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Brief Rewarming Blunts Hypothermia-Induced Alterations in Sensation Motor Drive and Cognition

机译:短暂地缓解钝性低体温引起的感觉运动驱动和认知变化

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摘要

>Background: It is well known that cold exposure experienced during occupational or recreational activities may adversely affect motor, cognitive performance, and health. Most research has used prolonged passive external rewarming modalities and focused on the direct effects on the kinetics of physiological and psychological responses in hypothermic subjects. However, the brief whole body rewarming effects on physiological and psychological responses in parallel with functional consequences on cognitive and neurophysiological functions have not been investigated. This study explores these effects in 12 healthy young men.>Methods: Subjects (20 ± 1 years) participated in 4 randomized trials, which were designed to compare the effects of whole-body brief (5-min) rewarming in 37°C water with rewarming for the same duration in 24°C (air) thermoneutral environment in mildly hypothermic subjects. After each rewarming, indicators of neuromuscular function (reflexes, central activation ratio, electromyography of exercising muscle, and contractile properties of calf muscles) and cognitive function (attention, simple motor speed, and information processing speed) were assessed.>Results: Compared to rewarming in thermoneutral environment, after brief rewarming in 37°C water, significantly lower metabolic heat production (MHP) (206 ± 33.4 vs. 121.9 ± 24.3 W·m2, P < 0.01), heart rate (76 ± 16 vs. 60 ± 12 b·min−1, P < 0.01), cold strain (6.4 ± 3.1 vs. 5.3 ± 2.7, P < 0.01), improved thermal comfort and induced cessation of shivering were found. Electrically induced maximum torque amplitudes increased (P100, 102.8 ± 21.3 vs. 109.2 ± 17.5 Nm and PTT100, 83.1 ± 17.1 vs. 92.7 ± 16.0 Nm, P < 0.05), contraction half-relaxation time decreased (599.0 ± 53.8 vs. 589.0 ± 56.3 ms, P < 0.05), and Mmax-wave latency shortened (17.5 ± 2.2 vs. 15.6 ± 2.0 ms, P < 0.05) after 37°C water rewarming. Unlike rewarming in thermoneutral environment, 37°C water rewarming blunted the hypothermia-induced alterations in neural drive transmission (4.3 ± 0.5 vs. 3.4 ± 0.8 mV H-reflex and 4.9 ± 0.2 vs. 4.4 ± 0.4 mV V-wave, P < 0.05), which increased central fatigue during a 2-min maximum load (P < 0.05). Furthermore, only in brief warm water rewarming cerebral alterations were restored to the control level and it was indicated by shortened reaction times (P < 0.05).>Conclusions: Brief rewarming in warm water rather than the same duration rewarming in thermoneutral environment blunted the hypothermia-induced alterations for sensation, motor drive, and cognition, despite the fact that rectal and deep muscle temperature remained lowered.
机译:>背景:众所周知,在职业或娱乐活动期间遭受冷暴露可能会对运动,认知能力和健康产生不利影响。大多数研究都使用了长时间的被动外部变温方式,并着重研究了低温患者对生理和心理反应动力学的直接影响。然而,尚未研究全身短暂的温热对生理和心理反应的影响以及对认知和神经生理功能的功能性后果。这项研究探索了对12位健康的年轻人的这些影响。>方法:对象(20±1岁)参加了4项随机试验,旨在比较全身性摘要(5分钟)的影响在37°C水中复温,并在轻度低温受试者中在24°C(空气)热中性环境中复温相同的时间。每次复温后,评估神经肌肉功能(反射,中枢激活率,运动肌的肌电图和小腿肌肉收缩特性)和认知功能(注意力,简单运动速度和信息处理速度)的指标。>结果: 与在热中性环境下进行复温相比,在37°C水中短暂进行复温后,代谢热产生(MHP)明显降低(206±33.4 vs. 121.9±24.3 W·m 2 ,P <0.01),心率(76±16 vs. 60±12 b·min -1 ,P <0.01),冷应激(6.4±3.1 vs. 5.3±2.7,P <0.01),发现改善的热舒适性和引起的颤抖停止。电感应最大扭矩振幅增加(P100,102.8±21.3 vs. 109.2±17.5 Nm和PTT100,83.1±17.1 vs. 92.7±16.0 Nm,P <0.05),收缩半松弛时间减少(599.0±53.8 vs. 589.0±在37°C的温度下加温后,Mmax波潜伏期缩短了(56.3 ms,P <0.05),Mmax波潜伏期缩短了(17.5±2.2 vs. 15.6±2.0 ms,P <0.05)。与在热中性环境中变温不同,在37°C的水变温会使低温诱导的神经驱动传递改变(4.3±0.5 vs. 3.4±0.8 mV H反射和4.9±0.2 vs. 4.4±0.4 mV V波,P < 0.05),这会在2分钟的最大负荷下增加中央疲劳(P <0.05)。此外,只有短暂的温水温升使大脑改变恢复到控制水平,并且反应时间缩短了(P <0.05)。>结论:在温水中短暂温升而不是持续相同时间的温升在热中性环境中,尽管直肠和深层肌肉的温度仍然降低,但降低了亚低温引起的感觉,运动驱动和认知功能的改变。

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