Real-Time Temperature Rise Estimation during Irreversible Electroporation Treatment through State-Space Modeling

Author:

Campelo Sabrina N.ORCID,Jacobs Edward J.,Aycock Kenneth N.ORCID,Davalos Rafael V.ORCID

Abstract

To evaluate the feasibility of real-time temperature monitoring during an electroporation-based therapy procedure, a data-driven state-space model was developed. Agar phantoms mimicking low conductivity (LC) and high conductivity (HC) tissues were tested under the influences of high (HV) and low (LV) applied voltages. Real-time changes in impedance, measured by Fourier Analysis SpecTroscopy (FAST) along with the known tissue conductivity and applied voltages, were used to train the model. A theoretical finite element model was used for external validation of the model, producing model fits of 95.8, 88.4, 90.7, and 93.7% at 4 mm and 93.2, 58.9, 90.0, and 90.1% at 10 mm for the HV-HC, LV-LC, HV-LC, and LV-HC groups, respectively. The proposed model suggests that real-time temperature monitoring may be achieved with good accuracy through the use of real-time impedance monitoring.

Funder

National Institutes of Health

Publisher

MDPI AG

Subject

Bioengineering

Cited by 4 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. Rapid estimation of electroporation-dependent tissue properties in canine lung tumors using a deep neural network;Biosensors and Bioelectronics;2024-01

2. Temperature Control System for Biological Tissues in Electroporation Studies;2023 7th International Symposium on Instrumentation Systems, Circuits and Transducers (INSCIT);2023-08-28

3. Spatiotemporal estimations of temperature rise during electroporation treatments using a deep neural network;Computers in Biology and Medicine;2023-07

4. Analytical Approaches of EMB at Multiple Scales;Physical Principles of Electro-Mechano-Biology;2023

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