Supplementary information files for article: 'Spatial and temporal migration of sweat: from skin to clothing'.
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Supplementary information files for article: 'Spatial and temporal migration of sweat: from skin to clothing'.Abstract:PURPOSE. Moisture accumulation in clothing affects human performance and productivity through its impact on thermal balance and various aspects of discomfort. Building on our laboratory’s work on mapping sweat production across the body, this study aimed to obtain detailed spatial and temporal maps showing how this sweat migrates into a single clothing layer (T-shirt) during physical exercise. METHOD. Eight male participants performed running exercise in a warm environment. Garment sweat absorption was mapped over a total running time of 50 min, in 10 separated running trials of different durations (5 min increments). After running, the garment was dissected into 22 different parts and local sweat absorption (ABSlocal) was quantified by weighing each garment part before and after drying. From ABSlocal, garment total sweat absorption (ABStotal) was estimated. RESULTS. After 50 min, Tcore rose from 37 ± 0.2 to 38.6 ± 0.3 °C, HR increased from 69 ± 15 to 163 ± 12 bpm (p
文章《汗液在皮肤与衣物之间的空间与时间迁移》的补充信息文件。摘要:目的。衣物中水分的积累通过影响人体的热平衡和不适感的各个方面,进而影响人的表现和生产力。本研究基于我们实验室在全身汗液产生映射方面的研究,旨在获取详细的时空图谱,展示汗液在运动过程中如何迁移至单一衣物层(T恤)。方法。八名男性受试者在温暖的环境中进行了跑步锻炼。对衣物的汗液吸收进行了50分钟总跑步时间内的映射,分为10次不同持续时间的跑步试验(每次5分钟增量)。跑步结束后,衣物被解剖成22个不同的部分,并通过称重每个衣物部分在干燥前后的重量来量化局部汗液吸收(ABSlocal)。根据ABSlocal,估计衣物的总汗液吸收(ABStotal)。结果。50分钟后,核心体温从37±0.2°C升高至38.6±0.3°C,心率从69±15 bpm增加至163±12 bpm(p
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