DESIGN AND SIMULATION OF NON-INVASIVE MICROWAVE ANTENNA FOR HYPERTHERMIA LIPOLYSIS SCHEME
Проектирование и моделирование неинвазивной микроволновой антенны для схемы гипертермического липолиза
2021-04-11
SCID: 54.1/kx737z48
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5.8 GHz ISM bandmicrowave hyperthermianon-invasive adipose tissue ablationrectangular horn antennaspecific absorption rate (SAR)
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Abstract (AI)
A Non-invasive hyperthermia ablation technique of adipose tissue using a microwave is proposed. It uses dielectric heating to heat the adipose tissue using a rectangular Horn antenna. A selection of operating frequency 5.8 GHz, as an industrial, scientific, and medical radio bands (ISM band), for concentrating electromagnetic (EM) power radiated from the external antenna to the adipose tissue. To protect skin from heat, a silicon layer is used on the surface of the skin instead of water bolus to reduce the percentage of burns on the skin surface. The performance of this antenna is applied in three biological tissues (skin, fat, and muscles), using the simulation of computer simulation technology (CST) microwave studio. The main feature in this antenna is the centralization of the Specific absorption rate (SAR) at the fat tissue more than other tissues. Finally, results achieved good matching of the return loss (S11), and linear SAR value became high at fat tissue more than other tissues, and also the temperature distribution inside fat tissues became 42.7 °C while keeping the temperature inside the skin and muscles below 40 °C after 30 minutes.
Key Findings
1
A non-invasive microwave hyperthermia scheme uses a rectangular horn antenna to selectively heat adipose tissue through dielectric heating.
2
A silicon surface layer replaces a water bolus to protect skin and reduce the percentage of surface burns.
3
After 30 minutes, fat temperature reached 42.7 °C while skin and muscle temperatures remained below 40 °C, with good S11 matching.
4
CST simulations modeled skin, fat, and muscle tissues, showing greater SAR concentration in fat than in skin or muscle.
5
The antenna operates at 5.8 GHz within the ISM band to concentrate electromagnetic power in fat tissue.
Research Object
adipose tissue within a layered skin–fat–muscle biological-tissue model exposed to a 5.8 GHz rectangular horn antenna
Research Subject
non-invasive microwave hyperthermia lipolysis, specifically the tissue-selective concentration of SAR and temperature in fat while limiting heating of skin and muscle
Publication Details
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2021-04-11
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