Double Slot Antenna for Microwave Thermal Ablation to Treat Bone Tumors: Modeling and Experimental Evaluation
According to statistics of the American Cancer Society, the number of young people diagnosed with bone tumors is growing. Surgery and radiotherapy are the common treatments, however they have several side effects which affect the patient’s life. Therefore, a cheaper and less side-effect therapy call...
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doaj-d8a86a061eb24963a4b9290ee463eba12021-03-25T00:00:53ZengMDPI AGElectronics2079-92922021-03-011076176110.3390/electronics10070761Double Slot Antenna for Microwave Thermal Ablation to Treat Bone Tumors: Modeling and Experimental EvaluationCitlalli Jessica Trujillo-Romero0Lorenzo Leija-Salas1Arturo Vera-Hernández2Genaro Rico-Martínez3Josefina Gutiérrez-Martínez4Division of Medical Engineering Research, National Institute of Rehabilitation LGII, Mexico City 14389, MexicoElectrical Engineering Department, Bioelectronics Section, CINVESTAV-IPN, Mexico City 07360, MexicoElectrical Engineering Department, Bioelectronics Section, CINVESTAV-IPN, Mexico City 07360, MexicoBone Tumors Service, National Institute of Rehabilitation LGII, Mexico City 14389, MexicoDivision of Medical Engineering Research, National Institute of Rehabilitation LGII, Mexico City 14389, MexicoAccording to statistics of the American Cancer Society, the number of young people diagnosed with bone tumors is growing. Surgery and radiotherapy are the common treatments, however they have several side effects which affect the patient’s life. Therefore, a cheaper and less side-effect therapy called thermal ablation has been explored. The goal of this paper is to measure the therapeutic temperatures and the viability of a double slot antenna designed to treat bone tissue by microwave ablation. The antenna (at an operating frequency of 2.45 GHz) was designed, modeled, constructed, and experimentally evaluated. The finite element method was used to predict the antenna performance by means of 2D axisymmetric models. The modeling parameters were used to build the antenna. The experimental evaluation shows that the antenna behavior is repeatable and the standing wave ratio (SWR) was around 1.5–1.8. Temperatures around 60–100 °C were achieved over the bone tissue. The antenna insertion modifies the antenna performance. An insertion lower than 3.5 cm is not recommended because the convection effects modified the tissue temperature. The thermal patterns showed a heat focus near to the slots, which makes it possible for use in the treatment of small tumors.https://www.mdpi.com/2079-9292/10/7/761thermal ablationbone tumormicrowave ablation (MWA)finite element method (FEM)double slot antenna |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Citlalli Jessica Trujillo-Romero Lorenzo Leija-Salas Arturo Vera-Hernández Genaro Rico-Martínez Josefina Gutiérrez-Martínez |
spellingShingle |
Citlalli Jessica Trujillo-Romero Lorenzo Leija-Salas Arturo Vera-Hernández Genaro Rico-Martínez Josefina Gutiérrez-Martínez Double Slot Antenna for Microwave Thermal Ablation to Treat Bone Tumors: Modeling and Experimental Evaluation Electronics thermal ablation bone tumor microwave ablation (MWA) finite element method (FEM) double slot antenna |
author_facet |
Citlalli Jessica Trujillo-Romero Lorenzo Leija-Salas Arturo Vera-Hernández Genaro Rico-Martínez Josefina Gutiérrez-Martínez |
author_sort |
Citlalli Jessica Trujillo-Romero |
title |
Double Slot Antenna for Microwave Thermal Ablation to Treat Bone Tumors: Modeling and Experimental Evaluation |
title_short |
Double Slot Antenna for Microwave Thermal Ablation to Treat Bone Tumors: Modeling and Experimental Evaluation |
title_full |
Double Slot Antenna for Microwave Thermal Ablation to Treat Bone Tumors: Modeling and Experimental Evaluation |
title_fullStr |
Double Slot Antenna for Microwave Thermal Ablation to Treat Bone Tumors: Modeling and Experimental Evaluation |
title_full_unstemmed |
Double Slot Antenna for Microwave Thermal Ablation to Treat Bone Tumors: Modeling and Experimental Evaluation |
title_sort |
double slot antenna for microwave thermal ablation to treat bone tumors: modeling and experimental evaluation |
publisher |
MDPI AG |
series |
Electronics |
issn |
2079-9292 |
publishDate |
2021-03-01 |
description |
According to statistics of the American Cancer Society, the number of young people diagnosed with bone tumors is growing. Surgery and radiotherapy are the common treatments, however they have several side effects which affect the patient’s life. Therefore, a cheaper and less side-effect therapy called thermal ablation has been explored. The goal of this paper is to measure the therapeutic temperatures and the viability of a double slot antenna designed to treat bone tissue by microwave ablation. The antenna (at an operating frequency of 2.45 GHz) was designed, modeled, constructed, and experimentally evaluated. The finite element method was used to predict the antenna performance by means of 2D axisymmetric models. The modeling parameters were used to build the antenna. The experimental evaluation shows that the antenna behavior is repeatable and the standing wave ratio (SWR) was around 1.5–1.8. Temperatures around 60–100 °C were achieved over the bone tissue. The antenna insertion modifies the antenna performance. An insertion lower than 3.5 cm is not recommended because the convection effects modified the tissue temperature. The thermal patterns showed a heat focus near to the slots, which makes it possible for use in the treatment of small tumors. |
topic |
thermal ablation bone tumor microwave ablation (MWA) finite element method (FEM) double slot antenna |
url |
https://www.mdpi.com/2079-9292/10/7/761 |
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