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水肺潜水员核心体温的维持:人体测量学、卵圆孔未闭和非颤抖性产热的贡献。

The maintenance of core temperature in SCUBA divers: Contributions of anthropometrics, patent foramen ovale, and non-shivering thermogenesis.

机构信息

Department of Human Physiology, University of Oregon, USA; United States Army Research Institute of Environmental Medicine, USA.

Department of Human Physiology, University of Oregon, USA.

出版信息

J Sci Med Sport. 2024 Dec;27(12):820-827. doi: 10.1016/j.jsams.2024.07.010. Epub 2024 Jul 22.

Abstract

OBJECTIVES

To determine the influence of a patent foramen ovale and fibroblast growth factor-21 on core temperature (Tc) responses in SCUBA divers. Additionally, we aimed to quantify the individual and combined influences of wetsuit thickness and anthropometric data on Tc changes during the dives.

DESIGN

An experimental study comparing the Tc responses between divers with (n = 17) and without a patent foramen ovale (n = 14).

METHODS

A total of 31 divers participated in the study. Tc was measured pre- and post-dive in 17-18 °C sea water using a telemetric pill. Additionally, blood was drawn pre-dive and ~1-2 h post-dive for measurement of fibroblast growth factor-21.

RESULTS

There was no influence of a patent foramen ovale on the Tc responses during SCUBA diving in either dive profile (p > 0.05). Additionally, there was no influence of SCUBA diving on fibroblast growth factor-21 concentrations (p > 0.05). The strongest positive and significant associations with the ∆Tc/min were found when multiplying wetsuit thickness in millimeters by body mass (r = 0.3147, p = 0.0010), BMI (r = 0.3123, p = 0.0011), and body surface area (r = 0.2877, p = 0.0019). There was a significant, negative linear relationship between the body surface area to mass ratio and ∆Tc/min (r = 0.2812, p = 0.0032).

CONCLUSIONS

These data suggest that Tc regulation during recreational SCUBA diving can be facilitated in part by the appropriate choice of wetsuit thickness for a given set of anthropometric characteristics.

摘要

目的

确定卵圆孔未闭和成纤维细胞生长因子 21 对水肺潜水员核心温度 (Tc) 反应的影响。此外,我们旨在量化潜水过程中潜水服厚度和人体测量数据对 Tc 变化的个体和综合影响。

设计

一项比较卵圆孔未闭潜水员 (n = 17) 和无卵圆孔未闭潜水员 (n = 14) Tc 反应的实验研究。

方法

共有 31 名潜水员参加了这项研究。使用遥测药丸在 17-18°C 的海水中测量潜水前和潜水后的 Tc。此外,在潜水前和潜水后约 1-2 小时抽取血液,以测量成纤维细胞生长因子 21。

结果

在两种潜水剖面中,卵圆孔未闭对水肺潜水时的 Tc 反应均无影响(p > 0.05)。此外,水肺潜水对成纤维细胞生长因子 21 浓度没有影响(p > 0.05)。与 Tc/min 的变化值相乘时,潜水服厚度(r = 0.3147,p = 0.0010)、BMI(r = 0.3123,p = 0.0011)和体表面积(r = 0.2877,p = 0.0019)与 ∆Tc/min 呈最强的正相关。体表面积与体重比与 ∆Tc/min 呈显著负线性关系(r = 0.2812,p = 0.0032)。

结论

这些数据表明,在休闲水肺潜水期间,Tc 调节可以部分通过为特定的人体测量特征选择适当的潜水服厚度来促进。

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