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极性特异性经颅直流电刺激会干扰听觉音高学习。

Polarity-specific transcranial direct current stimulation disrupts auditory pitch learning.

作者信息

Matsushita Reiko, Andoh Jamila, Zatorre Robert J

机构信息

Cognitive Neuroscience Unit, Montreal Neurological Institute, McGill University Montreal, QC, Canada ; International Laboratory for Brain, Music, and Sound Research Montreal, QC, Canada ; Centre for Research on Brain, Language, and Music Montreal, QC, Canada.

Department of Cognitive and Clinical Neuroscience, Central Institute of Mental Health Mannheim Mannheim, Germany.

出版信息

Front Neurosci. 2015 May 18;9:174. doi: 10.3389/fnins.2015.00174. eCollection 2015.

Abstract

Transcranial direct current stimulation (tDCS) is attracting increasing interest because of its potential for therapeutic use. While its effects have been investigated mainly with motor and visual tasks, less is known in the auditory domain. Past tDCS studies with auditory tasks demonstrated various behavioral outcomes, possibly due to differences in stimulation parameters, task-induced brain activity, or task measurements used in each study. Further research, using well-validated tasks is therefore required for clarification of behavioral effects of tDCS on the auditory system. Here, we took advantage of findings from a prior functional magnetic resonance imaging study, which demonstrated that the right auditory cortex is modulated during fine-grained pitch learning of microtonal melodic patterns. Targeting the right auditory cortex with tDCS using this same task thus allowed us to test the hypothesis that this region is causally involved in pitch learning. Participants in the current study were trained for 3 days while we measured pitch discrimination thresholds using microtonal melodies on each day using a psychophysical staircase procedure. We administered anodal, cathodal, or sham tDCS to three groups of participants over the right auditory cortex on the second day of training during performance of the task. Both the sham and the cathodal groups showed the expected significant learning effect (decreased pitch threshold) over the 3 days of training; in contrast we observed a blocking effect of anodal tDCS on auditory pitch learning, such that this group showed no significant change in thresholds over the 3 days. The results support a causal role for the right auditory cortex in pitch discrimination learning.

摘要

经颅直流电刺激(tDCS)因其潜在的治疗用途而越来越受到关注。虽然其效果主要在运动和视觉任务中进行了研究,但在听觉领域的了解较少。过去关于听觉任务的tDCS研究显示了各种行为结果,这可能是由于每项研究中刺激参数、任务诱发的大脑活动或任务测量方法的差异所致。因此,需要进一步使用经过充分验证的任务进行研究,以阐明tDCS对听觉系统的行为影响。在此,我们利用了先前一项功能磁共振成像研究的结果,该研究表明,在微音旋律模式的细粒度音高学习过程中,右听觉皮层会受到调制。因此,使用相同任务对右听觉皮层进行tDCS刺激,使我们能够检验该区域在音高学习中起因果作用的假设。本研究的参与者接受了3天的训练,在此期间,我们每天使用心理物理学阶梯程序,通过微音旋律测量音高辨别阈值。在训练的第二天,我们在任务执行过程中,对三组参与者的右听觉皮层施加阳极、阴极或假tDCS。假刺激组和阴极刺激组在3天的训练中均显示出预期的显著学习效果(音高阈值降低);相比之下,我们观察到阳极tDCS对听觉音高学习有阻断作用,即该组在3天内阈值没有显著变化。结果支持右听觉皮层在音高辨别学习中起因果作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1abe/4434966/da02b23cb394/fnins-09-00174-g0001.jpg

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