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儿童时期受限的语言接触会影响选择性语言区域的成人大脑结构。

Restricted language access during childhood affects adult brain structure in selective language regions.

机构信息

Department of Linguistics, University of Washington, Seattle, WA 98195.

Department of Linguistics, University of California San Diego, San Diego, CA 92093.

出版信息

Proc Natl Acad Sci U S A. 2023 Feb 14;120(7):e2215423120. doi: 10.1073/pnas.2215423120. Epub 2023 Feb 6.

Abstract

Due to the ubiquitous nature of language in the environment of infants, how it affects the anatomical structure of the brain language system over the lifespan is not well understood. In this study, we investigated the effects of early language experience on the adult brain by examining anatomical features of individuals born deaf with typical or restricted language experience in early childhood. Twenty-two deaf adults whose primary language was American Sign Language and were first immersed in it at ages ranging from birth to 14 y participated. The control group was 21 hearing non-signers. We acquired T1-weighted magnetic resonance images and used FreeSurfer [B. Fischl,  , 774-781(2012)] to reconstruct the brain surface. Using an a priori regions of interest (ROI) approach, we identified 17 language and 19 somatomotor ROIs in each hemisphere from the Human Connectome Project parcellation map [M. F. Glasser ,  , 171-178 (2016)]. Restricted language experience in early childhood was associated with negative changes in adjusted grey matter volume and/or cortical thickness in bilateral fronto-temporal regions. No evidence of anatomical differences was observed in any of these regions when deaf signers with infant sign language experience were compared with hearing speakers with infant spoken language experience, showing that the effects of early language experience on the brain language system are supramodal.

摘要

由于语言在婴儿环境中无处不在,因此早期语言经验如何影响大脑语言系统的解剖结构尚不清楚。在这项研究中,我们通过检查在童年早期具有典型或受限语言经验的聋人个体的解剖特征,研究了早期语言经验对成年大脑的影响。22 名聋人成年人的主要语言是美国手语,他们从出生到 14 岁不等开始沉浸其中。对照组为 21 名听力正常的非手语者。我们获取了 T1 加权磁共振图像,并使用 FreeSurfer [B. Fischl,774-781(2012)]重建大脑表面。使用基于先验区域的方法,我们从人类连接组计划分区图中确定了每个半球的 17 个语言和 19 个躯体运动区域 [M. F. Glasser,171-178(2016)]。在童年早期经历受限的语言经验与双侧额颞区域的调整后灰质体积和/或皮质厚度的负变化相关。当具有婴儿手语经验的聋人签名者与具有婴儿口语经验的听力说话者进行比较时,在这些区域中没有观察到任何解剖差异,表明早期语言经验对大脑语言系统的影响是超模态的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd18/9963327/88e97d23e87f/pnas.2215423120fig01.jpg

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