已收录 267400 条政策
 政策提纲
  • 暂无提纲
Assessment of a PML Boundary Condition for Simulating an MRI Radio Frequency Coil
[摘要] Computational methods such as the finite difference time domain (FDTD)play an important role in simulating radiofrequency (RF) coils used in magnetic resonance imaging (MRI). The choice of absorbing boundary conditions affects the final outcome of such studies. We have used FDTD to assess the Berenger's perfectly matched layer (PML) as an absorbing boundary condition for computation of the resonance patterns and electromagnetic fields of RF coils. We first experimentally constructed a high-pass birdcage head coil, measured its resonance pattern, and used it to acquire proton(1H)phantom MRI images. We then computed the resonance pattern andB1field of the coil using FDTD with a PML as an absorbing boundary condition. We assessed the accuracy and efficiency of PML by adjusting the parameters of the PML and comparing the calculated results with measured ones. The optimal PML parameters that produce accurate (comparable to the experimental findings) FDTD calculations are then provided for the birdcage head coil operating at 127.72 MHz, the Larmor frequency of1Hat 3 Tesla (T).
[发布日期]  [发布机构] 
[效力级别]  [学科分类] 电子、光学、磁材料
[关键词]  [时效性] 
   浏览次数:2      统一登录查看全文      激活码登录查看全文