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静息及运动应激状态下的心-下丘脑-垂体耦合

Cardio-Hypothalamic-Pituitary Coupling during Rest and in Response to Exercise.

作者信息

Berry Nathaniel T, Rhea Christopher K, Wideman Laurie

机构信息

Department of Kinesiology, University of North Carolina at Greensboro, Greensboro, NC 27412, USA.

出版信息

Entropy (Basel). 2022 Jul 29;24(8):1045. doi: 10.3390/e24081045.

Abstract

The objective of this study was to examine cardio hypothalamic-pituitary coupling and to better understand how the temporal relations between these systems are altered during rest and exercise conditions. An intensive within subjects study design was used. Seven adult males completed two visits, each consisting of either a 24 h period of complete rest or a 24 h period containing a high-intensity exercise bout. An intravenous catheter was used to collect serum samples every 10 min throughout the 24 h period (i.e., 145 samples/person/condition) to assess growth hormone (GH) dynamics throughout the 24 h period. Cardiac dynamics were also collected throughout the 24 h period and epoched into 3 min windows every 10 min, providing serial short-time measurements of heart rate variability (HRV) concurrent to the GH sampling. The standard deviation of the normal RR interval (SDNN), the root mean square of successive differences (rMSSD), and sample entropy (SampEn) was calculated for each epoch and used to create new profiles. The dynamics of these profiles were individually quantified using SampEn and recurrence quantification analysis (RQA). To address our central question, the coupling between these profiles with GH was assessed using cross-SampEn and cross-RQA (cRQA). A comparison between the epoched HRV profiles indicated a main effect between profiles for sample entropy (p < 0.001) and several measures from RQA. An interaction between profile and condition was observed for cross-SampEn (p = 0.04) and several measures from cRQA. These findings highlight the potential application of epoched HRV to assess changes in cardiac dynamics, with specific applications to assessing cardio hypothalamic-pituitary coupling.

摘要

本研究的目的是检查心脏与下丘脑 - 垂体的耦合情况,并更好地了解在休息和运动条件下这些系统之间的时间关系是如何改变的。采用了强化的受试者内研究设计。七名成年男性完成了两次访视,每次访视包括24小时的完全休息期或包含高强度运动回合的24小时时间段。在整个24小时期间,每隔10分钟使用静脉导管采集血清样本(即每人每种情况采集145个样本),以评估24小时内生长激素(GH)的动态变化。在整个24小时期间还收集了心脏动态数据,并每10分钟划分为3分钟的时间段,提供与GH采样同时的心率变异性(HRV)的连续短时间测量值。计算每个时间段的正常RR间期标准差(SDNN)、逐次差值的均方根(rMSSD)和样本熵(SampEn),并用于创建新的概况。使用SampEn和递归量化分析(RQA)分别对这些概况的动态进行量化。为了解决我们的核心问题,使用交叉样本熵(cross-SampEn)和交叉递归量化分析(cRQA)评估这些概况与GH之间的耦合。对划分时间段后的HRV概况进行比较,结果表明样本熵概况之间存在主效应(p < 0.001)以及RQA的若干测量指标存在主效应。观察到交叉样本熵(p = 0.04)和cRQA的若干测量指标存在概况与条件之间的交互作用。这些发现突出了划分时间段后的HRV在评估心脏动态变化方面的潜在应用,特别是在评估心脏与下丘脑 - 垂体耦合方面的具体应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/29cc/9407513/ff5c6e99d245/entropy-24-01045-g0A1.jpg

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