Non-Fourier based thermal-mechanical tissue damage prediction for thermal ablation.

Abstract:

:Prediction of tissue damage under thermal loads plays important role for thermal ablation planning. A new methodology is presented in this paper by combing non-Fourier bio-heat transfer, constitutive elastic mechanics as well as non-rigid motion of dynamics to predict and analyze thermal distribution, thermal-induced mechanical deformation and thermal-mechanical damage of soft tissues under thermal loads. Simulations and comparison analysis demonstrate that the proposed methodology based on the non-Fourier bio-heat transfer can account for the thermal-induced mechanical behaviors of soft tissues and predict tissue thermal damage more accurately than classical Fourier bio-heat transfer based model.

journal_name

Bioengineered

journal_title

Bioengineered

authors

Li X,Zhong Y,Smith J,Gu C

doi

10.1080/21655979.2016.1227609

subject

Has Abstract

pub_date

2017-01-02 00:00:00

pages

71-77

issue

1

eissn

2165-5979

issn

2165-5987

journal_volume

8

pub_type

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