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Magnetic-Resonance-Based Electrical Properties Tomography: A Review

机译:基于磁共振的电学断层扫描:审查。

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摘要

Frequency-dependent electrical properties (EPs; conductivity and permittivity) of biological tissues provide important diagnostic information (e.g., tumor characterization), and also play an important role in quantifying radiofrequency (RF) coil induced specific absorption rate (SAR), which is a major safety concern in high- and ultrahigh-field magnetic resonance imaging (MRI) applications. Cross-sectional imaging of EPs has been pursued for decades. Recently introduced electrical properties tomography (EPT) approaches utilize the measurable RF magnetic field induced by the RF coil in an MRI system to quantitatively reconstruct the EP distribution in vivo and noninvasively with a spatial resolution of a few millimeters or less. This paper reviews the EPT approach from its basic theory in electromagnetism to the state-of-the-art research outcomes. Emphasizing on the imaging reconstruction methods rather than experimentation techniques, we review the developed imaging algorithms, validation results in physical phantoms and biological tissues, as well as their applications in in vivo tumor detection and subject-specific SAR prediction. Challenges for future research are also discussed.
机译:生物组织的随频率变化的电学性质(EPs;电导率和介电常数)提供重要的诊断信息(例如,肿瘤表征),并且在定量射频(RF)线圈感应比吸收率(SAR)中也起着重要作用。高和超高场磁共振成像(MRI)应用中的主要安全问题。 EP的横截面成像已经进行了数十年。最近引入的电特性层析成像(EPT)方法利用MRI系统中RF线圈感应的可测量RF磁场,以几毫米或更小的空间分辨率在体内和无创地定量重建EP分布。本文从EPT的电磁学基础理论到最新的研究成果对EPT方法进行了回顾。着重于成像重建方法而不是实验技术,我们回顾了开发的成像算法,在物理体模和生物组织中的验证结果,以及它们在体内肿瘤检测和特定受试者SAR预测中的应用。还讨论了未来研究的挑战。

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