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口吃成人在言语过程中β振荡下的白质微观结构差异。

White matter microstructural differences underlying beta oscillations during speech in adults who stutter.

机构信息

Department of Speech-Language Pathology, University of Toronto, 500 University Street, Toronto, Ontario M5G 1V7, Canada; Program in Neurosciences and Mental Health, The Hospital for Sick Children Research Institute, Toronto, Ontario M5G 0A4, Canada.

Department of Speech-Language Pathology, University of Toronto, 500 University Street, Toronto, Ontario M5G 1V7, Canada.

出版信息

Brain Lang. 2021 Apr;215:104921. doi: 10.1016/j.bandl.2021.104921. Epub 2021 Feb 4.

Abstract

The basal ganglia-thalamocortical (BGTC) loop may underlie speech deficits in developmental stuttering. In this study, we investigated the relationship between abnormal cortical neural oscillations and structural integrity alterations in adults who stutter (AWS) using a novel magnetoencephalography (MEG) guided tractography approach. Beta oscillations were analyzed using sensorimotor speech MEG, and white matter pathways were examined using tract-based spatial statistics (TBSS) and probabilistic tractography in 11 AWS and 11 fluent speakers. TBSS analysis revealed overlap between cortical regions of increased beta suppression localized to the mouth motor area and a reduced fractional anisotropy (FA) in the AWS group. MEG-guided tractography showed reduced FA within the BGTC loop from left putamen to subject-specific MEG peak. This is the first study to provide evidence that structural abnormalities may be associated with functional deficits in stuttering and reflect a network deficit within the BGTC loop that includes areas of the left ventral premotor cortex and putamen.

摘要

基底节-丘脑-皮质(BGTC)回路可能是发育性口吃言语缺陷的基础。在这项研究中,我们使用一种新的脑磁图(MEG)引导的轨迹追踪方法,研究了口吃成年人(AWS)异常皮质神经振荡与结构完整性改变之间的关系。使用感觉运动言语 MEG 分析β振荡,使用基于束的空间统计学(TBSS)和概率轨迹追踪检查白质通路,共纳入 11 名 AWS 患者和 11 名流利说话者。TBSS 分析显示,AWS 组口腔运动区局部β抑制增加的皮质区域与 FA 降低存在重叠。MEG 引导的轨迹追踪显示,左侧壳核至个体特异性 MEG 峰值的 BGTC 环内 FA 降低。这是第一项提供证据表明结构异常可能与口吃的功能缺陷有关,并反映了包括左腹侧运动前皮质和壳核在内的 BGTC 回路网络缺陷的研究。

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