。然而,目前研究的结果进一步表明,在RPPC上的阴极TDCS增加了观察到的时间持续时间的准确性,而不是作为先前的研究报告的高估估计。

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