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Right-Hemisphere Auditory Cortex Is Dominant for Coding Syllable Patterns in Speech

机译:右半球听觉皮层占主导地位的语音语音编码模式。

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摘要

Cortical analysis of speech has long been considered the domain of left-hemisphere auditory areas. A recent hypothesis poses that cortical processing of acoustic signals, including speech, is mediated bilaterally based on the component rates inherent to the speech signal. In support of this hypothesis, previous studies have shown that slow temporal features (3–5 Hz) in nonspeech acoustic signals lateralize to right-hemisphere auditory areas, whereas rapid temporal features (20–50 Hz) lateralize to the left hemisphere. These results were obtained using nonspeech stimuli, and it is not known whether right-hemisphere auditory cortex is dominant for coding the slow temporal features in speech known as the speech envelope. Here we show strong right-hemisphere dominance for coding the speech envelope, which represents syllable patterns and is critical for normal speech perception. Right-hemisphere auditory cortex was 100% more accurate in following contours of the speech envelope and had a 33% larger response magnitude while following the envelope compared with the left hemisphere. Asymmetries were evident regardless of the ear of stimulation despite dominance of contralateral connections in ascending auditory pathways. Results provide evidence that the right hemisphere plays a specific and important role in speech processing and support the hypothesis that acoustic processing of speech involves the decomposition of the signal into constituent temporal features by rate-specialized neurons in right- and left-hemisphere auditory cortex.
机译:语音的皮层分析长期以来一直被认为是左半球听觉区域的领域。最近的一种假说提出,基于语音信号固有的分量速率,双向介导包括语音在内的声音信号的皮层处理。为支持这一假设,先前的研究表明,非语音声学信号中的慢时态特征(3-5 Hz)偏向右半球听觉区域,而快时态特征(20-50 Hz)偏于左半球。这些结果是使用非语音刺激获得的,尚不清楚右半球听觉皮层是否在编码语音中被称为语音包络的慢时特征中占主导地位。在这里,我们显示出对语音包络进行编码的强大的右半球优势,这代表了音节模式,对于正常的语音感知至关重要。与左半球相比,右半球听觉皮层在遵循语音包络轮廓时精度更高100%,并且在遵循包络时响应幅度提高了33%。尽管在上升的听觉通路中对侧连接占主导地位,但无论刺激的耳朵如何,均存在不对称现象。结果提供了证据,证明右半球在语音处理中起着特定而重要的作用,并支持了语音的声学处理涉及信号在右半球和左半球听觉皮层中被特定速率的神经元分解为时间特征的假设。

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