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Cooperative cortical network for categorical processing of Chinese lexical tone

机译:合作皮层网络对汉语词汇声调进行分类处理

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摘要

In tonal languages such as Chinese, lexical tone with varying pitch contours serves as a key feature to provide contrast in word meaning. Similar to phoneme processing, behavioral studies have suggested that Chinese tone is categorically perceived. However, its underlying neural mechanism remains poorly understood. By conducting cortical surface recordings in surgical patients, we revealed a cooperative cortical network along with its dynamics responsible for this categorical perception. Based on an oddball paradigm, we found amplified neural dissimilarity between cross-category tone pairs, rather than between within-category tone pairs, over cortical sites covering both the ventral and dorsal streams of speech processing. The bilateral superior temporal gyrus (STG) and the middle temporal gyrus (MTG) exhibited increased response latencies and enlarged neural dissimilarity, suggesting a ventral hierarchy that gradually differentiates the acoustic features of lexical tones. In addition, the bilateral motor cortices were also found to be involved in categorical processing, interacting with both the STG and the MTG and exhibiting a response latency in between. Moreover, the motor cortex received enhanced Granger causal influence from the semantic hub, the anterior temporal lobe, in the right hemisphere. These unique data suggest that there exists a distributed cooperative cortical network supporting the categorical processing of lexical tone in tonal language speakers, not only encompassing a bilateral temporal hierarchy that is shared by categorical processing of phonemes but also involving intensive speech–motor interactions over the right hemisphere, which might be the unique machinery responsible for the reliable discrimination of tone identities.
机译:在诸如中国这样的声调语言中,具有不同音高轮廓的词汇语调是提供词义对比的关键特征。与音素处理类似,行为研究表明,中国语是绝对感知的。然而,其潜在的神经机制仍知之甚少。通过在外科手术患者中进行皮质表面记录,我们揭示了一个合作的皮质网络及其负责这种分类感知的动力学。基于奇异球范式,我们发现在覆盖语音处理的腹侧和背侧流的皮质位点上,跨类别音调对之间(而不是类别内音调对之间)的神经差异得到了放大。双边上颞回(STG)和中颞回(MTG)表现出增加的反应潜伏期和扩大的神经异种,提示腹侧层次逐渐区分词汇音调的声学特征。另外,还发现双侧运动皮层参与了分类处理,与STG和MTG都相互作用并且在它们之间表现出反应潜伏期。此外,运动皮层受到右半球语义中枢,颞颞叶的增强的格兰杰因果影响。这些独特的数据表明,存在一个支持语音语言者对词汇语调进行分类处理的分布式协作皮层网络,不仅涵盖了双边时间层次结构,而且这些语音层次结构也由音素的分类处理所共享,而且还涉及右侧的密集语音-运动交互作用。半球,这可能是负责可靠识别音调身份的独特机制。

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