Scinovex
article Open AccessTop 1% cited

A soft, wearable microfluidic device for the capture, storage, and colorimetric sensing of sweat

Science Translational Medicine · 2016 · Vol. 8(366) · pp. 366ra165–366ra165
Ahyeon KohDaeshik KangYeguang XueSeungmin LeeRafal M. PielakJeonghyun KimTaehwan HwangSeunghwan MinAnthony BanksPhilippe BastienMegan MancoLiang WangKaitlyn R. AmmannKyung‐In JangPhillip WonSeungyong HanRoozbeh GhaffariUngyu PaikMarvin J. SlepianGuive BaloochYonggang HuangJohn A. Rogers

Abstract

Capabilities in health monitoring enabled by capture and quantitative chemical analysis of sweat could complement, or potentially obviate the need for, approaches based on sporadic assessment of blood samples. Established sweat monitoring technologies use simple fabric swatches and are limited to basic analysis in controlled laboratory or hospital settings. We present a collection of materials and device designs for soft, flexible, and stretchable microfluidic systems, including embodiments that integrate wireless communication electronics, which can intimately and robustly bond to the surface of the skin without chemical and mechanical irritation. This integration defines access points for a small set of sweat glands such that perspiration spontaneously initiates routing of sweat through a microfluidic network and set of reservoirs. Embedded chemical analyses respond in colorimetric fashion to markers such as chloride and hydronium ions, glucose, and lactate. Wireless interfaces to digital image capture hardware serve as a means for quantitation. Human studies demonstrated the functionality of this microfluidic device during fitness cycling in a controlled environment and during long-distance bicycle racing in arid, outdoor conditions. The results include quantitative values for sweat rate, total sweat loss, pH, and concentration of chloride and lactate.

Advanced Sensor and Energy Harvesting MaterialsAdvanced Chemical Sensor TechnologiesPolydiacetylene-based materials and applicationsMicrofluidicsSWEATWearable computerEccrine sweatBiomedical engineeringNanotechnologyComputer scienceChemistryMaterials scienceMedicine

MeSH terms

SmartphoneWearable Electronic DevicesAdolescentAdultAgedChildChloridesColorimetryEquipment DesignFemaleGlucoseHumansHydrogen-Ion ConcentrationImage Processing, Computer-AssistedMale

Funding

  • National Research Foundation of Korea
  • National Institutes of Health
Citations
1,257
FWCI
55.10
field-weighted impact
References
58
Percentile
100%
vs. same field & year
Citations per year
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.