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用于 7T 神经成像的高介电常数材料的模拟和一种新型钛酸钡基介电材料的评估。

Simulations of high permittivity materials for 7 T neuroimaging and evaluation of a new barium titanate-based dielectric.

机构信息

Department of Radiology, Leiden University Medical Center, Leiden, The Netherlands.

出版信息

Magn Reson Med. 2012 Apr;67(4):912-8. doi: 10.1002/mrm.24176. Epub 2012 Jan 27.

Abstract

High permittivity "dielectric pads" have been shown to increase image quality at high magnetic fields in regions of low radiofrequency transmit efficiency. This article presents a series of electromagnetic simulations to determine the effects of pad size and geometry, relative permittivity value, as well as thickness on the transmit radiofrequency fields for neuroimaging at 7 T. For a 5-mm thick pad, there is virtually no effect on the transmit field for relative permittivity values lower than ∼90. Significant improvements are found for values between 90 and ∼180. If the relative permittivity is increased above ∼180 then areas of very low transmit efficiency are produced. For a 1-cm thick pad, the corresponding numbers are ∼60 and ∼120, respectively. Based upon the findings, a new material (barium titanate, relative permittivity ∼150) is used to produce thin (∼5 mm) dielectric pads which can easily be placed within a standard receive head array. Experimental measurements of transmit sensitivities, as well as acquisition of T(2) - and T 2*-weighted images show the promise of this approach.

摘要

高介电常数“介电垫”已被证明可以在射频发射效率低的区域提高高磁场下的图像质量。本文介绍了一系列电磁学模拟,以确定垫的尺寸和形状、介电常数值以及厚度对 7T 神经影像学中射频发射场的影响。对于 5 毫米厚的垫,介电常数低于约 90 时,对发射场几乎没有影响。在 90 到 180 之间的值会发现显著的改善。如果介电常数超过 180,则会产生发射效率极低的区域。对于 1 厘米厚的垫,相应的值分别约为 60 和 120。基于这些发现,使用了一种新的材料(钛酸钡,介电常数约为 150)来制作可以轻松放置在标准接收头阵列中的薄(约 5 毫米)介电垫。发射灵敏度的实验测量以及 T2 和 T2*-加权图像的采集都表明了这种方法的前景。

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