SWeaT · Smart Wearable for Fatigue Tracking
Horizon 2020 — Marie Skłodowska-Curie Actions
- Duration
- 2020-07-15 → 2022-07-14
- EU contribution
- €183,473
- Participants
- 1
- Scheme
- MSCA-IF
Lines connect the coordinator with its partners.
Results in brief
Smart Wearable for Fatigue Tracking
The SWeaT project aims to develop a wearable technology for monitoring athletes hydration which, under the surveillance coaches and physicians, can effectively improve athletic performances without incurring in overtraining or even injuries. For this purpose the device provides analytical data from body sweat, naturally produced during physical effort. Promising commercial exploitation, and thus, impact in every-day life of amateur and professional athletes, is envisioned. Personal information regarding inner body dynamics at molecular level empower athletes to their best possibilities while avoiding the need of expensive and time-consuming specialized analysis. Nevertheless, this promise holds true only if the sweat-sensing devices can be mass-produced. For all these reasons, SWeaT combines the up-scalable microchip technology together with additive manufacturing on flexible materials for best compliance to human body. Combined, these technologies enable the sweat-sensing device to be lightweight and unobtrusive, easy to use, compatible with current fitness monitors while substantially retaining the accuracy and precision of a chemical laboratory run by specialized technicians.
Data: CORDIS, © European Union
Project objective
Internet-of-Wearables (IoW) is already a reality embodied in commercial products for fitness, such as Fitbit, Apple Watch. These devices record activity data (speed, distance, heart-rate, impact forces) and are connected to the Cloud through Bluetooth enabled access points. Smart wearables of the next generation of will integrate bio-chemical sensing to capture body dynamics at molecular level and in real time. Sweat, naturally produced by the human body, will enable non-invasive access to rich sets of bio-markers. However, sweat-based IoW devices face many challenges: bio-compatibility, flexibility, durability, data integrity, low-power consumption, lightness in weight and low-cost construction.SWeaT (Smart Wearable for Fatigue Tracking) will address all these issues and will enable coaches, physicians and trainers to better analyze the performances/fatigue trade-off by real-time monitoring of athletes’ parameters.To this purpose, SWeaT will develop a low-cost wearable device capable of sensing and recording a full set of relevant electrolytes concentration in sweat, sweat rate and temperature. The device will take advantage of: (i) a custom IC in low-cost CMOS technology to provide early readout and signal digitalization (ii) micro-fluidic paths to properly manage the sweat flow during real-time measurement. A Bluetooth Low Energy module will be embedded in a sport gear to enable lightweight, minimal invasiveness, 10-to-100-meter wireless range communication. SWeaT plans to reach TRL 5 and to develop a Minimum Valuable Product by the end of the action to fully exploit the developed technology.SWeaT will be implemented at the University of Pisa with a secondment in Barcelona at the Microelectronic Institute. Through SWeaT and its tailored training plan, Dr. Dei will greatly enrich his scientific and soft skills towards his next career challenge.
Original text from CORDIS.
Participants
- UNIVERSITA DI PISA · PisaCoordinatorItaly
Links
Data: CORDIS, © European Union
