Han Jijun, Li Yan, Xin Xuegang
School of Biomedical Engineering, Southern Medical University, Guangzhou 510515, China.
Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2013 Aug;30(4):849-53.
In the present study, the effect of the electromagnetic field, induced by radio frequency (RF) coils and coupled with the pelvic tissues, was calculated with the method of finite difference time domain (FDTD). Using the established electromagnetic model of human pelvis region, the simulation was implemented. The imaging uniformity was quantitatively calculated and scaled with the values of the percentage image uniformity (PIU). The electromagnetic model was derived from the anatomical data of human pelvic region and loaded into the simulation. The results showed that the homogeneity of the magnetic fields was severely damaged due to the coupling between the RF coil and the human tissues when loaded with the human pelvis in the Birdcage RF coils at 3T. The research results set a basis meaningful for the design of RF coils.
在本研究中,采用时域有限差分(FDTD)方法计算了由射频(RF)线圈感应并与盆腔组织耦合的电磁场。利用建立的人体盆腔区域电磁模型进行了模拟。通过图像均匀性百分比(PIU)值对成像均匀性进行了定量计算和标度。电磁模型来源于人体盆腔区域的解剖数据并加载到模拟中。结果表明,在3T的鸟笼式RF线圈中加载人体骨盆时,由于RF线圈与人体组织之间的耦合,磁场的均匀性受到严重破坏。该研究结果为RF线圈的设计奠定了有意义的基础。