AbstractThis paper presents the fabrication and the performance of a novel, wearable, robust, flexible and disposable microfluidic device which incorporates micro-Light Emitting Diodes (μ-LEDs) as a detection system, for monitoring in real time mode the pH of the sweat generated during an exercise period. Up to now sweat analysis has been carried out using awkward methods of collecting sweat followed by laboratory analysis. The approach presented here can provide immediate feedback regarding sweat composition to an athlete and coach. The great advantage of sweat analysis is the fact that it is a completely non-invasive means of analyzing the wearer’s physiological state and ensuring their health and well-being
Among the multiple healthcare applications and systems exploiting sensing RFID boards, monitoring sw...
Wearable sweat sensing is a rapidly rising research area driven by its promising potential in health...
This work presents the fabrication, characterisation and the performance of a wearable, robust, flex...
This paper presents the fabrication and the performance of a novel, wearable, robust, flexible and d...
AbstractThis paper presents the fabrication and the performance of a novel, wearable, robust, flexib...
Abstract — In this work a robust, non-invasive and wearable micro-fluidic system was developed and e...
AbstractIn this work the development of an autonomous, robust and wearable micro-fluidic platform ca...
In this work the development of an autonomous, robust and wearable micro-fluidic platform capable of...
In this work the development of an autonomous, robust and wearable micro-fluidic platform capable of...
Here we present the fabrication and the performance of a novel, wearable, robust, flexible and dispo...
In this work a robust, non-invasive and wearable micro-fluidic system was developed and employed to ...
We present how a simple, autonomous, wearable, robust, flexible and disposable microfluidic chemical...
Real-time analysis of sweat loss is an exciting prospect for the sports industry. Replacing the flu...
Capabilities in health monitoring enabled by capture and quantitative chemical analysis of sweat cou...
Among the multiple healthcare applications and systems exploiting sensing RFID boards, monitoring sw...
Wearable sweat sensing is a rapidly rising research area driven by its promising potential in health...
This work presents the fabrication, characterisation and the performance of a wearable, robust, flex...
This paper presents the fabrication and the performance of a novel, wearable, robust, flexible and d...
AbstractThis paper presents the fabrication and the performance of a novel, wearable, robust, flexib...
Abstract — In this work a robust, non-invasive and wearable micro-fluidic system was developed and e...
AbstractIn this work the development of an autonomous, robust and wearable micro-fluidic platform ca...
In this work the development of an autonomous, robust and wearable micro-fluidic platform capable of...
In this work the development of an autonomous, robust and wearable micro-fluidic platform capable of...
Here we present the fabrication and the performance of a novel, wearable, robust, flexible and dispo...
In this work a robust, non-invasive and wearable micro-fluidic system was developed and employed to ...
We present how a simple, autonomous, wearable, robust, flexible and disposable microfluidic chemical...
Real-time analysis of sweat loss is an exciting prospect for the sports industry. Replacing the flu...
Capabilities in health monitoring enabled by capture and quantitative chemical analysis of sweat cou...
Among the multiple healthcare applications and systems exploiting sensing RFID boards, monitoring sw...
Wearable sweat sensing is a rapidly rising research area driven by its promising potential in health...
This work presents the fabrication, characterisation and the performance of a wearable, robust, flex...