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Experimental validations of in vivo human musculoskeletal tissue conductivity images using MR-based electrical impedance tomography

机译:使用基于MR的电阻抗层析成像技术对体内人肌肉骨骼组织电导率图像进行实验验证

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摘要

Magnetic resonance (MR)-based electrical impedance tomography (MREIT) is a widely used imaging technique that provides high-resolution conductivity images at DC or below the 1kHz frequency range. Using an MR scanner, this technique injects imaging currents into the human body and measures induced internal magnetic flux density data. By applying the recent progress of MREIT techniques, such as chemical shift artifact correction, multi-echo pulse sequence, and improved reconstruction algorithm, we can successfully reconstruct conductivity images of the human body. Meanwhile, numerous studies reported that the electrical conductivity of human tissues could be inferred from in vitro or ex vivo measurements of different species. However, in vivo tissues may differ from in vitro and/or ex vivo state due to the complicated tissue responses in living organs. In this study, we performed in vivo MREIT imaging of a human lower extremity and compared the resulting conductivity images with ex vivo biological tissue phantom images. The human conductivity images showed unique contrast between two different types of bones, muscles, subcutaneous adipose tissues, and conductive body fluids. Except for muscles and adipose tissues, the human conductivity images showed a similar pattern when compared with phantom results due to the anisotropic characteristic of muscle and the high conductive fluids in the adipose tissue.
机译:基于磁共振(MR)的电阻抗层析成像(MREIT)是一种广泛使用的成像技术,可在DC或低于1kHz频率范围内提供高分辨率的电导率图像。使用MR扫描仪,该技术将成像电流注入人体并测量感应的内部磁通密度数据。通过应用化学位移伪影校正,多回波脉冲序列和改进的重建算法等MREIT技术的最新进展,我们可以成功地重建人体的电导率图像。同时,大量研究报告表明,可以从不同物种的体外或离体测量中推断出人体组织的电导率。然而,由于活体器官中复杂的组织反应,体内组织可能不同于体外和/或离体状态。在这项研究中,我们进行了人类下肢的体内MREIT成像,并将所得的电导率图像与离体生物组织体模图像进行了比较。人类电导率图像显示出两种不同类型的骨骼,肌肉,皮下脂肪组织和导电体液之间的独特对比。除肌肉和脂肪组织外,由于肌肉的各向异性特性和脂肪组织中的高导电性流体,与幻像结果相比,人类电导率图像显示出相似的模式。

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