接收线圈优化的开放式磁颗粒成像扫描仪

W. Tenner, H. Wojtczyk, G. Bringout, M. Graeser, M. Gruttner, J. Haegele, R. Duschka, N. Panagiotopoulos, F. Vogt, J. Barkhausen, T. Buzug
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引用次数: 3

摘要

半径为15厘米的类亥姆霍兹线圈对对给定的几何形状具有最高的灵敏度。其均匀性随半径增大而减小,如图4所示。圆形线圈阵列表现出很好的均匀性,随着线圈数量的增加,均匀性进一步增强,但在视场中的灵敏度相对较差。随着半径的增大,d型线圈的灵敏度和均匀性均降低。d线圈对之间距离的增加增加了均匀性,但导致灵敏度的降低。嵌套d型线圈可以在不损失灵敏度的情况下改善均匀性。制造了半径为15 cm的优化圆形和非嵌套d形线圈对,两种几何形状的谐振频率测量结果显示,紧绕技术的谐振频率约为1.9 MHz,松绕技术的谐振频率约为2.6 MHz。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Receive coil optimization for an open magnetic particle imaging scanner
Helmholtz-like coil pairs with a radius of 15 cm have the highest sensitivity for the given geometry. Their homogeneity decreases with higher radius, which is both shown in Fig. 4. Arrays of circular coils show very good homogeneity, which further increases with increasing number of coils, but have comparably poor sensitivity in the FOV. D-shaped coils have both decreasing sensitivity and homogeneity with increasing radius. An increasing distance between a D-coil pair increases the homogeneity, but leads to decreasing sensitivity. Nested D-coils can show an improved homogeneity without a loss in sensitivity. Optimized circular and not nested D-shaped coil pairs with a radius of 15 cm were manufactured and the resonance frequency for both geometries was measured to be about 1.9 MHz for the tight and 2.6 MHz for the loose winding technique.
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