A three-phase-lag (TPL) model is proposed to describe heat transfer in a finite domain skin tissue with temperature dependent metabolic heat generation. The Laplace transform method is applied to solve the problem. Three special types of heat flux are applied to the boundary of skin tissue for thermal therapeutic applications. The depth of tissue is influenced by the different oscillation heat flux. The comparison between the TPL and dual-phase-lag (DPL) models is analyzed and the effects of phase lag parameters (τq, τt and τv) and material (k*) on the tissue temperature distribution are presented graphically
This paper demonstrates a non-Fourier prediction methodology of triple-layer human skin tissue for d...
[[abstract]]This study focuses on the effect of the temperature response of a semi-infinite biologic...
In the present study, the temperature fluctuations in tissues based on Penne’s bio-heat transfer equ...
This article focuses on temperature response of skin tissue due to time-dependent surface heat fl...
The present work is concerned with the development and application of dual phase lag (DPL) based hea...
This paper studies the effect of micro-structural interaction on bioheat transfer in skin, which was...
Significant research efforts have been devoted in the past decades to accurately modelling the compl...
The paper dealt with the thermoelastic responses of biological tissues subjected to an abrupt input ...
To ensure personal safety and improve treatment efficiency in laser medical applications, one of the...
Copyright © 2013 Kuo-Chi Liu et al. This is an open access article distributed under the Creative Co...
The non-Fourier and Fourier thermal responses in one-dimensional single layer skin tissue under sele...
Abstract Laser-induced thermal therapy, due to its applications in various clinical treatments, has ...
Abstract A novel numerical model is developed for evaluating the temperature distribution on a two-d...
This paper demonstrates a non-Fourier prediction methodology of triple-layer human skin tissue for d...
AbstractThe non-Fourier and Fourier thermal responses in one-dimensional single layer skin tissue un...
This paper demonstrates a non-Fourier prediction methodology of triple-layer human skin tissue for d...
[[abstract]]This study focuses on the effect of the temperature response of a semi-infinite biologic...
In the present study, the temperature fluctuations in tissues based on Penne’s bio-heat transfer equ...
This article focuses on temperature response of skin tissue due to time-dependent surface heat fl...
The present work is concerned with the development and application of dual phase lag (DPL) based hea...
This paper studies the effect of micro-structural interaction on bioheat transfer in skin, which was...
Significant research efforts have been devoted in the past decades to accurately modelling the compl...
The paper dealt with the thermoelastic responses of biological tissues subjected to an abrupt input ...
To ensure personal safety and improve treatment efficiency in laser medical applications, one of the...
Copyright © 2013 Kuo-Chi Liu et al. This is an open access article distributed under the Creative Co...
The non-Fourier and Fourier thermal responses in one-dimensional single layer skin tissue under sele...
Abstract Laser-induced thermal therapy, due to its applications in various clinical treatments, has ...
Abstract A novel numerical model is developed for evaluating the temperature distribution on a two-d...
This paper demonstrates a non-Fourier prediction methodology of triple-layer human skin tissue for d...
AbstractThe non-Fourier and Fourier thermal responses in one-dimensional single layer skin tissue un...
This paper demonstrates a non-Fourier prediction methodology of triple-layer human skin tissue for d...
[[abstract]]This study focuses on the effect of the temperature response of a semi-infinite biologic...
In the present study, the temperature fluctuations in tissues based on Penne’s bio-heat transfer equ...