Efficient Skin Temperature Sensor and Stable Gel-Less Sticky ECG Sensor for a Wearable Flexible Healthcare Patch

Adv Healthc Mater. 2017 Sep;6(17). doi: 10.1002/adhm.201700495. Epub 2017 Jun 29.

Abstract

Wearable, flexible healthcare devices, which can monitor health data to predict and diagnose disease in advance, benefit society. Toward this future, various flexible and stretchable sensors as well as other components are demonstrated by arranging materials, structures, and processes. Although there are many sensor demonstrations, the fundamental characteristics such as the dependence of a temperature sensor on film thickness and the impact of adhesive for an electrocardiogram (ECG) sensor are yet to be explored in detail. In this study, the effect of film thickness for skin temperature measurements, adhesive force, and reliability of gel-less ECG sensors as well as an integrated real-time demonstration is reported. Depending on the ambient conditions, film thickness strongly affects the precision of skin temperature measurements, resulting in a thin flexible film suitable for a temperature sensor in wearable device applications. Furthermore, by arranging the material composition, stable gel-less sticky ECG electrodes are realized. Finally, real-time simultaneous skin temperature and ECG signal recordings are demonstrated by attaching an optimized device onto a volunteer's chest.

Keywords: electrocardiogram sensors; film thickness dependencies; healthcare patches; temperature sensors.

MeSH terms

  • Electric Impedance
  • Electrocardiography / instrumentation*
  • Gels
  • Nanotubes, Carbon / chemistry
  • Polyethylene Terephthalates / chemistry
  • Skin Temperature / physiology*
  • Transdermal Patch*
  • Wearable Electronic Devices*

Substances

  • Gels
  • Nanotubes, Carbon
  • Polyethylene Terephthalates