In vitro calibration of a system for measurement of in vivo convective heat transfer coefficient in animals

Author:

Tangwongsan Chanchana,Chachati Louay,Webster John G,Farrell Patrick V

Abstract

Abstract Background We need a sensor to measure the convective heat transfer coefficient during ablation of the heart or liver. Methods We built a minimally invasive instrument to measure the in vivo convective heat transfer coefficient, h in animals, using a Wheatstone-bridge circuit, similar to a hot-wire anemometer circuit. One arm is connected to a steerable catheter sensor whose tip is a 1.9 mm × 3.2 mm thin film resistive temperature detector (RTD) sensor. We used a circulation system to simulate different flow rates at 39°C for in vitro experiments using distilled water, tap water and saline. We heated the sensor approximately 5°C above the fluid temperature. We measured the power consumed by the sensor and the resistance of the sensor during the experiments and analyzed these data to determine the value of the convective heat transfer coefficient at various flow rates. Results From 0 to 5 L/min, experimental values of h in W/(m2·K) were for distilled water 5100 to 13000, for tap water 5500 to 12300, and for saline 5400 to 13600. Theoretical values were 1900 to 10700. Conclusion We believe this system is the smallest, most accurate method of minimally invasive measurement of in vivo h in animals and provides the least disturbance of flow.

Publisher

Springer Science and Business Media LLC

Subject

Radiology Nuclear Medicine and imaging,Biomedical Engineering,General Medicine,Biomaterials,Radiological and Ultrasound Technology

Cited by 6 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Fast‐Response Variable‐Stiffness Magnetic Catheters for Minimally Invasive Surgery;Advanced Science;2024-01-15

2. ECG Signal Acquisition Systems;Developments and Applications for ECG Signal Processing;2019

3. Coax-Fed Dipole-Type Applicator for Hepatic Cancer RF Ablation;Makara Journal of Technology;2018-05-01

4. RF-Powered Stent With Integrated Circuit Breaker for Safeguarded Wireless Hyperthermia Treatment;Journal of Microelectromechanical Systems;2015-10

5. Direct thermography—a new in vitro method to characterize temperature kinetics of ablation catheters;Journal of Interventional Cardiac Electrophysiology;2013-07-14

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