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用于磁共振显微成像的高Q值钛酸钙圆柱形介质谐振器。

High Q calcium titanate cylindrical dielectric resonators for magnetic resonance microimaging.

作者信息

Haines K, Neuberger T, Lanagan M, Semouchkina E, Webb A G

机构信息

Department of Electrical Engineering, Pennsylvania State University, University Park, PA, USA.

出版信息

J Magn Reson. 2009 Oct;200(2):349-53. doi: 10.1016/j.jmr.2009.07.012. Epub 2009 Jul 14.

Abstract

At high magnetic fields radiation losses, wavelength effects, self-resonance, and the high resistance of typical components all contribute to increased losses in conventional RF coil designs. High permittivity ceramic dielectric resonators create strong uniform magnetic fields in a compact structure at high frequencies and can potentially solve some of the challenges of high field coil design. In this study an NMR probe was constructed for operation at 600 MHz (14.1T) using an inductively fed CaTiO(3) (relative permittivity of 156) cylindrical hollow bore dielectric resonator. The design has an unmatched Q value greater than 2000, and the electric field is largely confined to the dielectric itself, with near zero values in the hollow bore which accommodates the sample. Experimental and simulation mapping of the RF field show good agreement, with the ceramic resonator giving a pulse width approximately 25% less than a loop gap resonator of similar inner dimensions. High resolution images, with voxel dimensions less than 50 microm(3), have been acquired from fixed zebrafish samples, showing excellent delineation of several fine structures.

摘要

在高磁场下,辐射损耗、波长效应、自谐振以及典型部件的高电阻都会导致传统射频线圈设计中的损耗增加。高介电常数陶瓷介质谐振器在高频下的紧凑结构中能产生强均匀磁场,并有可能解决高场线圈设计中的一些挑战。在本研究中,使用电感馈电的钛酸钙(CaTiO₃,相对介电常数为156)圆柱形空心孔介质谐振器构建了一个用于600 MHz(14.1T)运行的核磁共振探头。该设计具有大于2000的无与伦比的品质因数(Q值),电场主要局限于介质本身,在容纳样品的空心孔中的值接近零。射频场的实验和模拟映射显示出良好的一致性,陶瓷谐振器产生的脉冲宽度比具有相似内部尺寸的环形间隙谐振器小约25%。已经从固定的斑马鱼样本中获取了体素尺寸小于50立方微米的高分辨率图像,显示出对几种精细结构的出色描绘。

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