Nothing Special   »   [go: up one dir, main page]

Kumar et al., 2019 - Google Patents

Variable thermal conductivity approach for bioheat transfer during thermal ablation

Kumar et al., 2019

View PDF
Document ID
12496732419990898604
Author
Kumar R
Vashishth A
Ghangas S
Publication year
Publication venue
Arab Journal of Basic and Applied Sciences

External Links

Snippet

The aim of the article is to present a mathematical model that predicts tissue temperature during thermal therapy (thermal ablation). The mathematical formulation of variable thermal conductivity of thermal wave bioheat transfer model for a generalized coordinate system due …
Continue reading at www.tandfonline.com (PDF) (other versions)

Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Detecting, measuring or recording for diagnostic purposes; Identification of persons
    • A61B5/01Measuring temperature of body parts; Diagnostic temperature sensing, e.g. for malignant or inflammed tissue
    • A61B5/015By temperature mapping of body part

Similar Documents

Publication Publication Date Title
Saeed et al. Finite element analyses of nonlinear DPL bioheat model in spherical tissues using experimental data
Hobiny et al. Analytical solutions of fractional bioheat model in a spherical tissue
Hobiny et al. Theoretical analysis of thermal damages in skin tissue induced by intense moving heat source
Hobiny et al. Nonlinear analysis of dual-phase lag bio-heat model in living tissues induced by laser irradiation
Alzahrani et al. Analytical solutions of thermal damage in living tissues due to laser irradiation
Ezzat Fractional thermo-viscoelastic response of biological tissue with variable thermal material properties
Singh et al. Solution of fractional bioheat equations by finite difference method and HPM
Giordano et al. Fundamental solutions to the bioheat equation and their application to magnetic fluid hyperthermia
Fazlali et al. Analytical solution of thermal wave models on skin tissue under arbitrary periodic boundary conditions
Dutta et al. Thermal wave propagation in blood perfused tissues under hyperthermia treatment for unique oscillatory heat flux at skin surface and appropriate initial condition
Lee et al. Estimation of surface heat flux and temperature distributions in a multilayer tissue based on the hyperbolic model of heat conduction
Park et al. A thermoelastic deformation model of tissue contraction during thermal ablation
Hafid et al. Fast inverse prediction of the freezing front in cryosurgery
Varon et al. Combined parameter and state estimation in the radio frequency hyperthermia treatment of cancer
Kumari et al. Numerical solution of DPL heat transfer model in multi-layer biological skin tissue of the living body during hyperthermia treatment
Chaudhary et al. Numerical simulation of the skin tissue subjected to hyperthermia treatment using a nonlinear DPL model
Ooi et al. Comparison between single-and dual-porosity models for fluid transport in predicting lesion volume following saline-infused radiofrequency ablation
Li et al. The phase change thermoelastic analysis of biological tissue with variable thermal properties during cryosurgery
Alzahrani et al. A numerical solution of nonlinear DPL bioheat model in biological tissue due to laser irradiations
Sur et al. Transient heating in a spherical tissue due to thermal therapy in the context of memory-dependent heat transport law
Kumar et al. Variable thermal conductivity approach for bioheat transfer during thermal ablation
Kumari et al. A numerical study of space‐fractional three‐phase‐lag bioheat transfer model during thermal therapy
Liu et al. Inverse investigation of non-Fourier heat conduction in tissue
Mondal et al. Healing of the cancer tissues under the action of moving heat and non-local Caputo–Fabrizio heat transport
Filipoiu et al. Computer-aided analysis of the heat transfer in skin tissue