首页> 外文期刊>Journal of applied physiology >Thermosensory micromapping of warm and cold sensitivity across glabrous and hairy skin of male and female hands and feet
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Thermosensory micromapping of warm and cold sensitivity across glabrous and hairy skin of male and female hands and feet

机译:热敏镜微量贴图,横穿毛茸茸的男性和女性手和脚的毛茸茸皮肤

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摘要

The ability of hands and feet to convey skin thermal sensations is an important contributor to our experience of the surrounding world. Surprisingly, the detailed topographical distribution of warm and cold thermosensitivity across hands and feet has not been mapped, although sensitivity maps exist for touch and pain. Using a recently developed quantitative sensory test, we mapped warm and cold thermosensitivity of 103 skin sites over glabrous and hairy skin of hands and feet in male (M; 30.2 +/- 5.8 yr) and female (F; 27.7 +/- 5.1 yr) adults matched for body surface area (M: 1.77 +/- 0.2 m(2); F: 1.64 +/- 0.1 m(2); P = 0.155). Findings indicated that warm and cold thermosensitivity varies by fivefold across glabrous and hairy skin of hands and feet and that hands (warm/cold sensitivity: 1.25/2.14 vote/degrees C) are twice as sensitive as the feet (warm/cold sensitivity: 0.51/0.99 vote/degrees C). Opposite to what is known for touch and pain sensitivity, we observed a characteristic distal-to-proximal increase in thermosensitivity over both hairy and glabrous skin (i.e., from fingers and toes to body of hands and feet), and found that hairy skin is more sensitive than glabrous. Finally, we show that body surface area-matched men and women presented small differences in thermosensitivity and that these differences are constrained to glabrous skin only. Our high-density thermosensory micromapping provides the most detailed thermosensitivity maps of hands and feet in young adults available to date. These maps offer a window into peripheral and central mechanisms of thermosensory integration in humans and will help guide future developments in smart skin and sensory neuroprostheses, in wearable, energy-efficient personal comfort systems, and in sport and protective clothing.
机译:手脚传达皮肤热敏的能力是我们周围世界经验的重要贡献者。令人惊讶的是,虽然存在触摸和疼痛存在敏感性图,但尚未映射在手和脚上的温暖和冷热敏感性的详细地形分布尚未映射。使用最近开发的定量感官测试,我们在雄性(m; 30.2 +/- 5.8yr)和女性(f; 27.7 +/- 5.1yr)上映射了103个皮肤部位的温暖和冷热敏感性103个皮肤部位和毛茸茸的皮肤)对于体表面积匹配的成年人(M:1.77 +/- 0.2米(2); F:1.64 +/- 0.1 m(2); p = 0.155)。调查结果表明,温暖和冷热敏感度在手脚和脚的无毛和毛茸茸皮肤上变化,手(温暖/冷灵敏度:1.25 / 2.14投票/℃)是脚的敏感的两倍(温暖/冷灵敏度:0.51 / 0.99投票/级C)。与触摸和疼痛敏感度所知的相反,我们观察到毛茸茸和无毛皮肤的热敏感性的特征远端增加(即,从手指和脚趾到手脚的身体),发现毛茸茸的皮肤是比无毛更敏感。最后,我们表明身体面积匹配的男性和女性呈现出热敏率小的差异,并且这些差异仅受到无毛皮肤的限制。我们的高密度热敏镜微映射为迄今为止的年轻成年人提供了最详细的手和脚的热敏感性地图。这些地图提供了一种窗户,进入了人类的外围和热敏感染集成的窗口,并有助于指导智能皮肤和感官神经调节的未来发展,穿着可穿戴,节能的个人舒适系统以及运动和防护服。

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