Repeated short cold-water immersions are sufficient to habituate to the cold, but do not lead to adaptations during exercise in normobaric hypoxia.

Geoffrey Dorsett, Felipe Gorini Pereira, Matthew Kuennen, Kyren Waugh, Jackson Barnard, Jonluke Bennett, Gabriel Garcia, Trevor Gillum
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Abstract

We sought to assess the effects of repeated cold-water immersions (CWI) on respiratory, metabolic, and sympathoadrenal responses to graded exercise in hypoxia. Sixteen (2 female) participants (age: 21.2 ±   1.3 years; body fat: 12.3 ± 7.7%; body surface area 1.87 ± 0.16 m2, VO2peak: 48.7 ± 7.9 mL/kg/min) underwent 6 CWI in 12.0 ± 1.2 °C. Each CWI was 5 min, twice daily, separated by ≥4 h, for three consecutive days, during which metabolic data were collected. The day before and after the repeated CWI intervention, participants ran in normobaric hypoxia (FIO2 = 0.135) for 4 min at 25%, 40%, 60%, and 75% of their sea level peak oxygen consumption (VO2peak). CWI had no effect on VO2 (p > 0.05), but reduced the VE (CWI #1: 27.1 ± 17.8 versus CWI #6: 19.9 ± 12.1 L/min) (p < 0.01), VT (CWI #1: 1.3 ± 0.4 vs CWI #6: 1.1 ± 0.4 L) (p < 0.01), and VE:VO2 (CWI #1: 53.5 ± 24.1 vs CWI #6: 41.6 ± 20.5) (p < 0.01) during subsequent CWI. Further, post exercise plasma epinephrine was lower after CWI compared to before (103.3 ± 43.1; 73.4 ± 34.6 pg/mL) (p = 0.03), with no change in pre-exercising values (75.4 ± 30.7; 72.5 ± 25.9 pg/mL). While these changes were noteworthy, it is important to acknowledge there were no changes in pulmonary (VE, VT, and VE:VO2) or metabolic (VO2, SmO2, and SpO2) variables across multiple hypoxic exercise workloads following repeated CWI. CWI habituated participants to cold water, but this did not lead to adaptations during exercise in normobaric hypoxia.

反复短时间的冷水浸泡足以使人适应寒冷,但并不能导致在常压缺氧条件下进行运动时产生适应性。
我们试图评估反复冷水浸泡(CWI)对缺氧情况下分级运动的呼吸、代谢和交感肾上腺反应的影响。16 名参与者(2 名女性)(年龄:21.2 ± 1.3 岁;体脂:12.3 ± 7.7 %;体表面积:1.87 ± 0.16 m2;VO2 峰值:48.7 ± 7.9 m2)进行了冷水浸泡:每次 CWI 为 5 分钟,每天两次,间隔≥4 小时,连续 3 天,期间收集代谢数据。在重复 CWI 干预的前一天和后一天,参与者在常压缺氧(FIO2 = 0.135)条件下分别以海平面峰值耗氧量(VO2peak)的 25%、40%、60% 和 75% 跑 4 分钟。CWI 对 VO2 没有影响(p>0.05),但降低了 VE(CWI #1: 27.1 ± 17.8 vs CWI #6: 19.9 ± 12.1 L/min)(p
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