CD Tesis
Analisis Distribusi Temperatur Dan Pemetaan Panas Penyerapan Radiasi Terahertz Dalam Jaringan Biologis Menggunakan Model Simulink- Matlab Berbasis Matematika
Tissue temperature greatly affects the condition of the body at the time of
the interaction between THz radiation and biological tissue, so it is necessary to
control the heat in the tissue so that the body's condition remains stable.
Biophysical computational modeling techniques can help predict the effect that
will occur due to the interaction of THz radiation on biological tissue and can
control heat on the tissue by predicting the temperature at which the tissue
penetration occurs. This research applies biophysical computation techniques
using the simulink-matlab model with the application Wolfram mathematica 9.0
using a radiation frequency range of 0.1 - 1 THz with a power of 50 - 150 mW
and a power density of 5 - 25 mW / mm3 to solve Maxwell's basic equations and
models. biopanas for modification and calculation of THz radiation scattering
factors that affect thermal conductivity and heat production rate in tissue. The
results showed that the large power density caused the temperature distribution to
the depth of the cattle tissue to be wider and the heat production was greater at
the time of network penetration. Heat mapping simulation results show that fat
tissue has less heat production than others. This is because the fat tissue has a
higher water content so that THz radiation will be easily absorbed at the
beginning of penetration which causes the radiation energy to decrease according
to depth penetration. The comparison of experimental data and modeling results
shows a standard deviation of 0.08 with an error percentage of 1.09%.
Keywords: Terahertz Radiation, Temperature Distribution, Heat Mapping,
Simulink-Matlab, Biological Network
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