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Left Dorsal Speech Stream Components and Their Contribution to Phonological Processing

机译:左背语音流成分及其对语音处理的贡献

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摘要

Models propose an auditory-motor mapping via a left-hemispheric dorsal speech-processing stream, yet its detailed contributions to speech perception and production are unclear. Using fMRI-navigated repetitive transcranial magnetic stimulation (rTMS), we virtually lesioned left dorsal stream components in healthy human subjects and probed the consequences on speech-related facilitation of articulatory motor cortex (M1) excitability, as indexed by increases in motor-evoked potential (MEP) amplitude of a lip muscle, and on speech processing performance in phonological tests. Speech-related MEP facilitation was disrupted by rTMS of the posterior superior temporal sulcus (pSTS), the sylvian parieto-temporal region (SPT), and by double-knock-out but not individual lesioning of pars opercularis of the inferior frontal gyrus (pIFG) and the dorsal premotor cortex (dPMC), and not by rTMS of the ventral speech-processing stream or an occipital control site. RTMS of the dorsal stream but not of the ventral stream or the occipital control site caused deficits specifically in the processing of fast transients of the acoustic speech signal. Performance of syllable and pseudoword repetition correlated with speech-related MEP facilitation, and this relation was abolished with rTMS of pSTS, SPT, and pIFG. Findings provide direct evidence that auditory-motor mapping in the left dorsal stream causes reliable and specific speech-related MEP facilitation in left articulatory M1. The left dorsal stream targets the articulatory M1 through pSTS and SPT constituting essential posterior input regions and parallel via frontal pathways through pIFG and dPMC. Finally, engagement of the left dorsal stream is necessary for processing of fast transients in the auditory signal.
机译:模型提出了通过左半球背侧语音处理流的听觉运动映射,但其对语音感知和产生的详细贡献尚不清楚。使用功能磁共振成像导航重复经颅磁刺激(rTMS),我们实际上损害了健康人类受试者的左背流成分,并探讨了与言语相关的关节运动皮层(M1)兴奋性兴奋性的后果,以运动诱发电位的增加为指标(MEP)唇肌的振幅,以及在语音测试中对语音处理的表现。言语相关的MEP促进受到后颞上颞沟(tSTS),侧方颞叶颞区(SPT)的rTMS的干扰,以及双下突而不是个别损伤额额回(pIFG)的单个病变)和背侧运动前皮层(dPMC),而不是通过腹侧语音处理流或枕骨控制部位的rTMS。背流的RTMS而不是腹侧流或枕骨控制位点的RTMS尤其在声学语音信号的快速瞬变处理中引起缺陷。音节和伪单词重复的表现与语音相关的MEP促进有关,而pSTS,SPT和pIFG的rTMS消除了这种关系。研究结果提供了直接的证据,即左背侧听觉运动映射在左发音M1中引起可靠且特定的言语相关MEP促进作用。左背侧流通过构成必要的后部输入区域的pSTS和SPT靶向关节M1,并通过穿过pIFG和dPMC的额叶途径平行。最后,左背流的接合对于处理听觉信号中的快速瞬变是必要的。

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