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由于全身冷却导致局部冷热敏感性变化的年龄比较。

Age comparison of changes in local warm and cold sensitivity due to whole body cooling.

机构信息

Environmental Ergonomics Research Centre, Loughborough School of Design & Creative Arts, Loughborough University, Loughborough, LE11 3TU, UK; Diabetes Research Centre, Leicester General Hospital, University of Leicester, Leicester, LE5 4PW, UK.

Environmental Ergonomics Research Centre, Loughborough School of Design & Creative Arts, Loughborough University, Loughborough, LE11 3TU, UK.

出版信息

J Therm Biol. 2022 Feb;104:103174. doi: 10.1016/j.jtherbio.2021.103174. Epub 2021 Dec 22.

Abstract

PURPOSE

This study investigated the influence of whole body cooling on local thermal sensitivity to warm (40°C) and cold (20°C) stimuli in 10 young (age: 24 ± 2 yrs) and 10 older males (age: 69 ± 4 yrs).

METHODS

Local warm and cold sensitivity was assessed at eight body regions using a 25 cm pressure controlled thermal probe after 40 min of whole body exposure to a thermoneutral (NEUT: 25°C/40% RH) and a cold (COLD: 12°C/50% RH) environment. Gastrointestinal temperature (T), mean and local skin temperature, heart rate, whole body thermal sensation and comfort, and skin blood flow were also measured.

RESULTS

Whole body cooling blunted local cold sensitivity but warm sensitivity was maintained in both age groups. Furthermore, a significant age-related decline (from young to older group) in sensitivity to a warm stimulus was observed in both NEUT and COLD conditions. Older males also had a greater ΔT compared to the young but had similar thermal sensation and comfort responses.

CONCLUSION

The observed interaction effect of local cold stimulation and whole body cooling may be related to both stimuli triggering similar TRP channels, whereas the lack of interaction between local warm stimuli and whole body cooling may be related to these two stimuli triggering different TRP channels. The findings reiterate the potential thermoregulatory risks (e.g. cold injury and hypothermia) associated with ageing, even with such short exposure times.

摘要

目的

本研究旨在探讨全身冷却对年轻(24±2 岁)和老年(69±4 岁)男性 10 名个体局部热感觉(40°C 时为温觉,20°C 时为冷觉)的影响。

方法

在全身暴露于热中性(NEUT:25°C/40%RH)和寒冷(COLD:12°C/50%RH)环境 40 分钟后,使用压力控制热探针评估 8 个身体部位的局部温觉和冷觉。还测量了胃肠道温度(T)、平均和局部皮肤温度、心率、全身热感觉和舒适度以及皮肤血流量。

结果

全身冷却会使局部冷觉迟钝,但在两个年龄组中温觉均保持不变。此外,在 NEUT 和 COLD 条件下,均观察到与年龄相关的对温刺激敏感性的显著下降(从年轻组到老年组)。与年轻男性相比,老年男性的 T 差值更大,但他们的热感觉和舒适度反应相似。

结论

局部冷刺激和全身冷却之间观察到的相互作用效应可能与这两种刺激触发相似的 TRP 通道有关,而局部温刺激和全身冷却之间缺乏相互作用可能与这两种刺激触发不同的 TRP 通道有关。这些发现再次强调了与年龄相关的潜在热调节风险(例如冷伤和体温过低),即使暴露时间如此短暂。

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