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额头局部出汗,而非前臂,这一现象受到有氧运动能力的影响,而与运动期间的热平衡需求无关。

Local sweating on the forehead, but not forearm, is influenced by aerobic fitness independently of heat balance requirements during exercise.

机构信息

Thermal Ergonomics Laboratory, School of Human Kinetics, University of Ottawa, Ottawa, Ontario, Canada K1N 6N5.

出版信息

Exp Physiol. 2012 May;97(5):572-82. doi: 10.1113/expphysiol.2011.061374. Epub 2012 Jan 6.

Abstract

The present study investigated the influence of maximal oxygen uptake (V(O2 max)) on local steady-state sudomotor responses to exercise, independently of evaporative requirements for heat balance (E(req)). Eleven fit (F; (V(O2 max))61.9 ± 6.0 ml kg(-1) min(-1)) and 10 unfit men (UF; (V(O2 max)) 40.4 ± 3.8 ml kg(-1) min(-1)) cycled for 60 min at an air temperature of 24.5 ± 0.8°C and ambient humidity of 0.9 ± 0.3 kPa at a set metabolic heat production per unit surface area, producing the same E(req) in all participants (BAL trial) and, in a second trial, at 60% of (V(O2 max)). During the BAL trial, absolute power (F 107 ± 2 and UF 102 ± 2 W; P = 0.126), E(req) (F 175 ± 5 and UF 176 ± 9 W m(-2); P = 0.855), steady-state whole-body sweat rate (F 0.44 ± 0.02 and UF 0.47 ± 0.02 mg cm(-2) min(-1); P = 0.385) and local sweat rate on the arm (F 0.29 ± 0.03 and UF 0.35 ± 0.03 mg cm(-2) min(-1); P = 0.129) were not different between groups; however, local sweat rate on the forehead in UF (1.67 ± 0.20 mg cm(-2) min(-1)) was almost double (P = 0.002) that of F (0.87 ± 0.11 mg cm(-2) min(-1)). Heart rate, ratings of perceived exertion and relative exercise intensity were also significantly greater in UF (P < 0.05). There was a trend towards an elevated minute ventilation in UF (P = 0.052), while end-tidal P(CO2) was significantly lower in UF (P = 0.028). At 60% (V(O2 max)), absolute power (F 174 ± 6 and UF 110 ± 5 W; P < 0.001), E(req) (F 291 ± 14 and UF 190 ± 17 W m(-2); P < 0.001), steady-state whole-body sweat rate (F 0.84 ± 0.05 and UF 0.53 ± 0.03 mg cm(-2) min(-1); P < 0.001) and local sweat rate on the arm (F 0.75 ± 0.04 and UF 0.35 ± 0.03 mg cm(-2) min(-1); P < 0.001) and on the forehead (F 2.92 ± 0.42 and UF 1.68 ± 0.23 mg cm(-2) min(-1); P = 0.022) were all significantly greater in F compared with UF. Heart rate and ratings of perceived exertion were similar at all time points (P > 0.05). Significantly greater minute ventilation (P < 0.001) and end-tidal P (CO2) responses (P = 0.017) were found in F. In conclusion, aerobic fitness alters local sweating on the forehead, but not the forearm, independently of evaporative requirements for heat balance, and may be the result of differential control of sweating in these skin areas associated with the relative intensity of exercise.

摘要

本研究调查了最大摄氧量(V(O2 max))对运动时局部稳态出汗反应的影响,而不考虑热量平衡的蒸发需求(E(req))。11 名健康(F;(V(O2 max))61.9 ± 6.0 ml kg(-1)min(-1))和 10 名不适合运动的男性(UF;(V(O2 max))40.4 ± 3.8 ml kg(-1)min(-1))在空气温度为 24.5 ± 0.8°C 和环境湿度为 0.9 ± 0.3 kPa 的条件下,以相同的 E(req)在所有参与者(BAL 试验)中,以代谢产热单位表面积的 60%进行 60 分钟的自行车运动,以及在第二个试验中进行 60%(V(O2 max))的运动。在 BAL 试验中,绝对功率(F 107 ± 2 和 UF 102 ± 2 W;P = 0.126)、E(req)(F 175 ± 5 和 UF 176 ± 9 W m(-2);P = 0.855)、稳态全身出汗率(F 0.44 ± 0.02 和 UF 0.47 ± 0.02 mg cm(-2)min(-1);P = 0.385)和手臂局部出汗率(F 0.29 ± 0.03 和 UF 0.35 ± 0.03 mg cm(-2)min(-1);P = 0.129)在两组之间没有差异;然而,UF 前额局部出汗率(1.67 ± 0.20 mg cm(-2)min(-1))几乎是 F(0.87 ± 0.11 mg cm(-2)min(-1))的两倍(P = 0.002)。UF 的心率、感知运动强度和相对运动强度也显著更高(P < 0.05)。UF 分钟通气量也有升高趋势(P = 0.052),而 UF 的呼气末 P(CO2)显著降低(P = 0.028)。在 60%(V(O2 max))时,绝对功率(F 174 ± 6 和 UF 110 ± 5 W;P < 0.001)、E(req)(F 291 ± 14 和 UF 190 ± 17 W m(-2);P < 0.001)、稳态全身出汗率(F 0.84 ± 0.05 和 UF 0.53 ± 0.03 mg cm(-2)min(-1);P < 0.001)和手臂局部出汗率(F 0.75 ± 0.04 和 UF 0.35 ± 0.03 mg cm(-2)min(-1);P < 0.001)以及前额局部出汗率(F 2.92 ± 0.42 和 UF 1.68 ± 0.23 mg cm(-2)min(-1);P = 0.022)在 F 中均显著大于 UF。心率和感知运动强度在所有时间点都相似(P > 0.05)。F 中发现明显更大的分钟通气量(P < 0.001)和呼气末 P(CO2)反应(P = 0.017)。总之,有氧健身改变了前额的局部出汗,但不改变前臂的出汗,这与热量平衡的蒸发需求无关,并且可能是由于与运动强度相关的这些皮肤区域的出汗控制存在差异所致。

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