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基于磁共振扫描仪中多通道发射/接收线圈测量的 B(1)场确定电特性:一种通用方法。

Determining electrical properties based on B(1) fields measured in an MR scanner using a multi-channel transmit/receive coil: a general approach.

机构信息

Department of Biomedical Engineering, University of Minnesota, Minneapolis, MN 55455, USA.

出版信息

Phys Med Biol. 2013 Jul 7;58(13):4395-408. doi: 10.1088/0031-9155/58/13/4395. Epub 2013 Jun 6.

Abstract

Electrical properties tomography (EPT) is a recently developed noninvasive technology to image the electrical conductivity and permittivity of biological tissues at Larmor frequency in magnetic resonance scanners. The absolute phase of the complex radio-frequency magnetic field (B1) is necessary for electrical property calculation. However, due to the lack of practical methods to directly measure the absolute B1 phases, current EPT techniques have been achieved with B1 phase estimation based on certain assumptions on object anatomy, coil structure and/or electromagnetic wave behavior associated with the main magnetic field, limiting EPT from a larger variety of applications. In this study, using a multi-channel transmit/receive coil, the framework of a new general approach for EPT has been introduced, which is independent on the assumptions utilized in previous studies. Using a human head model with realistic geometry, a series of computer simulations at 7 T were conducted to evaluate the proposed method under different noise levels. Results showed that the proposed method can be used to reconstruct the conductivity and permittivity images with noticeable accuracy and stability. The feasibility of this approach was further evaluated in a phantom experiment at 7 T.

摘要

电阻抗断层成像(EPT)是一种新开发的非侵入性技术,可在磁共振扫描仪中以拉莫尔频率对生物组织的电导率和介电常数进行成像。复杂射频磁场(B1)的绝对相位对于电特性计算是必需的。然而,由于缺乏直接测量绝对 B1 相位的实用方法,当前的 EPT 技术已经实现了基于对象解剖结构、线圈结构和/或与主磁场相关的电磁波行为的某些假设的 B1 相位估计,限制了 EPT 在更多应用中的应用。在这项研究中,使用多通道发射/接收线圈,引入了一种新的 EPT 通用方法的框架,该方法不依赖于先前研究中使用的假设。使用具有真实几何形状的人头模型,在 7 T 下进行了一系列计算机模拟,以在不同噪声水平下评估所提出的方法。结果表明,所提出的方法可以用于以显著的准确性和稳定性重建电导率和介电常数图像。在 7 T 的体模实验中进一步评估了该方法的可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ebac/3770135/f61fdbeb1c80/nihms491239f1.jpg

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