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Regional variations in transepidermal water loss, eccrine sweat gland density, sweat secretion rates and electrolyte composition in resting and exercising humans
Literature from the past 168 years has been filtered to provide a unified summary of the regional distribution of cutaneous water and electrolyte losses. The former occurs via transepidermal water vapour diffusion and secretion from the eccrine sweat glands. Daily insensible water losses for a stand...
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Formato: | Online Artículo Texto |
Lenguaje: | English |
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BioMed Central
2013
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3710196/ https://www.ncbi.nlm.nih.gov/pubmed/23849497 http://dx.doi.org/10.1186/2046-7648-2-4 |
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author | Taylor, Nigel AS Machado-Moreira, Christiano A |
author_facet | Taylor, Nigel AS Machado-Moreira, Christiano A |
author_sort | Taylor, Nigel AS |
collection | PubMed |
description | Literature from the past 168 years has been filtered to provide a unified summary of the regional distribution of cutaneous water and electrolyte losses. The former occurs via transepidermal water vapour diffusion and secretion from the eccrine sweat glands. Daily insensible water losses for a standardised individual (surface area 1.8 m(2)) will be 0.6–2.3 L, with the hands (80–160 g.h(−1)) and feet (50–150 g.h(−1)) losing the most, the head and neck losing intermediate amounts (40–75 g.h(−1)) and all remaining sites losing 15–60 g.h(−1). Whilst sweat gland densities vary widely across the skin surface, this same individual would possess some 2.03 million functional glands, with the highest density on the volar surfaces of the fingers (530 glands.cm(−2)) and the lowest on the upper lip (16 glands.cm(−2)). During passive heating that results in a resting whole-body sweat rate of approximately 0.4 L.min(−1), the forehead (0.99 mg.cm(−2).min(−1)), dorsal fingers (0.62 mg.cm(−2).min(−1)) and upper back (0.59 mg.cm(−2).min(−1)) would display the highest sweat flows, whilst the medial thighs and anterior legs will secrete the least (both 0.12 mg.cm(−2).min(−1)). Since sweat glands selectively reabsorb electrolytes, the sodium and chloride composition of discharged sweat varies with secretion rate. Across whole-body sweat rates from 0.72 to 3.65 mg.cm(−2).min(−1), sodium losses of 26.5–49.7 mmol.L(−1) could be expected, with the corresponding chloride loss being 26.8–36.7 mmol.L(−1). Nevertheless, there can be threefold differences in electrolyte losses across skin regions. When exercising in the heat, local sweat rates increase dramatically, with regional glandular flows becoming more homogeneous. However, intra-regional evaporative potential remains proportional to each local surface area. Thus, there is little evidence that regional sudomotor variations reflect an hierarchical distribution of sweating either at rest or during exercise. |
format | Online Article Text |
id | pubmed-3710196 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2013 |
publisher | BioMed Central |
record_format | MEDLINE/PubMed |
spelling | pubmed-37101962013-07-15 Regional variations in transepidermal water loss, eccrine sweat gland density, sweat secretion rates and electrolyte composition in resting and exercising humans Taylor, Nigel AS Machado-Moreira, Christiano A Extrem Physiol Med Review Literature from the past 168 years has been filtered to provide a unified summary of the regional distribution of cutaneous water and electrolyte losses. The former occurs via transepidermal water vapour diffusion and secretion from the eccrine sweat glands. Daily insensible water losses for a standardised individual (surface area 1.8 m(2)) will be 0.6–2.3 L, with the hands (80–160 g.h(−1)) and feet (50–150 g.h(−1)) losing the most, the head and neck losing intermediate amounts (40–75 g.h(−1)) and all remaining sites losing 15–60 g.h(−1). Whilst sweat gland densities vary widely across the skin surface, this same individual would possess some 2.03 million functional glands, with the highest density on the volar surfaces of the fingers (530 glands.cm(−2)) and the lowest on the upper lip (16 glands.cm(−2)). During passive heating that results in a resting whole-body sweat rate of approximately 0.4 L.min(−1), the forehead (0.99 mg.cm(−2).min(−1)), dorsal fingers (0.62 mg.cm(−2).min(−1)) and upper back (0.59 mg.cm(−2).min(−1)) would display the highest sweat flows, whilst the medial thighs and anterior legs will secrete the least (both 0.12 mg.cm(−2).min(−1)). Since sweat glands selectively reabsorb electrolytes, the sodium and chloride composition of discharged sweat varies with secretion rate. Across whole-body sweat rates from 0.72 to 3.65 mg.cm(−2).min(−1), sodium losses of 26.5–49.7 mmol.L(−1) could be expected, with the corresponding chloride loss being 26.8–36.7 mmol.L(−1). Nevertheless, there can be threefold differences in electrolyte losses across skin regions. When exercising in the heat, local sweat rates increase dramatically, with regional glandular flows becoming more homogeneous. However, intra-regional evaporative potential remains proportional to each local surface area. Thus, there is little evidence that regional sudomotor variations reflect an hierarchical distribution of sweating either at rest or during exercise. BioMed Central 2013-02-01 /pmc/articles/PMC3710196/ /pubmed/23849497 http://dx.doi.org/10.1186/2046-7648-2-4 Text en Copyright © 2013 Taylor and Machado-Moreira; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Review Taylor, Nigel AS Machado-Moreira, Christiano A Regional variations in transepidermal water loss, eccrine sweat gland density, sweat secretion rates and electrolyte composition in resting and exercising humans |
title | Regional variations in transepidermal water loss, eccrine sweat gland density, sweat secretion rates and electrolyte composition in resting and exercising humans |
title_full | Regional variations in transepidermal water loss, eccrine sweat gland density, sweat secretion rates and electrolyte composition in resting and exercising humans |
title_fullStr | Regional variations in transepidermal water loss, eccrine sweat gland density, sweat secretion rates and electrolyte composition in resting and exercising humans |
title_full_unstemmed | Regional variations in transepidermal water loss, eccrine sweat gland density, sweat secretion rates and electrolyte composition in resting and exercising humans |
title_short | Regional variations in transepidermal water loss, eccrine sweat gland density, sweat secretion rates and electrolyte composition in resting and exercising humans |
title_sort | regional variations in transepidermal water loss, eccrine sweat gland density, sweat secretion rates and electrolyte composition in resting and exercising humans |
topic | Review |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3710196/ https://www.ncbi.nlm.nih.gov/pubmed/23849497 http://dx.doi.org/10.1186/2046-7648-2-4 |
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