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温度和姿势对局部血流和血液动力学的联合影响。

The combined effects of temperature and posture on regional blood flow and haemodynamics.

机构信息

Department of Automatics, Biocybernetics, and Robotics, Jozef Stefan Institute, Ljubljana, Slovenia; International Postgraduate School Jozef Stefan, Jamova 39, SI-1000, Ljubljana, Slovenia.

Department of Automatics, Biocybernetics, and Robotics, Jozef Stefan Institute, Ljubljana, Slovenia.

出版信息

J Therm Biol. 2024 Jul;123:103937. doi: 10.1016/j.jtherbio.2024.103937. Epub 2024 Aug 3.

Abstract

Under simultaneous ambient temperature and postural stressors, integrated regional blood flow responses are required to maintain blood pressure and thermoregulatory homeostasis. The aim of the present study was to assess the effect of ambient temperature and body posture on regional regulation of microvascular blood flow, specifically in the arms and legs. Participants (N = 11) attended two sessions in which they experienced transient ambient conditions, in a climatic chamber. During each 60-min trial, ambient temperature increased from 15.7 (0.6) °C to 38.9 (0.6) °C followed by a linear decrease, and the participants were either standing or in a supine position throughout the trial; relative humidity in the chamber was maintained at 25.9 (6.6) %. Laser doppler flowmetry of the forearm (SkBF) and calf (SkBF), and haemodynamic responses (heart rate, HR; stroke volume, SV; cardiac output, CO; blood pressure, BP), were measured continuously. Analyses of heart rate variability and wavelet transform were also conducted. SkBF increased significantly at higher ambient temperatures (p = 0.003), but not SkBF. The standing posture caused lower overall SkBF in both regions throughout the protocol, regardless of temperature (p < 0.001). HR and BP were significantly elevated, and SV significantly lowered, in response to separate and combined effects of higher ambient temperatures and a standing position (all p < 0.05); CO remained unchanged. Mechanistic analyses identified greater sympathetic nerve activation, and higher calf myogenic activation at peak temperatures, in the standing condition. Mechanistically and functionally, arm vasculature responds to modulation from both thermoregulation and baroreceptor activity. The legs, meanwhile, are more sensitive to baroreflex regulatory mechanisms.

摘要

在环境温度和姿势应激源的共同作用下,需要整合区域性血流反应来维持血压和体温调节的稳态。本研究的目的是评估环境温度和身体姿势对微血管血流区域性调节的影响,特别是在手臂和腿部。参与者(N=11)参加了两个实验,在气候室中经历了短暂的环境条件。在每个 60 分钟的试验中,环境温度从 15.7(0.6)°C 升高到 38.9(0.6)°C,然后线性下降,参与者在整个试验中始终保持站立或仰卧位;室内相对湿度保持在 25.9(6.6)%。前臂(SkBF)和小腿(SkBF)的激光多普勒血流测量,以及血流动力学反应(心率,HR;每搏输出量,SV;心输出量,CO;血压,BP)连续测量。还进行了心率变异性和小波变换分析。在较高的环境温度下(p=0.003),SkBF 显著增加,但 SkBF 没有增加。无论温度如何,站立姿势在整个方案中都会导致两个区域的整体 SkBF 降低(p<0.001)。HR 和 BP 显著升高,SV 显著降低,这是对较高环境温度和站立姿势的单独和联合作用的反应(所有 p<0.05);CO 保持不变。机制分析表明,在站立状态下,较高的环境温度会导致交感神经激活增加,小腿肌源性激活增加。从机制和功能上看,手臂血管系统对体温调节和压力感受器活动的调节都有反应。另一方面,腿部对压力反射调节机制更为敏感。

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