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首页> 外文期刊>Frontiers in Psychology >Response Bias Modulates the Speech Motor System during Syllable Discrimination
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Response Bias Modulates the Speech Motor System during Syllable Discrimination

机译:音节辨别过程中,响应偏差可调节语音运动系统

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Recent evidence suggests that the speech motor system may play a significant role in speech perception. Repetitive transcranial magnetic stimulation (TMS) applied to a speech region of premotor cortex impaired syllable identification, while stimulation of motor areas for different articulators selectively facilitated identification of phonemes relying on those articulators. However, in these experiments performance was not corrected for response bias. It is not currently known how response bias modulates activity in these networks. The present functional magnetic resonance imaging experiment was designed to produce specific, measureable changes in response bias in a speech perception task. Minimal consonant-vowel stimulus pairs were presented between volume acquisitions for same-different discrimination. Speech stimuli were embedded in Gaussian noise at the psychophysically determined threshold level. We manipulated bias by changing the ratio of same-to-different trials: 1:3, 1:2, 1:1, 2:1, 3:1. Ratios were blocked by run and subjects were cued to the upcoming ratio at the beginning of each run. The stimuli were physically identical across runs. Response bias (criterion, C) was measured in individual subjects for each ratio condition. Group mean bias varied in the expected direction. We predicted that activation in frontal but not temporal brain regions would co-vary with bias. Group-level regression of bias scores on percent signal change revealed a fronto-parietal network of motor and sensory-motor brain regions that were sensitive to changes in response bias. We identified several pre- and post-central clusters in the left hemisphere that overlap well with TMS targets from the aforementioned studies. Importantly, activity in these regions covaried with response bias even while the perceptual targets remained constant. Thus, previous results suggesting that speech motor cortex participates directly in the perceptual analysis of speech should be called into question.
机译:最近的证据表明,语音运动系统可能在语音感知中起重要作用。重复的经颅磁刺激(TMS)应用于运动前皮层的语音区域会损害音节识别,而针对不同发音器的运动区域刺激会选择性地促进依赖于这些发音器的音素识别。但是,在这些实验中,未针对响应偏差校正性能。目前尚不知道响应偏差如何调节这些网络中的活动。本功能磁共振成像实验被设计为在语音感知任务中产生特定的,可测量的响应偏差变化。音量获取之间呈现最小的辅音元音刺激对,以实现相同的区别。在心理上确定的阈值水平,语音刺激被嵌入高斯噪声中。我们通过更改相同试验与不同试验的比率(1:3、1:2、1:1、2:1、3:1)来控制偏差。比率被跑步限制,并且在每次奔跑开始时将受试者提示为即将到来的比率。在整个运行过程中,刺激在物理上是相同的。对于每种比率条件,在个体受试者中测量反应偏差(标准,C)。组平均偏差在预期的方向上变化。我们预测,额叶而不是颞叶大脑区域的激活会随着偏见而变化。偏差分数在信号变化百分比上的组水平回归揭示了运动和感觉运动脑区域的额顶网络,它们对响应偏差的变化敏感。我们确定了左半球的几个中央前和中央后星团,它们与上述研究中的TMS目标很好地重叠。重要的是,即使在感知目标保持不变的情况下,这些区域中的活动也与响应偏差共变。因此,先前的暗示语音运动皮层直接参与语音感知分析的结果应受到质疑。

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