Liu Wanzhan, Collins Christopher M, Delp Pamela J, Smith Michael B
Department of Radiology, Pennsylvania State University College of Medicine, Hershey, Pennsylvania 17033, USA.
Magn Reson Med. 2004 Jan;51(1):217-21. doi: 10.1002/mrm.10683.
We modeled four different end-ring/shield configurations of a birdcage coil to examine their effects on field homogeneity and signal-to-noise ratio (SNR) at 64 MHz and 125 MHz. The configurations are defined as: 1) conventional: a conventional cylindrical shield; 2) surrounding shield: a shield with annular extensions to closely shield the end rings; 3) solid connection: a shield with annular extensions connected to the rungs; and 4) thin wire connection: a shield with thin wires connected to the rungs. At both frequencies, the coil with conventional end-ring/shield configuration produces the most homogeneous RF magnetic (B1) field when the coil is empty, but produces the least homogeneous B1 field when the coil is loaded with a human head. The surrounding shield configuration results in the most homogeneous B1 and highest SNR in the coil loaded with the human head at both frequencies, followed closely by the solid connection configuration.
我们对鸟笼式线圈的四种不同端环/屏蔽配置进行了建模,以研究它们在64兆赫兹和125兆赫兹时对磁场均匀性和信噪比(SNR)的影响。这些配置定义如下:1)传统型:传统的圆柱形屏蔽;2)环绕屏蔽:带有环形延伸部分以紧密屏蔽端环的屏蔽;3)实心连接:带有连接到横档的环形延伸部分的屏蔽;4)细线连接:带有连接到横档的细线的屏蔽。在两个频率下,当线圈为空时,具有传统端环/屏蔽配置的线圈产生最均匀的射频磁场(B1),但当线圈加载人头时,产生最不均匀的B1场。环绕屏蔽配置在两个频率下加载人头的线圈中产生最均匀的B1和最高的信噪比,紧随其后的是实心连接配置。