Passive heating in sport: Context specific benefits, detriments, and considerations.

Campbell Menzies, Neil D Clarke, Chris Pugh, Charles J Steward, Charles D Thake, Tom Cullen
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Abstract

Exercise and passive heating share some acute physiological responses. These include increases in body temperature, sweat rate, blood flow, heart rate, and redistribution of plasma and blood volume. These responses can vary depending on the heating modality or dose (e.g. temperature, duration, body coverage) and are beneficial to athletes in specific scenarios. These scenarios include being applied to increase muscle or force production, induce rapid weight loss, stimulate thermoregulatory or cardiovascular adaptation, or to accelerate recovery. The rationale being to tailor the specific passive heating protocol to target the desired physiological response. However, some acute responses to passive heating may also be detrimental to sporting outcomes, such as exercising in the heat, having unintended residual negative effects on performance or perceptions of fatigue, or even resulting in hospitalization if implemented inappropriately. Accordingly, the effects of passive heating should be carefully considered prior to implementation by athletes, coaches, and support staff. Therefore, the purpose of this review is to evaluate the physiological responses to different modes and doses of passive heating and explore the various sport contexts where these effects may either benefit or hinder athletes. Understanding these responses can aid the implementation of passive heating in sport and identify potential recommended heating protocols in each given scenario.

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运动中的被动加热:特定环境的好处、坏处和注意事项。
运动和被动加热有一些共同的急性生理反应。这些变化包括体温、出汗率、血流量、心率以及血浆和血容量再分配的增加。这些反应可以根据加热方式或剂量(例如温度、持续时间、身体覆盖)而变化,并且在特定情况下对运动员有益。这些场景包括用于增加肌肉或力量生产,诱导快速减肥,刺激体温调节或心血管适应,或加速恢复。其基本原理是定制特定的被动加热方案,以达到所需的生理反应。然而,对被动加热的一些急性反应也可能对运动结果有害,例如在高温下运动,对表现或疲劳感产生意想不到的残余负面影响,如果实施不当,甚至导致住院。因此,在运动员、教练员和辅助人员实施被动供暖之前,应仔细考虑其影响。因此,本综述的目的是评估对不同模式和剂量的被动加热的生理反应,并探讨这些影响可能对运动员有益或有害的各种运动环境。了解这些反应有助于在运动中实施被动式供暖,并在每个给定场景中确定潜在的推荐供暖方案。
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