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Inadequate heat release from the human brain during prolonged exercise with hyperthermia

机译:长时间热疗期间人脑释放的热量不足

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摘要

Brain temperature appears to be an important factor affecting motor activity, but it is not known to what extent brain temperature increases during prolonged exercise in humans. Cerebral heat exchange was therefore evaluated in seven males during exercise with and without hyperthermia. Middle cerebral artery mean blood velocity (MCA Vmean) was continuously monitored while global cerebral blood flow (CBF) and cerebral energy turnover were determined at the end of the two exercise trials in three subjects. The arterial to venous temperature difference across the brain (v-aDtemp) was determined via thermocouples placed in the internal jugular vein and in the aorta. The jugular venous blood temperature was always higher than that of the arterial blood, demonstrating that heat was released via the CBF during the normothermic as well as the hyperthermic exercise condition. However, heat removal via the jugular venous blood was 30 ± 6 % lower during hyperthermia compared to the control trial. The reduced heat removal from the brain was mainly a result of a 20 ± 6 % lower CBF (22 ± 9 % reduction in MCA Vmean), because the v-aDtemp was not significantly different in the hyperthermic (0.20 ± 0.05 °C) compared to the control trial (0.22 ± 0.05 °C). During hyperthermia, the impaired heat removal via the blood was combined with a 7 ± 2 % higher heat production in the brain and heat was consequently stored in the brain at a rate of 0.20 ± 0.06 J g−1 min−1. The present results indicate that the average brain temperature is at least 0.2 °C higher than that of the body core during exercise with or without hyperthermia.
机译:脑温似乎是影响运动活动的重要因素,但尚不清楚在人类长时间运动期间脑温升高的程度。因此,在有和没有热疗的运动过程中,对七名男性进行了脑热交换评估。在三个受试者的两次运动试验结束时,连续监测大脑中动脉平均血流速度(MCA Vmean),同时确定总体脑血流量(CBF)和脑能量转换。通过放置在颈内静脉和主动脉中的热电偶来确定大脑的动脉与静脉的温差(v-aDtemp)。颈静脉的血液温度始终高于动脉血液的温度,这表明在正常体温和高温运动状态下,CBF释放出热量。然而,与对照试验相比,热疗期间通过颈静脉血的排热降低了30±6%。从大脑中去除的热量减少主要是由于CBF降低了20±6%(MCA Vmean降低了22±9%),因为与高温相比(0.20±0.05°C),v-aDtemp没有显着差异对照试验(0.22±0.05°C)。在体温过高的过程中,通过血液排出的热量减少,大脑中产生的热量增加了7±2%,因此热量以0.20±0.06 J g -1 的速率储存在大脑中min -1 。目前的结果表明,在有或没有体温过高的运动过程中,平均脑温至少比体核高0.2°C。

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