Bioengineering and Robotics Research Centre 'E. Piaggio', University of Pisa, Pisa, Italy.
Deparment of Information Engineering, University of Pisa, Pisa, Italy.
J R Soc Interface. 2020 Mar;17(164):20190878. doi: 10.1098/rsif.2019.0878. Epub 2020 Mar 18.
This study aims to uncover brain areas that are functionally linked to complex cardiovascular oscillations in resting-state conditions. Multi-session functional magnetic resonance imaging (fMRI) and cardiovascular data were gathered from 34 healthy volunteers recruited within the human connectome project (the '100-unrelated subjects' release). Group-wise multi-level fMRI analyses in conjunction with complex instantaneous heartbeat correlates (entropy and Lyapunov exponent) revealed the existence of a specialized brain network, i.e. a complex central autonomic network (CCAN), reflecting what we refer to as complex autonomic control of the heart. Our results reveal CCAN areas comprised the paracingulate and cingulate gyri, temporal gyrus, frontal orbital cortex, planum temporale, temporal fusiform, superior and middle frontal gyri, lateral occipital cortex, angular gyrus, precuneous cortex, frontal pole, intracalcarine and supracalcarine cortices, parahippocampal gyrus and left hippocampus. The CCAN visible at rest does not include the insular cortex, thalamus, putamen, amygdala and right caudate, which are classical CAN regions peculiar to sympatho-vagal control. Our results also suggest that the CCAN is mainly involved in complex vagal control mechanisms, with possible links with emotional processing networks.
本研究旨在揭示在静息状态下与复杂心血管振荡在功能上相关的脑区。从人类连接组计划(“100 个无关个体”发布)中招募的 34 名健康志愿者中收集了多轮功能磁共振成像(fMRI)和心血管数据。结合复杂瞬时心跳相关物(熵和 Lyapunov 指数)的组级多水平 fMRI 分析揭示了一个专门的大脑网络的存在,即复杂自主神经网络(CCAN),反映了我们所谓的心脏的复杂自主控制。我们的结果揭示了 CCAN 区域包括旁中央回和扣带回、颞叶、额眶皮质、颞平面、颞梭状回、额上回和中回、外侧枕叶、角回、楔前叶、额极、内距状回和上距状回、海马旁回和左侧海马。在静息状态下可见的 CCAN 不包括岛叶、丘脑、壳核、杏仁核和右侧尾状核,这些是交感神经-迷走神经控制特有的经典 CAN 区域。我们的结果还表明,CCAN 主要涉及复杂的迷走神经控制机制,并可能与情绪处理网络有关。