A wide variety of electrochemical sweat sensors are recently being developed for real-time monitoring of biomarkers. However, from a physiological perspective, little is known about how sweat biomarkers change over time. This paper presents a method to collect and analyze sweat to identify inter and intraindividual variations of electrolytes during exercise. A new microfluidic sweat collection system is developed which consists of a patch covering the collection surface and a sequence of reservoirs. Na+, Cl- and K+ are measured with ion chromatography afterwards. The measurements show that with the new collector, variations in these ion concentrations can be measured reliably over time.</p
Sweat sensors allow for new unobtrusive ways to continuously monitor an athlete's performance and he...
Wearable sweat sensing is a rapidly rising research area driven by its promising potential in health...
The measurement of sweat electrolytes has a number of important applications including monitorin...
Sweat analysis has the potential to become a new method in the wearable monitoring technology market...
Wearable sweat sensing is a rapidly rising research area driven by its promising potential in health...
Herein, the reproducibility and a double validation of on-body measurements provided by new wearable...
Sweat sensors introduced in recent years have targeted a variety of sweat features and biomarkers fo...
Herein, the reproducibility and a double validation of on-body measurements provided by new wearable...
In sport, exercise and healthcare settings, there is a need for continuous, non-invasive monitoring ...
We report a new method for the real-time quantitative analysis of sodium in human sweat,consolidatin...
Capabilities in health monitoring enabled by capture and quantitative chemical analysis of sweat cou...
Wearable chemical sensors have the potential to provide new methods of non-invasive physiological me...
Sweat sensors that can continuously sample sweat are critical for determining the time-dependent phy...
We report a new method for the real-time quantitative analysis of sodium in human sweat, consolidat...
This report presents a proof-of-concept for a sensor measuring the ionic concentrations in sweat usi...
Sweat sensors allow for new unobtrusive ways to continuously monitor an athlete's performance and he...
Wearable sweat sensing is a rapidly rising research area driven by its promising potential in health...
The measurement of sweat electrolytes has a number of important applications including monitorin...
Sweat analysis has the potential to become a new method in the wearable monitoring technology market...
Wearable sweat sensing is a rapidly rising research area driven by its promising potential in health...
Herein, the reproducibility and a double validation of on-body measurements provided by new wearable...
Sweat sensors introduced in recent years have targeted a variety of sweat features and biomarkers fo...
Herein, the reproducibility and a double validation of on-body measurements provided by new wearable...
In sport, exercise and healthcare settings, there is a need for continuous, non-invasive monitoring ...
We report a new method for the real-time quantitative analysis of sodium in human sweat,consolidatin...
Capabilities in health monitoring enabled by capture and quantitative chemical analysis of sweat cou...
Wearable chemical sensors have the potential to provide new methods of non-invasive physiological me...
Sweat sensors that can continuously sample sweat are critical for determining the time-dependent phy...
We report a new method for the real-time quantitative analysis of sodium in human sweat, consolidat...
This report presents a proof-of-concept for a sensor measuring the ionic concentrations in sweat usi...
Sweat sensors allow for new unobtrusive ways to continuously monitor an athlete's performance and he...
Wearable sweat sensing is a rapidly rising research area driven by its promising potential in health...
The measurement of sweat electrolytes has a number of important applications including monitorin...