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2
Effects of acute dietary nitrate supplementation on cold-induced vasodilation in healthy males.急性膳食硝酸盐补充对健康男性冷诱导血管舒张的影响。
Eur J Appl Physiol. 2021 May;121(5):1431-1439. doi: 10.1007/s00421-021-04621-8. Epub 2021 Feb 23.
3
Wilderness Medical Society Clinical Practice Guidelines for the Prevention and Treatment of Frostbite: 2019 Update.荒野医学会冻伤防治临床实践指南:2019年更新版
Wilderness Environ Med. 2019 Dec;30(4S):S19-S32. doi: 10.1016/j.wem.2019.05.002. Epub 2019 Jul 17.
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Case series of non-freezing cold injury: epidemiology and risk factors.非冻结性冷损伤病例系列:流行病学与风险因素
J R Army Med Corps. 2019 Dec;165(6):400-404. doi: 10.1136/jramc-2018-000992. Epub 2018 Oct 25.
5
The influence of digit size and proportions on dexterity during cold exposure.寒冷暴露期间手指大小和比例对灵巧性的影响。
Am J Phys Anthropol. 2018 Aug;166(4):875-883. doi: 10.1002/ajpa.23486. Epub 2018 Apr 20.
6
The thermoregulatory function of the human hand: How do palm and digit proportions affect heat loss?人类手部的体温调节功能:手掌与手指比例如何影响热量散失?
Am J Phys Anthropol. 2018 Aug;166(4):803-811. doi: 10.1002/ajpa.23469. Epub 2018 Mar 30.
7
Cutaneous neural activity and endothelial involvement in cold-induced vasodilatation.皮肤神经活动与内皮细胞在冷诱导血管扩张中的作用。
Eur J Appl Physiol. 2018 May;118(5):971-978. doi: 10.1007/s00421-018-3832-0. Epub 2018 Mar 2.
8
Body size and body composition effects on heat loss from the hands during severe cold exposure.在严重寒冷暴露期间,身体大小和身体成分对手部热量散失的影响。
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9
Arterio-venous anastomoses in the human skin and their role in temperature control.人体皮肤中的动静脉吻合及其在体温调节中的作用。
Temperature (Austin). 2015 Oct 12;3(1):92-103. doi: 10.1080/23328940.2015.1088502. eCollection 2016 Jan-Mar.
10
Responses of the hands and feet to cold exposure.手脚对冷暴露的反应。
Temperature (Austin). 2015 Feb 27;2(1):105-20. doi: 10.1080/23328940.2015.1008890. eCollection 2015 Jan-Mar.

手指人体测量学可能不是影响冷却和复温热反应的主要因素。

Finger anthropometrics may not be a primary influence on the thermal responses to cooling and rewarming.

作者信息

Wickham Kate A, Cheung Stephen S

机构信息

Environmental Ergonomics Lab, Department of Kinesiology, Brock University, St. Catharines, Ontario, Canada.

出版信息

Temperature (Austin). 2022 Jul 22;10(2):240-247. doi: 10.1080/23328940.2022.2091901. eCollection 2023.

DOI:10.1080/23328940.2022.2091901
PMID:37332307
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10274552/
Abstract

The fingers have a large surface area to volume ratio (SA:V), minimal muscle mass, and potent vasoconstrictor capacity. These qualities make the fingers prone to heat loss and freezing injuries during whole-body or local cold exposure. Anthropologists have proposed that the large inter-individual variability in human finger anthropometrics may be an ecogeographic evolutionary adaptation, where shorter and thicker digits (i.e. smaller SA:V ratio) provide a favorable adaptation for cold climate natives. We hypothesized that the SA:V ratio of a digit has an inverse relationship with finger blood flux and finger temperature (T) during cooling and rewarming from cold. Fifteen healthy adults with no or limited cold experiment experience performed 10 min of baseline immersion in warm water (35.0 ± 0.1°C), 30 min in cold water (8.4 ± 0.2°C), and a final 10 min of rewarming in ambient air (~22°C, ~40% relative humidity). T and finger blood flux were measured continuously across multiple digits per participant. Average T (p = 0.05; R = 0.06) and area under the curve for T (p = 0.05; R = 0.07) during hand cooling showed significant, negative correlations to digit SA:V ratio. There was no relationship between digit SA:V ratio and blood flux (i.e. average blood flux and AUC) during cooling as well as between SA:V ratio and digit temperature (i.e. average T and AUC) or blood flux (i.e. average blood flux and AUC) during rewarming. Overall, digit anthropometrics do not appear to play a dominant role in extremity cold response.

摘要

手指具有较大的表面积与体积比(SA:V)、最小的肌肉量以及强大的血管收缩能力。这些特性使得手指在全身或局部冷暴露期间容易出现热量散失和冻伤。人类学家提出,人类手指人体测量学中较大的个体间差异可能是一种生态地理进化适应,即较短且较粗的手指(即较小的SA:V比)为寒冷气候地区的本地人提供了一种有利的适应性。我们假设,在从寒冷状态冷却和复温过程中,手指的SA:V比与手指血流量和手指温度(T)呈负相关。15名没有或仅有有限冷实验经验的健康成年人,先在温水中(35.0±0.1°C)进行10分钟的基线浸泡,然后在冷水中(8.4±0.2°C)浸泡30分钟,最后在环境空气中(约22°C,约40%相对湿度)复温10分钟。对每位参与者的多个手指连续测量T和手指血流量。手部冷却期间的平均T(p = 0.05;R = 0.06)和T的曲线下面积(p = 0.05;R = 0.07)与手指SA:V比呈显著负相关。在冷却过程中,手指SA:V比与血流量(即平均血流量和AUC)之间没有关系,在复温过程中,SA:V比与手指温度(即平均T和AUC)或血流量(即平均血流量和AUC)之间也没有关系。总体而言,手指人体测量学在肢体冷反应中似乎并不起主导作用。