Title :
Heating properties of resonant cavity applicator for treating rheumatoid arthritis by using 3-D FEM knee model
Author :
Watanabe, K. ; Kurosaki, H. ; Kubo, Momoji ; Takahashi, Koichi ; Kato, Kazuhiko ; Shindo, Y.
Author_Institution :
Grad. Sch. of Sci. & Technol., Meiji Univ., Kawasaki, Japan
Abstract :
This paper describes the heating properties of the resonant cavity applicator with the developed three-dimensional (3-D) anatomical human knee model using the finite element method (FEM). We proposed a new heating method for rheumatism rehabilitation. In this method, a human knee is placed in the gap between two inner electrodes and is non-invasively heated with electromagnetic fields stimulated inside the cavity. First, a method of reconstructing a three-dimensional (3-D) anatomical human knee model from two-dimensional (2-D) magnetic resonance imaging (MRI) and X-ray computerized tomography (CT) images was described. Second, the results of the specific absorption rate (SAR) distributions of this heating system with the developed 3-D anatomical human knee model were presented. Third, the results of specific absorption rate (SAR) were discussed. From these results, it was found that our method is useful for heating deep places in the knee joint.
Keywords :
biomedical MRI; biomedical electrodes; cavity resonators; computerised tomography; diseases; finite element analysis; hyperthermia; microwave heating; patient rehabilitation; patient treatment; physiological models; 3-D FEM knee model; SAR distribution; X-ray computerized tomography images; electromagnetic field stimulation; finite element method; heating properties; heating system; inner electrodes; noninvasive heating; resonant cavity applicator; rheumatism rehabilitation; rheumatoid arthritis treatment; specific absorption rate distributions; three-dimensional anatomical human knee model; two-dimensional magnetic resonance imaging; Applicators; Atmospheric modeling; Cavity resonators; Finite element analysis; Heating; Joints; Solid modeling; SAR distribution; non-invasive heating method; resonant cavity; rheumatism rehabilitation;
Conference_Titel :
Medical Information and Communication Technology (ISMICT), 2013 7th International Symposium on
Conference_Location :
Tokyo
Print_ISBN :
978-1-4673-5770-8
Electronic_ISBN :
2326-828X
DOI :
10.1109/ISMICT.2013.6521736