Abstract—The terahertz (THz) propagation in real tissues causes heating as with any other electromagnetic radiation propagation. A finite-element (FE) model that provides numerical solutions to the heat conduction equation coupled with realistic models of tissues is employed in this study to compute the temperature raise due to THz propagation. The results indicate that the temperature raise is dependent on the tissue type and is highly localized. The developed FE model was validated through obtaining solutions for the steady-state case and showing that they were in good agreement with the analytical solutions. These types of models can also enable computation of specific absorption rates, which are very critical in planning/setting up expe...
The paper investigates the heating of tissues exposed to millimeter and sub-millimeter electromagne...
Terahertz (THz) frequency radiation, 0.1 THz to 20 THz, is being investigated for biomedical imaging...
Terahertz (THz) frequency radiation, 0.1 THz to 20 THz, is being investigated for biomedical imaging...
Theterahertz (THz) propagation in real tissues causes heating as with any other electromagnetic radi...
Theterahertz (THz) propagation in real tissues causes heating as with any other electromagnetic radi...
This paper investigates the effect of relevant physical parameters on transient temperature elevatio...
This paper investigates the effect of relevant physical parameters on transient temperature elevatio...
Abstract The field of wireless communication has witnessed tremendous advancements in the past few d...
We report a numerical study of the induced electric fields and specific absorption rate (SAR) produc...
We report a numerical study of the induced electric fields and specific absorption rate (SAR) produc...
The thermal response of human tissues exposed to a focused beam terahertz electromagnetic radiation ...
This work is built on the Mathematica-Simulink transformed modeling which emphasizes on the rate of ...
Reliable and accurate information regarding the heat distribution inside biologica.I tissue due to m...
Modelling the interaction of terahertz (THz) radiation with biological tissue poses many interesting...
Terahertz (THz) frequency radiation, 0.1 THz to 20 THz, is being investigated for biomedical imaging...
The paper investigates the heating of tissues exposed to millimeter and sub-millimeter electromagne...
Terahertz (THz) frequency radiation, 0.1 THz to 20 THz, is being investigated for biomedical imaging...
Terahertz (THz) frequency radiation, 0.1 THz to 20 THz, is being investigated for biomedical imaging...
Theterahertz (THz) propagation in real tissues causes heating as with any other electromagnetic radi...
Theterahertz (THz) propagation in real tissues causes heating as with any other electromagnetic radi...
This paper investigates the effect of relevant physical parameters on transient temperature elevatio...
This paper investigates the effect of relevant physical parameters on transient temperature elevatio...
Abstract The field of wireless communication has witnessed tremendous advancements in the past few d...
We report a numerical study of the induced electric fields and specific absorption rate (SAR) produc...
We report a numerical study of the induced electric fields and specific absorption rate (SAR) produc...
The thermal response of human tissues exposed to a focused beam terahertz electromagnetic radiation ...
This work is built on the Mathematica-Simulink transformed modeling which emphasizes on the rate of ...
Reliable and accurate information regarding the heat distribution inside biologica.I tissue due to m...
Modelling the interaction of terahertz (THz) radiation with biological tissue poses many interesting...
Terahertz (THz) frequency radiation, 0.1 THz to 20 THz, is being investigated for biomedical imaging...
The paper investigates the heating of tissues exposed to millimeter and sub-millimeter electromagne...
Terahertz (THz) frequency radiation, 0.1 THz to 20 THz, is being investigated for biomedical imaging...
Terahertz (THz) frequency radiation, 0.1 THz to 20 THz, is being investigated for biomedical imaging...