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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Facilitation of inferior frontal cortex by transcranial direct current stimulation induces perceptual learning of severely degraded speech
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Facilitation of inferior frontal cortex by transcranial direct current stimulation induces perceptual learning of severely degraded speech

机译:经颅直流电刺激促进下额叶皮层诱导严重退化语音的知觉学习

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摘要

Perceptual learning requires the generalization of categorical perceptual sensitivity from trained to untrained items. For degraded speech, perceptual learning modulates activation in a left-lateralized network, including inferior frontal gyrus (IFG) and inferior parietal cortex (IPC). Here we demonstrate that facilitatory anodal transcranial direct current stimulation (tDCSanodal) can induce perceptual learning in healthy humans. In a sham-controlled, parallel design study, 36 volunteers were allocated to the three following intervention groups: tDCSanodal over left IFG, IPC, or sham. Participants decided on the match between an acoustically degraded and an undegraded written word by forced same-different choice. Acoustic degradation varied in four noise-vocoding levels (2, 3, 4, and 6 bands). Participants were trained to discriminate between minimal (/Tisch/-FISCH) and identical word pairs (/Tisch/-TISCH) over a period of 3 d, and tDCSanodal was applied during the first 20 min of training. Perceptual sensitivity (d′) for trained word pairs, and an equal number of untrained word pairs, was tested before and after training. Increases in d′ indicate perceptual learning for untrained word pairs, and a combination of item-specific and perceptual learning for trained word pairs. Most notably for the lowest intelligibility level, perceptual learning occurred only when tDCSanodal was applied over left IFG. For trained pairs, improved d′ was seen on all intelligibility levels regardless of tDCS intervention. Over left IPC, tDCSanodal did not modulate learning but instead introduced a response bias during training. Volunteers were more likely to respond "same," potentially indicating enhanced perceptual fusion of degraded auditory with undegraded written input. Our results supply first evidence that neural facilitation of higher-order language areas can induce perceptual learning of severely degraded speech.
机译:知觉学习要求归纳出从训练到未训练项目的绝对知觉敏感性。对于退化的语音,知觉学习会调节包括左额下回(IFG)和顶下皮质(IPC)在内的左侧网络中的激活。在这里,我们证明了促进阳极经颅直流电刺激(tDCSanodal)可以诱导健康人的知觉学习。在虚假对照的并行设计研究中,将36名志愿者分配到以下三个干预组中:左IFG,IPC或虚假的tDCSanodal。参加者通过强制相同-不同的选择来决定听觉上退化的单词和未退化的书面单词之间的匹配。声学衰减在四个噪声声码级(2、3、4和6频段)中有所不同。培训参与者以在3 d的时间内区分最小(/ Tisch / -FISCH)和相同单词对(/ Tisch / -TISCH),并在训练的前20分钟内应用tDCSanodal。在训练之前和之后,测试了训练过的单词对和相等数量的未训练过的单词对的感知灵敏度(d')。 d'的增加表示对未训练词对的知觉学习,以及对受训练词对的项特定和知觉学习的组合。最明显的是,对于最低的可懂度水平,只有在将tDCSanodal应用于左IFG时才发生知觉学习。对于受过训练的配对,无论tDCS干预如何,在所有可懂度水平上都可以看到d'有所改善。在左侧的IPC上,tDCSanodal不会调节学习,而是在训练过程中引入了响应偏差。志愿者更有可能做出“相同”的反应,这可能表明,听觉退化与未退化的书面输入之间的知觉融合增强了。我们的结果提供了第一个证据,即高级语言区域的神经促进作用可以诱导严重退化语音的知觉学习。

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