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心率变异性与中枢自主神经网络纹状体和边缘结构中的灰质体积相关。

Heart rate variability associated with grey matter volumes in striatal and limbic structures of the central autonomic network.

作者信息

Wei Luqing, Chen Hong, Wu Guo-Rong

机构信息

Key laboratory of Cognition and Personality, Faculty of Psychology, Southwest University, Chongqing 400715, PR China.

Key laboratory of Cognition and Personality, Faculty of Psychology, Southwest University, Chongqing 400715, PR China.

出版信息

Brain Res. 2018 Feb 15;1681:14-20. doi: 10.1016/j.brainres.2017.12.024. Epub 2017 Dec 24.

Abstract

Previous neuroimaging studies have highlighted the functional neural correlates of cardiac vagal activity, providing convergent evidence that the cardiac vagal function is controlled by a number of brain regions in the central autonomic network (CAN). However, it remains largely unknown whether the underlying anatomical basis of those identified regions are associated with individual difference in vagal function. To address the above issue, this study used a large sample of healthy subjects (n = 185) and voxel-based morphometry (VBM) analysis to verify brain morphometry associated with vagal control and the associations varied as a function of gender and age. Our results showed that high frequency component of heart rate variability (HF-HRV) was negatively correlated with grey matter volumes in the right putamen, caudate, amygdala, insula, superior temporal gyrus, temporal pole, and parahippocampal gyrus, demonstrating brain morphological variation in the right-sided striatal and limbic structures of the CAN associated with individual difference in cardiac vagal function. Additionally, gender and age effects on the relationship between cardiac vagal control and brain morphometry were not significant in the current dataset. These findings underscore the importance of striatal and limbic structures in parasympathetic control, and shed light on the underlying anatomical substrates of cardiac vagal activity.

摘要

先前的神经影像学研究突出了心脏迷走神经活动的功能性神经关联,提供了趋同证据,表明心脏迷走神经功能受中枢自主神经网络(CAN)中多个脑区的控制。然而,这些已确定区域的潜在解剖学基础是否与迷走神经功能的个体差异相关,在很大程度上仍不清楚。为了解决上述问题,本研究使用了大量健康受试者样本(n = 185),并采用基于体素的形态学测量(VBM)分析来验证与迷走神经控制相关的脑形态学,且这种关联会因性别和年龄而有所不同。我们的结果表明,心率变异性的高频成分(HF-HRV)与右侧壳核、尾状核、杏仁核、岛叶、颞上回、颞极和海马旁回的灰质体积呈负相关,这表明CAN右侧纹状体和边缘结构的脑形态学变化与心脏迷走神经功能的个体差异相关。此外,在当前数据集中,性别和年龄对心脏迷走神经控制与脑形态学之间关系的影响并不显著。这些发现强调了纹状体和边缘结构在副交感神经控制中的重要性,并揭示了心脏迷走神经活动的潜在解剖学基础。

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