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Human temporal lobe activation by speech and nonspeech sounds.

机译:通过语音和非语音声音激活人类颞叶。

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Functional organization of the lateral temporal cortex in humans is not well understood. We recorded blood oxygenation signals from the temporal lobes of normal volunteers using functional magnetic resonance imaging during stimulation with unstructured noise, frequency-modulated (FM) tones, reversed speech, pseudowords and words. For all conditions, subjects performed a material-nonspecific detection response when a train of stimuli began or ceased. Dorsal areas surrounding Heschl's gyrus bilaterally, particularly the planum temporale and dorsolateral superior temporal gyrus, were more strongly activated by FM tones than by noise, suggesting a role in processing simple temporally encoded auditory information. Distinct from these dorsolateral areas, regions centered in the superior temporal sulcus bilaterally were more activated by speech stimuli than by FM tones. Identical results were obtained in this region using words, pseudowords and reversed speech, suggesting that the speech-tones activation difference is due to acoustic rather than linguistic factors. In contrast, previous comparisons between word and nonword speech sounds showed left-lateralized activation differences in more ventral temporal and temporoparietal regions that are likely involved in processing lexical-semantic or syntactic information associated with words. The results indicate functional subdivision of the human lateral temporal cortex and provide a preliminary framework for understanding the cortical processing of speech sounds.
机译:人们对颞叶外侧皮质的功能组织了解甚少。我们使用功能性磁共振成像在正常的志愿者颞叶上记录了血液氧合信号,这些刺激是在非结构性噪声,调频(FM)音调,反向语音,伪单词和单词的刺激过程中进行的。在所有情况下,当一系列刺激开始或停止时,受试者都会执行非物质特异性检测反应。 FM音比噪声更强烈地激活了双边围绕赫氏回旋的背侧区域,尤其是颞侧颞侧和背外侧颞侧回旋,提示在处理简单的临时编码听觉信息中发挥了作用。与这些背外侧区不同,两侧以颞上沟为中心的区域比语音调音更受语音刺激的激活。使用单词,伪单词和反向语音在该区域获得了相同的结果,这表明语音音调激活差异是由于声学而非语言因素引起的。相比之下,以前的单词和非单词语音之间的比较表明,左侧腹侧的颞侧和颞顶侧的激活差异可能与处理与单词相关的词汇语义或句法信息有关。结果表明人类外侧颞皮质的功能细分,并为理解语音的皮层处理提供了一个初步的框架。

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