Development of Body-Tissue Temperature-Control Transducer

Author:

Dumciene Audrone,Sipaviciene Saule

Abstract

The aim of this study was to develop a transducer for non-invasive temperature measurement in deeper tissue layers during tissue cooling. Simulation of the temperature field distribution in human tissues and the transducer were done, and the influence of transducer structure and material properties were studied. Using simulation results, the experimental transducer was designed for temperature measurement in deeper tissue layers during cooling. The temperature measurements with the needle thermometer and the transducer were well correlated at both before tissue cooling r = 0.723 and after cooling r = 0.945, and the temperature difference was no more than ±0.2 °C.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Reference58 articles.

1. Novel Zero-Heat-Flux Deep Body Temperature Measurement in Lower Extremity Vascular and Cardiac Surgery

2. 3M™ Spot On™ Temperature Monitoring Systemhttps://multimedia.3m.com/mws/media/878163O/spoton-system-brochure.pdf

3. Non-invasive continuous core temperature measurement by zero heat flux

4. Cold- and Hot-Pack Contrast Therapy: Subcutaneous and Intramuscular Temperature Change;Myrer;J. Athletic Train.,1997

5. Effect of muscle temperature on leg extension force and short-term power output in humans

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