Winkelmann Tobias, Thayer Julian F, Pohlack Sebastian, Nees Frauke, Grimm Oliver, Flor Herta
Department of Cognitive and Clinical Neuroscience, Central Institute of Mental Health, Medical Faculty Mannheim, Heidelberg University, Square J5, 68159, Mannheim, Germany.
Department of Psychology, Ohio State University, Columbia, OH, USA.
Brain Struct Funct. 2017 Mar;222(2):1061-1068. doi: 10.1007/s00429-016-1185-1. Epub 2016 Jan 22.
The high frequency component of heart rate variability (HRV) has reliably been shown to serve as an index of autonomic inhibitory control and is increasingly considered as a biomarker of adaptability and health. While several functional neuroimaging studies identified associations between regional cerebral blood flow and HRV, studies on structural brain correlates of HRV are scarce. We investigated whether interindividual differences in HRV are related to brain morphology in healthy humans. Thirty participants underwent HRV recording at rest subsequent to structural magnetic resonance imaging. Cortical reconstruction and subcortical volumetry were performed with the Freesurfer image analysis suite. The amount of resting HRV was positively correlated with the cortical thickness of an area within the right anterior midcingulate cortex (aMCC). Consistent with existing studies implicating forebrain regions in cardiac regulation, our findings show that the thickness of the right aMCC is associated with the degree of parasympathetic regulation of heart rate. Evidence for the neural correlates of interindividual differences in HRV may complement our understanding of the mechanisms underlying the association between HRV and self-regulatory capacity.
心率变异性(HRV)的高频成分已被可靠地证明可作为自主抑制控制的指标,并越来越被视为适应性和健康的生物标志物。虽然一些功能神经影像学研究确定了局部脑血流量与HRV之间的关联,但关于HRV的脑结构相关性的研究却很少。我们调查了健康人群中HRV的个体差异是否与脑形态有关。30名参与者在进行结构磁共振成像后静息状态下记录HRV。使用Freesurfer图像分析套件进行皮质重建和皮质下体积测量。静息HRV的量与右侧前扣带回中部皮质(aMCC)内一个区域的皮质厚度呈正相关。与现有研究表明前脑区域参与心脏调节一致,我们的研究结果表明,右侧aMCC的厚度与心率的副交感神经调节程度有关。HRV个体差异的神经相关性证据可能会补充我们对HRV与自我调节能力之间关联的潜在机制的理解。