유한요소해석을 이용한 이식형 골전도 보청기 트랜스듀서의 자기공명 안전성과 호환성 향상 연구

Magnetic Resonance Safety and Compatibility Improvement Study of Bone Conduction Implants Transducer Using Finite Element Analysis

초록

This study describes the design of transducer for bone conduction implants that minimize the effects from the magnetic resonance environments. To reduce torque and image artifacts magnitude generated from the magnetic resonance environments, a transducer with a three-pole structure was proposed by combining two permanent magnets with the same poles facing. A 1.5 T static magnetic field environment was modeled using finite element analysis software, and the torque and image artifact magnitude of the three-pole structure magnet were calculated according to the static magnetic field direction. And, to make sure that the proposed structure can reduce the effect in the magnetic resonance environment, the same analysis was performed for the two-pole structure magnet. Comparing the analysis results, the torque and image artifact magnitude of the proposed three-pole magnet were reduced by at least over 50% compared to the two-pole magnet. Through the results of finite element analysis, it was confirmed that the proposed three-pole bone conduction transducer structure can significantly reduce torque and image artifacts magnitude generated from the magnetic resonance environments.

키워드

Bone Conduction Implants; Transducer; Finite Element Analysis; Magnetic Resonance Safety and Compatibility; Torque; Image artifacts
제목
유한요소해석을 이용한 이식형 골전도 보청기 트랜스듀서의 자기공명 안전성과 호환성 향상 연구
제목 (타언어)
Magnetic Resonance Safety and Compatibility Improvement Study of Bone Conduction Implants Transducer Using Finite Element Analysis
저자
신동호; 김명남; 성기웅
발행일
2023-02
유형
Y
저널명
멀티미디어학회논문지
권
26
호
2
페이지
254 ~ 263