首页> 美国卫生研究院文献>The Journal of Neuroscience >Signed Words in the Congenitally Deaf Evoke Typical Late Lexicosemantic Responses with No Early Visual Responses in Left Superior Temporal Cortex
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Signed Words in the Congenitally Deaf Evoke Typical Late Lexicosemantic Responses with No Early Visual Responses in Left Superior Temporal Cortex

机译:先天性聋的签字词在左上颞叶皮层中引起典型的晚期词汇躁狂反应而没有早期视觉反应

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摘要

Congenitally deaf individuals receive little or no auditory input, and when raised by deaf parents, they acquire sign as their native and primary language. We asked two questions regarding how the deaf brain in humans adapts to sensory deprivation: (1) is meaning extracted and integrated from signs using the same classical left hemisphere frontotemporal network used for speech in hearing individuals, and (2) in deafness, is superior temporal cortex encompassing primary and secondary auditory regions reorganized to receive and process visual sensory information at short latencies? Using MEG constrained by individual cortical anatomy obtained with MRI, we examined an early time window associated with sensory processing and a late time window associated with lexicosemantic integration. We found that sign in deaf individuals and speech in hearing individuals activate a highly similar left frontotemporal network (including superior temporal regions surrounding auditory cortex) during lexicosemantic processing, but only speech in hearing individuals activates auditory regions during sensory processing. Thus, neural systems dedicated to processing high-level linguistic information are used for processing language regardless of modality or hearing status, and we do not find evidence for rewiring of afferent connections from visual systems to auditory cortex.
机译:先天性聋人很少或几乎没有听觉输入,并且在聋人父母抚养下,他们获得手语作为其母语和主要语言。我们问了两个有关聋人大脑如何适应感觉剥夺的问题:(1)是使用与听觉个体相同的经典左半球额颞网从体征中提取和整合的含义;(2)在耳聋中表现更好重新组织包含初级和次级听觉区域的颞皮质,以便在短等待时间内接收和处理视觉感觉信息?使用由MRI获得的单个皮质解剖结构约束的MEG,我们检查了与感觉处理相关的早期时间窗和与词汇语义整合相关的晚期时间窗。我们发现失语个体和听力个体的语音在词汇语义处理过程中会激活高度相似的左额颞叶网络(包括围绕听觉皮层的颞上区域),但只有听力个体的语音会在感觉处理过程中激活听觉区域。因此,专用于处理高级语言信息的神经系统不考虑模态或听力状态,都用于处理语言,并且我们找不到从视觉系统到听觉皮层的传入连接重新布线的证据。

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