Alecci Marcello, Collins Christopher M, Wilson James, Liu Wanzhan, Smith Michael B, Jezzard Peter
FMRIB Centre, Department of Clinical Neurology, University of Oxford, John Radcliffe Hospital, Oxford, UK.
Magn Reson Med. 2003 Feb;49(2):363-70. doi: 10.1002/mrm.10352.
The use of detached endcaps for 3 T birdcage coils was investigated both theoretically and experimentally. Finite difference time domain analysis, along with workbench and MRI techniques, were used to map the radiofrequency (RF) B(1) distribution along the coil axis with and without an endcap. Without an endcap the measured B(1) value at the service end of the birdcage was only 45% of the value at the coil's center. This was improved to 85% with a detached endcap of maximum achievable diameter (375 mm), positioned 4 mm from the RF shield. The B(1) field distribution on the patient side of the coil was unaffected by the presence of the endcap. The dependence of the B(1) distribution as a function of endcap diameter was also investigated. Surprisingly, simulations and experiments show that there is an optimum ratio of endcap-to-birdcage coil diameter (approximately 1.08) that gives the best B(1) homogeneity. In the human head the optimized endcap, positioned 16 mm from the RF shield, improves the MRI signal amplitude from 55% to 85% of maximum toward the service end. This novel endcap design is easy to implement with existing birdcage coils, and could prove useful when flexibility in access to the RF coil is required.
对用于3T鸟笼线圈的可拆卸端盖进行了理论和实验研究。采用时域有限差分分析以及工作台和磁共振成像(MRI)技术,来绘制有无端盖情况下沿线圈轴的射频(RF)B(1)分布。没有端盖时,鸟笼线圈使用端处测得的B(1)值仅为线圈中心处值的45%。使用最大可达直径(375mm)且距射频屏蔽4mm的可拆卸端盖时,该值提高到了85%。端盖的存在未影响线圈患者侧的B(1)场分布。还研究了B(1)分布与端盖直径的函数关系。令人惊讶的是,模拟和实验表明,存在一个使B(1)均匀性最佳的端盖与鸟笼线圈直径的最佳比例(约为1.08)。在人体头部,距射频屏蔽16mm处放置优化后的端盖,可将MRI信号幅度从朝向使用端的最大值的55%提高到85%。这种新颖的端盖设计易于在现有的鸟笼线圈上实现,并且在需要射频线圈使用灵活性时可能会证明很有用。