상세 보기
Simulation Design of an Elliptical Loop-Microstrip Array for Brain Lobe Imaging with an 11.74 Tesla MRI System
- Hernandez, Daniel;
- Nam, Taewoo;
- Lee, Eunwoo;
- Han, Yeji;
- Ryu, Yeunchul;
- ... Chung, Jun-Young;
- ... Kim, Kyoung-Nam
WEB OF SCIENCE
3SCOPUS
2초록
Magnetic resonance imaging (MRI) is a powerful medical imaging technique used for acquiring high-resolution anatomical and functional images of the human body. With the development of an 11.74 Tesla (T) human MRI system at our facility, we are designing novel radiofrequency (RF) coils optimized for brain imaging at ultra-high fields. To meet specific absorption rate (SAR) safety limits, this study focuses on localized imaging of individual brain lobes rather than whole-brain array designs. Conventional loop coils, while widely used, offer limited |B1|-field uniformity at 500 MHz-the Larmor frequency at 11.74 T, which can reduce image quality. Therefore, it is important to develop antennas and coils for highly uniform fields. As an alternative, we propose an elliptical microstrip design, which combines the compact resonant properties of microstrips with the enhanced field coverage provided by loop geometry. We simulated a three-element elliptical microstrip array and compared its performance with a conventional loop coil. The proposed design demonstrated improved magnetic field uniformity and coverage across targeted brain regions. Preliminary bench-top validation confirmed the feasibility of resonance tuning at 500 MHz, supporting its potential for future high-field MRI applications.
키워드
- 제목
- Simulation Design of an Elliptical Loop-Microstrip Array for Brain Lobe Imaging with an 11.74 Tesla MRI System
- 저자
- Hernandez, Daniel; Nam, Taewoo; Lee, Eunwoo; Han, Yeji; Ryu, Yeunchul; Chung, Jun-Young; Kim, Kyoung-Nam
- 발행일
- 2025-06
- 유형
- Article
- 저널명
- Sensors
- 권
- 25
- 호
- 13