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首页> 外文期刊>Journal of applied physiology >Effect of whole body heat stress on peripheral vasoconstriction during leg dependency
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Effect of whole body heat stress on peripheral vasoconstriction during leg dependency

机译:全身热应激对下肢依赖过程中外周血管收缩的影响

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The venoarteriolar response (VAR) increases vascular resistance upon increases in venous transmural pressure in cutaneous, subcutaneous, and muscle vascular beds. During orthostasis, it has been proposed that up to 45% of the increase in systemic vascular tone is due to VAR-related local mechanism(s). The objective of this project was to test the hypothesis that heat stress attenuates VAR-mediated cutaneous and whole leg vasoconstriction. During normothermic conditions, measurements of cutaneous blood flow (laser-Doppler flowmetry) and femoral artery blood flow (Doppler ultrasound) were obtained from both legs during supine and leg-dependent conditions. These measurements were repeated following a whole body heat stress (increase in internal temperature of 1.4 +- 0.2degC). Before leg dependency, cutaneous (CVC) and femoral vascular conductances (FVC) were significantly elevated in both legs during heat stress relative to normothermia (P < 0.001). During leg dependency the absolute decrease in CVC was attenuated during heat stress (P < 0.01) while the absolute decrease in FVC was unaffected (P = 0.90). When CVC and FVC data were analyzed as a relative change from their respective baseline values, heat stress significantly attenuated the magnitude of vasoconstriction due to leg dependency in the cutaneous and femoral circulations (P < 0.001 for both variables). These data suggest that an attenuated local vasoconstriction, evoked via the venoarteriolar response, may contribute to reduced blood pressure control and thus reduced orthostatic tolerance that occurs in heat-stressed individuals.
机译:当皮肤,皮下和肌肉血管床中的静脉穿膜压力增加时,小动脉反应(VAR)会增加血管阻力。在矫正期间,已经提出全身血管紧张度增加的多达45%是由于VAR相关的局部机制所致。该项目的目的是检验热应力减弱VAR介导的皮肤和全腿血管收缩的假说。在正常体温条件下,在仰卧和腿部依赖条件下,从双腿获得皮肤血流(激光多普勒血流仪)和股动脉血流(多普勒超声)的测量值。在全身热应激(内部温度升高1.4±0.2摄氏度)后重复进行这些测量。在腿部依赖之前,相对于正常体温,在热应激期间双腿的皮肤(CVC)和股血管电导(FVC)显着升高(P <0.001)。在腿部依赖性期间,热应激期间CVC的绝对下降被减弱(P <0.01),而FVC的绝对下降未受到影响(P = 0.90)。当将CVC和FVC数据作为相对于其各自基准值的相对变化进行分析时,由于腿部在皮肤和股循环中的依赖性,热应激显着减弱了血管收缩的幅度(两个变量均P <0.001)。这些数据表明,通过小动脉反应引起的局部血管收缩的减弱,可能有助于降低血压控制,从而降低热应激个体的体位耐受性。

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