Bio-thermo-mechanics behavior in living viscoelastic tissue under the fractional dual-phase-lag theory

MA Ezzat - Archive of Applied Mechanics, 2021 - Springer
Viscoelasticity is a natural property of biological tissue that is often used as a diagnostic
parameter of cancer diagnosis. Recently, it was discovered that the fractional calculus …

[HTML][HTML] Bio-heat transfer analysis based on fractional derivative and memory-dependent derivative heat conduction models

Q Zhang, Y Sun, J Yang - Case Studies in Thermal Engineering, 2021 - Elsevier
The fractional derivative (FD) and memory-dependent derivative (MDD) are efficient
methods to predict the transient thermal responses. In the present paper, for the first time, the …

Thermal mapping the eye: A critical review of advances in infrared imaging for disease detection

J Persiya, A Sasithradevi - Journal of Thermal Biology, 2024 - Elsevier
Infrared thermography (IRT) has become more accessible due to technological
advancements, making thermal cameras more affordable. Infrared thermal cameras capture …

Refined dual-phase-lag theory for the 1D behavior of skin tissue under ramp-type heating

AM Zenkour, T Saeed, AM Aati - Materials, 2023 - mdpi.com
In this article, a mathematical analysis of thermoelastic skin tissue is presented based on a
refined dual-phase-lag (DPL) thermal conduction theory that considers accounting for the …

[HTML][HTML] Thermal management in a biological tissue in order to destroy tissue under local heating process

P Barnoon, F Bakhshandehfard - Case Studies in Thermal Engineering, 2021 - Elsevier
In this study, the thermal management in a biological tissue in order to destroy tissue under
local heating process is carried out. A trocar is used as a tool to destroy tissue in the liver …

Numerical solution for fuzzy time-fractional cancer tumor model with a time-dependent net killing rate of cancer cells

H Zureigat, M Al-Smadi, A Al-Khateeb… - International Journal of …, 2023 - mdpi.com
Simple Summary One of the most recognized phenomena is the cancer tumor which
uncontrollably grows in human cells and spreads over the other parts of the body. It spreads …

[HTML][HTML] Thermoelastic responses of biological tissue under thermal shock based on three phase lag model

Q Zhang, Y Sun, J Yang - Case Studies in Thermal Engineering, 2021 - Elsevier
The paper dealt with the thermoelastic responses of biological tissues subjected to an
abrupt input of temperature load in the context of generalized thermoelasticity with three …

An in-depth examination of the fuzzy fractional cancer tumor model and its numerical solution by implicit finite difference method

H Zureigat, S Alshammari, M Alshammari, M Al-Smadi… - PloS one, 2024 - journals.plos.org
The cancer tumor model serves asa crucial instrument for understanding the behavior of
different cancer tumors. Researchers have employed fractional differential equations to …

Mathematical modeling of cancer tumor dynamics with multiple fuzzification approaches in fractional environment

M Qayyum, A Tahir - 2023 - Springer
Cancer progression arises from the accumulation of genetic mutations in cell proliferation
control genes. To efficiently treat these defected cells and restrict their proliferation …

[HTML][HTML] Bio-thermal non-equilibrium dynamics and thermal damage in biological tissues induced by multiple time pulse-laser irradiations

E Jawo, M Hassan, MMA Almazah - Case Studies in Thermal Engineering, 2024 - Elsevier
Background Laser therapy offers precise medical treatment by directing focused light beams
to specific areas without harming surrounding tissue. This precision is particularly valuable …