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全身和局部热应激对人体小腿静水压容积变化的影响。

Effects of whole-body and local thermal stress on hydrostatic volume changes in the human calf.

作者信息

Yamazaki Fumio, Okuno Chitose, Nagamatsu Shoko, Sone Ryoko

机构信息

Department of Clinical Pathophysiology, School of Health Sciences, University of Occupational and Environmental Health, 1-1 Iseigaoka, Yahatanishi-ku, 807-8555 Kitakyushu, Japan.

出版信息

Eur J Appl Physiol. 2002 Nov;88(1-2):61-6. doi: 10.1007/s00421-002-0688-z. Epub 2002 Aug 21.

Abstract

In the present study, we examined the effect of thermal stress on the magnitude and pattern of change in leg volume during orthostatic stress and thigh occlusion in humans. Ten healthy volunteers underwent whole-body thermal stress produced by a cool- or hot-water-perfused suit and local heat stress of the calf. During whole-body thermal stress, changes of calf circumference during head-up tilt (HUT) at angles of 15 degrees and 60 degrees for 2 min each were monitored. In the supine position, the distensibility of the calf veins was evaluated from the magnitude and half-time of the change in calf circumference during thigh cuff occlusions at 20, 30, 50, 70, and 80 mmHg. Skin blood flow in the calf was measured by laser-Doppler flowmetry. Skin blood flow increased by [mean (SEM)] 295 (71)% with whole-body heating and decreased by 31 (4)% with whole-body cooling. Local heating of the calf increased skin blood flow in the heated area by 263 (25)%. During HUT, the calf cross-sectional area, calculated from the circumference, increased rapidly during whole-body heating and slowly during the cooling. The magnitude of the increase in calf area with HUT did not alter during whole-body heating, whereas it was reduced during cooling compared with the normothermic control. Whole-body and local heating did not alter the magnitude of change in calf area at a given cuff pressure, whereas whole-body cooling decreased it. The time to the half-maximal response of the change in calf circumference was shortened by 35 (17)% during whole-body heating and by 44 (4)% during local heating, whereas it was prolonged by 31 (16)% during whole-body cooling compared with the normothermic control. These results indicate that the magnitude and the pattern of change in calf volume during the early phase of orthostatic stress are modulated due to the changes in venous distensibility and blood flow in the skin during thermal loading.

摘要

在本研究中,我们检测了热应激对人体在直立应激和大腿阻断过程中腿部容积变化的幅度和模式的影响。十名健康志愿者接受了由冷水或热水灌注套装产生的全身热应激以及小腿局部热应激。在全身热应激期间,监测了在15度和60度头高位倾斜(HUT)各2分钟时小腿周长的变化。在仰卧位,通过在20、30、50、70和80 mmHg大腿袖带阻断期间小腿周长变化的幅度和半衰期来评估小腿静脉的扩张性。用激光多普勒血流仪测量小腿皮肤血流量。全身加热时皮肤血流量增加[平均(标准误)]295(71)%,全身冷却时减少31(4)%。小腿局部加热使加热区域的皮肤血流量增加263(25)%。在HUT期间,根据周长计算的小腿横截面积在全身加热时迅速增加,在冷却时缓慢增加。HUT时小腿面积增加的幅度在全身加热期间没有改变,而与正常体温对照相比,在冷却时减小。全身和局部加热在给定袖带压力下没有改变小腿面积变化的幅度,而全身冷却使其减小。与正常体温对照相比,全身加热时小腿周长变化达到最大反应一半的时间缩短了35(17)%,局部加热时缩短了44(4)%,而全身冷却时延长了31(16)%。这些结果表明,在热负荷期间,由于静脉扩张性和皮肤血流的变化,直立应激早期小腿容积变化的幅度和模式受到调节。

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