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利用磁共振成像从B图同时对电特性和质子密度进行定量成像

Simultaneous Quantitative Imaging of Electrical Properties and Proton Density From B Maps Using MRI.

作者信息

Van de Moortele Pierre-Francois

出版信息

IEEE Trans Med Imaging. 2016 Sep;35(9):2064-2073. doi: 10.1109/TMI.2016.2547988.

Abstract

Electrical conductivity and permittivity of biological tissues are important diagnostic parameters and are useful for calculating subject-specific specific absorption rate distribution. On the other hand, water proton density also has clinical relevance for diagnosis purposes. These two kinds of tissue properties are inevitably associated in the technique of electrical properties tomography (EPT), which can be used to map in vivo electrical properties based on the measured B1 field distribution at Larmor frequency using magnetic resonance imaging (MRI). The signal magnitude in MR images is locally proportional to both the proton density of tissue and the receive B1 field; this is a source of artifact in receive B1-based EPT reconstruction because these two quantities cannot easily be disentangled. In this study, a new method was proposed for simultaneously extracting quantitative conductivity, permittivity and proton density from the measured magnitude of transmit B1 field, proton density-weighted receive B1 field, and transceiver phase, in a multi-channel radiofrequency (RF) coil using MRI, without specific assumptions to derive the proton density distribution. We evaluated the spatial resolution, sensitivity to contrast, and accuracy of the method using numerical simulations of B1 field in a phantom and in a realistic human head model. Using the proposed method, conductivity, permittivity and proton density were then experimentally obtained ex vivo in a pork tissue sample on a 7T MRI scanner equipped with a 16-channel microstrip transceiver RF coil.

摘要

生物组织的电导率和介电常数是重要的诊断参数,可用于计算个体特异性比吸收率分布。另一方面,水质子密度在诊断方面也具有临床相关性。在基于磁共振成像(MRI)通过测量拉莫尔频率下的B1场分布来绘制体内电特性的电阻抗断层成像(EPT)技术中,这两种组织特性不可避免地相互关联。MR图像中的信号强度在局部上与组织的质子密度和接收的B1场都成正比;这是基于接收B1的EPT重建中伪影的一个来源,因为这两个量不容易区分开。在本研究中,提出了一种新方法,该方法利用MRI在多通道射频(RF)线圈中,从发射B1场的测量幅度、质子密度加权的接收B1场以及收发器相位中同时提取定量的电导率、介电常数和质子密度,而无需特定假设来推导质子密度分布。我们使用体模和真实人体头部模型中B1场的数值模拟评估了该方法的空间分辨率、对比度敏感性和准确性。然后,使用所提出的方法,在配备有16通道微带收发器RF线圈的7T MRI扫描仪上,在离体的猪肉组织样本中通过实验获得了电导率、介电常数和质子密度。

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