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脑血流与体素镜像同位连接之间的耦合改变影响中风诱发的言语理解缺陷。

Altered Coupling Between Cerebral Blood Flow and Voxel-Mirrored Homotopic Connectivity Affects Stroke-Induced Speech Comprehension Deficits.

作者信息

Zhang Jie, Shang Desheng, Ye Jing, Ling Yi, Zhong Shuchang, Zhang Shuangshuang, Zhang Wei, Zhang Li, Yu Yamei, He Fangping, Ye Xiangming, Luo Benyan

机构信息

Center for Rehabilitation Medicine, Rehabilitation & Sports Medicine Research Institute of Zhejiang Province, Department of Rehabilitation Medicine, Zhejiang Provincial People's Hospital (Affiliated People's Hospital, Hangzhou Medical College), Hangzhou, China.

Department of Neurology, Brain Medical Center, The First Affiliated Hospital of Zhejiang University School of Medicine, Hangzhou, China.

出版信息

Front Aging Neurosci. 2022 Jun 23;14:922154. doi: 10.3389/fnagi.2022.922154. eCollection 2022.

Abstract

The neurophysiological basis of the association between interhemispheric connectivity and speech comprehension processing remains unclear. This prospective study examined regional cerebral blood flow (CBF), homotopic functional connectivity, and neurovascular coupling, and their effects on comprehension performance in post-stroke aphasia. Multimodal imaging data (including data from functional magnetic resonance imaging and arterial spin labeling imaging) of 19 patients with post-stroke aphasia and 22 healthy volunteers were collected. CBF, voxel-mirrored homotopic connectivity (VMHC), CBF-VMHC correlation, and CBF/VMHC ratio maps were calculated. Between-group comparisons were performed to identify neurovascular changes, and correlation analyses were conducted to examine their relationship with the comprehension domain. The correlation between CBF and VMHC of the global gray matter decreased in patients with post-stroke aphasia. The total speech comprehension score was significantly associated with VMHC in the peri-Wernicke area [posterior superior temporal sulcus (pSTS): = 0.748, = 0.001; rostroventral area 39: = 0.641, = 0.008]. The decreased CBF/VMHC ratio was also mainly associated with the peri-Wernicke temporoparietal areas. Additionally, a negative relationship between the mean CBF/VMHC ratio of the cingulate gyrus subregion and sentence-level comprehension was observed ( = -0.658, = 0.006). These findings indicate the contribution of peri-Wernicke homotopic functional connectivity to speech comprehension and reveal that abnormal neurovascular coupling of the cingulate gyrus subregion may underly comprehension deficits in patients with post-stroke aphasia.

摘要

半球间连接与言语理解加工之间关联的神经生理基础仍不清楚。这项前瞻性研究检查了局部脑血流量(CBF)、同位功能连接和神经血管耦合,以及它们对中风后失语症患者理解能力的影响。收集了19例中风后失语症患者和22名健康志愿者的多模态成像数据(包括功能磁共振成像和动脉自旋标记成像数据)。计算了CBF、体素镜像同位连接(VMHC)以及CBF-VMHC相关性和CBF/VMHC比率图。进行组间比较以确定神经血管变化,并进行相关性分析以检查它们与理解领域的关系。中风后失语症患者全脑灰质的CBF与VMHC之间的相关性降低。言语理解总分与韦尼克区周围的VMHC显著相关[后颞上沟(pSTS):r = 0.748,P = 0.001;39区腹侧前部:r = 0.641,P = 0.008]。CBF/VMHC比率降低也主要与韦尼克区周围的颞顶叶区域有关。此外,观察到扣带回亚区域的平均CBF/VMHC比率与句子水平理解之间存在负相关(r = -0.658,P = 0.006)。这些发现表明韦尼克区周围同位功能连接对言语理解有贡献,并揭示扣带回亚区域异常的神经血管耦合可能是中风后失语症患者理解缺陷的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee5b/9260239/21b22038c017/fnagi-14-922154-g001.jpg

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