首页> 美国卫生研究院文献>The Journal of Physiology >Changes in plasma volume and protein content during exposures of working men to various temperatures before and after acclimitization to heat: separation of the roles of cutaneous and skeletal muscle circulation
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Changes in plasma volume and protein content during exposures of working men to various temperatures before and after acclimitization to heat: separation of the roles of cutaneous and skeletal muscle circulation

机译:在工作人员暴露于热之前和之后的各种温度下血浆体积和蛋白质含量的变化:皮肤和骨骼肌循环作用的分离

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摘要

1. Ten male subjects were trained in stair stepping for 2 weeks. Group A (six subjects) was thereupon sequentially exposed for 45 min to dry bulb temperatures of 20, 40 and 30° C, a vapour pressure of 10-11 mm Hg and a wind speed of 1 m/sec in a climate tunnel. While temperature changes were being effected the subjects rested in an antechamber. Group B (four subjects) was exposed to a sequence of 40, 20 and 30° C. Work rate was the same for all subjects, i.e. 216 kg m/min (≃ to an oxygen consumption of 0·9 l./min). Duplicate experiments were run on both groups of subjects before and after acclimatization to heat.2. Throughout, periodic samples of venous blood, water and protein movement into or out of the extravascular compartment was assessed during exercise periods wherein blood flow was increased to exercising muscles (Group A, 20° C) or to both exercising muscles and skin (Group B, 40° C; Groups A and B, 30° C.)3. Mild exercise in a cool environment before and after acclimatization to heat was accompanied by expansion of the vascular volume and an increase in the amount of circulating protein.4. Mild exercise in a warm environment for 45 min was accompanied by haemoconcentration and loss of protein from the vascular volume before subjects were heat acclimatized. The results were reversed following heat acclimatization; i.e. exposure of Group B to 40° C and of Groups A and B to 30° C was accompanied by haemodilution and addition to (or maintenance of) plasma protein concentration.5. Effects of heat acclimatization on exposure of Group A to 40° C were also noted.6. The effects of heat acclimatization were ascribed to:(a) a change in permeability of cutaneous capillaries to large molecules,(b) an increased availability of translocatable protein within cutaneous interstitial spaces, and(c) a combination of both a and b.7. Further, the results supported a previous suggestion that addition or loss of water and protein from the vascular volume is dependent on the ratio of cutaneous to muscle blood flow.
机译:1.对十名男性受试者进行了为期两周的阶梯训练。随后将A组(六名受试者)在气候隧道中依次暴露于20、40和30℃的干球温度,10-11mm Hg的蒸气压和1m / sec的风速45分钟。当温度变化受到影响时,受试者处于前室。 B组(四名受试者)暴露于40、20和30°C的温度下。所有受试者的工作速率相同,即216 kg m / min(≃耗氧量为0·9 l./min)。 。在适应热前后,对两组受试者进行重复实验。2。整个过程中,在运动期间评估了静脉血,水和蛋白质运动进出血管外腔的定期样本,在运动期间,血液流动增加以锻炼肌肉(A组,20°C)或同时增加肌肉和皮肤(B组) 40°C; A和B组,30°C)3。在适应热前后,在凉爽的环境中进行轻度运动会伴有血管体积的扩大和循环蛋白量的增加。4。在温暖的环境中进行45分钟的轻微运动会伴随着血液的浓缩和热量从血管体积中流失,然后使受试者适应热量。热适应后结果相反。即B组暴露于40°C以及A组和B组暴露于30°C伴随着血液稀释和血浆蛋白浓度的增加(或维持)5。还注意到热适应对A组暴露于40℃的影响。6。热适应的影响归因于:(a)皮肤毛细血管对大分子渗透性的变化;(b)皮肤间隙内可转运蛋白的可用性增加;(c)a和b.7的组合。此外,该结果支持先前的建议,即血管体积中水和蛋白质的添加或损失取决于皮肤与肌肉血流的比率。

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