Skin-interfaced microfluidic system with personalized sweating rate and sweat chloride analytics for sports science applications.

Skin-interfaced microfluidic system with personalized sweating rate and sweat chloride analytics for sports science applications.
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DOI:
10.1126/sciadv.abe3929
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发表时间:
2020-12
期刊:
影响因子:
13.6
通讯作者:
Ghaffari R
Ghaffari R
中科院分区:
综合性期刊1区
文献类型:
--
作者:
Baker LB;Model JB;Barnes KA;Anderson ML;Lee SP;Lee KA;Brown SD;Reimel AJ;Roberts TJ;Nuccio RP;Bonsignore JL;Ungaro CT;Carter JM;Li W;Seib MS;Reeder JT;Aranyosi AJ;Rogers JA;Ghaffari R

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Wearable microfluidic system enables remote analysis of sweat rate and chloride loss for assessing personalized fluid needs. Advanced capabilities in noninvasive, in situ monitoring of sweating rate and sweat electrolyte losses could enable real-time personalized fluid-electrolyte intake recommendations. Established sweat analysis techniques using absorbent patches require post-collection harvesting and benchtop analysis of sweat and are thus impractical for ambulatory use. Here, we introduce a skin-interfaced wearable microfluidic device and smartphone image processing platform that enable analysis of regional sweating rate and sweat chloride concentration ([Cl−]). Systematic studies (n = 312 athletes) establish significant correlations for regional sweating rate and sweat [Cl−] in a controlled environment and during competitive sports under varying environmental conditions. The regional sweating rate and sweat [Cl−] results serve as inputs to algorithms implemented on a smartphone software application that predicts whole-body sweating rate and sweat [Cl−]. This low-cost wearable sensing approach could improve the accessibility of physiological insights available to sports scientists, practitioners, and athletes to inform hydration strategies in real-world ambulatory settings.
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