a Institute of Physiology and Anatomy , German Sport University Cologne , Cologne , Germany.
b Institute of Movement and Neurosciences , German Sport University Cologne , Cologne , Germany.
Int J Hyperthermia. 2018 Jun;34(4):442-454. doi: 10.1080/02656736.2017.1354402. Epub 2017 Aug 2.
The goal of the study was to compare the kinetic responses of heart rate (HR) and pulmonary (V̇Opulm) and muscular (V̇Omusc) oxygen uptake during dynamic leg exercise across different acute ambient temperature conditions in a climatic chamber.
Thirteen physically healthy, active, male volunteers demonstrated pseudorandom binary sequence (PRBS) work rate (WR) changes between 30 and 80 W at 15 °C, 25 °C and 35 °C, respectively. HR was measured beat-to-beat using an echocardiogram and V̇Opulm by breath-by-breath gas exchange; V̇Omusc estimations were assessed by applying a circulatory model and cross-correlation functions.
No significant differences were observed across the various temperature conditions in each case for HR, V̇Opulm or V̇Omusc kinetics (p > 0.05). Baroreflex regulation based on HR kinetics does not seem to be influenced between ambient temperatures of 15 °C and 35 °C during dynamic exercise.
The results imply that ambient temperatures of 15 °C, 25 °C and 35 °C have no effect on HR, V̇Opulm or V̇Omusc kinetics during dynamic moderate exercise. The applied approach may be of interest for assessments of the cardio-pulmonary and respiratory health statuses of individuals working or performing sports in extreme temperature environments. Furthermore, differentiation between systemic (e.g. cardio-dynamic: HR) and specific (e.g. exercising tissues: V̇Omusc) determinants of the relevant physiological systems may improve the evaluation of an individual's health status.
本研究旨在比较在气候室内不同急性环境温度条件下,动态腿部运动时心率(HR)和肺(V̇Opulm)及肌肉(V̇Omusc)摄氧量的动力学反应。
13 名身体健康、活跃的男性志愿者在 15°C、25°C 和 35°C 下分别进行伪随机二进制序列(PRBS)工作率(WR)变化,范围为 30 至 80 W。HR 通过超声心动图逐拍测量,V̇Opulm 通过呼吸气体交换逐拍测量;通过应用循环模型和互相关函数来评估 V̇Omusc 估计值。
在每种情况下,在不同温度条件下,HR、V̇Opulm 或 V̇Omusc 动力学均未观察到显著差异(p>0.05)。在动态运动过程中,基于 HR 动力学的血压调节似乎不受 15°C 和 35°C 环境温度的影响。
结果表明,在动态中等运动中,环境温度为 15°C、25°C 和 35°C 对 HR、V̇Opulm 或 V̇Omusc 动力学没有影响。所应用的方法可能对评估在极端温度环境下工作或运动的个体的心肺和呼吸健康状况感兴趣。此外,区分相关生理系统的系统性(例如心脏动力学:HR)和特异性(例如运动组织:V̇Omusc)决定因素可能会提高对个体健康状况的评估。