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脑血管与心血管相互作用的频谱分解在易发生体位性晕厥的患者和健康对照者中的研究。

Spectral decomposition of cerebrovascular and cardiovascular interactions in patients prone to postural syncope and healthy controls.

机构信息

Department of Engineering, University of Palermo, Viale delle Scienze, Bldg. 9, 90128 Palermo, Italy.

Department of Cardiothoracic, Vascular Anesthesia and Intensive Care, IRCCS Policlinico San Donato, San Donato Milanese, Milan, Italy.

出版信息

Auton Neurosci. 2022 Nov;242:103021. doi: 10.1016/j.autneu.2022.103021. Epub 2022 Aug 9.

Abstract

We present a framework for the linear parametric analysis of pairwise interactions in bivariate time series in the time and frequency domains, which allows the evaluation of total, causal and instantaneous interactions and connects time- and frequency-domain measures. The framework is applied to physiological time series to investigate the cerebrovascular regulation from the variability of mean cerebral blood flow velocity (CBFV) and mean arterial pressure (MAP), and the cardiovascular regulation from the variability of heart period (HP) and systolic arterial pressure (SAP). We analyze time series acquired at rest and during the early and late phase of head-up tilt in subjects developing orthostatic syncope in response to prolonged postural stress, and in healthy controls. The spectral measures of total, causal and instantaneous coupling between HP and SAP, and between MAP and CBFV, are averaged in the low-frequency band of the spectrum to focus on specific rhythms, and over all frequencies to get time-domain measures. The analysis of cardiovascular interactions indicates that postural stress induces baroreflex involvement, and its prolongation induces baroreflex dysregulation in syncope subjects. The analysis of cerebrovascular interactions indicates that the postural stress enhances the total coupling between MAP and CBFV, and challenges cerebral autoregulation in syncope subjects, while the strong sympathetic activation elicited by prolonged postural stress in healthy controls may determine an increased coupling from CBFV to MAP during late tilt. These results document that the combination of time-domain and spectral measures allows us to obtain an integrated view of cardiovascular and cerebrovascular regulation in healthy and diseased subjects.

摘要

我们提出了一个用于在双变量时间序列的时间和频率域中线性参数分析成对相互作用的框架,该框架允许评估总相互作用、因果相互作用和瞬时相互作用,并连接时间域和频率域的测量。该框架应用于生理时间序列,以研究从平均脑血流速度 (CBFV) 和平均动脉压 (MAP) 的变异性的脑血管调节,以及从心率 (HP) 和收缩压 (SAP) 的变异性的心血管调节。我们分析了在头高位倾斜的早期和晚期以及对长时间姿势应激反应出现直立性晕厥的受试者和健康对照者休息时获得的时间序列。HP 和 SAP 之间以及 MAP 和 CBFV 之间的总、因果和瞬时耦合的频谱测量值在频谱的低频带中进行平均,以关注特定节律,并在所有频率上进行平均以获得时域测量值。心血管相互作用的分析表明,姿势应激诱导了压力反射的参与,其延长导致晕厥患者的压力反射失调。脑血管相互作用的分析表明,姿势应激增强了 MAP 和 CBFV 之间的总耦合,并在晕厥患者中挑战了脑自动调节,而健康对照者中长时间姿势应激引起的强烈交感神经激活可能导致在倾斜后期从 CBFV 到 MAP 的耦合增加。这些结果证明,时域和频谱测量的结合使我们能够获得健康和患病受试者心血管和脑血管调节的综合视图。

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