Wang Chunsheng, Shen Gary X
Department of Electrical and Electronic Engineering, University of Hong Kong, Hong Kong, China.
J Magn Reson Imaging. 2006 Aug;24(2):439-43. doi: 10.1002/jmri.20635.
To compare the performance of birdcage, transverse electromagnetic (TEM) and microstrip volume coils at 7T under the same geometric conditions.
Birdcage, TEM, and microstrip coils are modeled with the same dimensions. The finite difference time domain (FDTD) method is adopted to calculate the electromagnetic fields of the coils. Further, B(1) field, specific absorption rate (SAR) and signal-to-noise ratio (SNR) are calculated for these coils.
In the unloaded case, within the central axial plane, the variation of B(1) field magnitude over 18-cm distance is about 15% for the birdcage coil, 23% for the TEM coil, and 38% for the microstrip coil. In the loaded case, the percentages of the samples on the central axial plane, which have B(1) field magnitude within +/-20% of the average B(1) field magnitude, are about 57% for the birdcage, 72% for the TEM, and 59% for the microstrip coil. Average SAR levels are 11.4% and 42.9% higher in the birdcage than those in the TEM and microstrip coils, respectively. The average relative SNR on the central axial plane for the shielded birdcage, TEM, and microstrip coils are 1, 1.07, and 1.48, respectively.
The birdcage coil has the best unloaded B(1) field homogeneity, and the TEM coil has the best loaded B(1) field homogeneity and the lowest radiation loss; while the microstrip coil is better in SAR and SNR at 7T than the birdcage and TEM coils.
在相同几何条件下比较7T时鸟笼式、横向电磁(TEM)和微带体线圈的性能。
对鸟笼式、TEM和微带体线圈进行相同尺寸建模。采用时域有限差分(FDTD)方法计算线圈的电磁场。此外,计算这些线圈的B(1)场、比吸收率(SAR)和信噪比(SNR)。
在空载情况下,在中心轴平面内,鸟笼式线圈在18厘米距离上B(1)场幅度的变化约为15%,TEM线圈为23%,微带体线圈为38%。在加载情况下,中心轴平面上B(1)场幅度在平均B(1)场幅度的+/-20%范围内的样品百分比,鸟笼式线圈约为57%,TEM线圈为72%,微带体线圈为59%。鸟笼式线圈的平均SAR水平分别比TEM和微带体线圈高11.4%和42.9%。屏蔽鸟笼式、TEM和微带体线圈在中心轴平面上的平均相对SNR分别为1、1.07和1.48。
鸟笼式线圈具有最佳的空载B(1)场均匀性,TEM线圈具有最佳的加载B(1)场均匀性和最低的辐射损耗;而微带体线圈在7T时的SAR和SNR比鸟笼式和TEM线圈更好。