Rodríguez Alfredo Odon, Hidalgo Sandra Silvia, Rojas Rafael, Barrios Fernando Alejandro
Centro de Investigación en Imagenología e Instrumentación Médica, Universidad Autónoma Metropolitana Iztapalapa, México, DF 09340, México.
Magn Reson Imaging. 2005 Dec;23(10):1027-33. doi: 10.1016/j.mri.2005.09.001. Epub 2005 Nov 9.
A surface coil for MRI was designed and built based on the principles of the petal resonator proposed by Mansfield [J Phys D Appl Phys 21 (1988) 1643]. This resonator coil design was named the petal resonator surface (PERES) coil and is composed of an eight-petal coil array and a central circular coil. A minimum separation of three times the petal coil radius is necessary to significantly decrease the mutual inductance. An analytical function for the PERES Signal-to-noise ratio (SNR) is obtained based on the quasistatic method. Theoretical plots of SNR enhancement yielded 26% and 35% more SNR over the circular coil and phased-array coils. Imaging experiments were first performed using a spectroscopy phantom on a 1.5-T commercial imager. Subsequently, brain images of healthy volunteers were obtained. Clinical MR imager compatibility allows this resonator coil to be used with conventional pulse sequences and imaging protocols. This coil design offers a new alternative to existing surface coils because it significantly increases the SNR.
基于曼斯菲尔德提出的花瓣形谐振器原理[《物理学杂志D:应用物理学》21 (1988) 1643],设计并制造了一种用于磁共振成像(MRI)的表面线圈。这种谐振器线圈设计被命名为花瓣形谐振器表面(PERES)线圈,它由一个八瓣线圈阵列和一个中央圆形线圈组成。花瓣形线圈半径的三倍的最小间距对于显著降低互感是必要的。基于准静态方法获得了PERES信噪比(SNR)的解析函数。理论上,SNR增强曲线显示,与圆形线圈和相控阵线圈相比,SNR分别提高了26%和35%。首先使用一个光谱模型在一台1.5-T商用成像仪上进行成像实验。随后,获取了健康志愿者的脑部图像。临床磁共振成像仪兼容性使得这种谐振器线圈能够与传统脉冲序列和成像协议一起使用。这种线圈设计为现有的表面线圈提供了一种新的选择,因为它显著提高了SNR。