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基于磁共振电阻抗成像的电导率恢复技术的温度分布检测。

Detection of temperature distribution via recovering electrical conductivity in MREIT.

机构信息

Impedance Imaging Research Center and Department of Biomedical Engineering, Kyung Hee University, Yongin, Korea.

出版信息

Phys Med Biol. 2013 Apr 21;58(8):2697-711. doi: 10.1088/0031-9155/58/8/2697. Epub 2013 Apr 3.

Abstract

In radiofrequency (RF) ablation or hyperthermia, internal temperature measurements and tissue property imaging are important to control their outputs and assess the treatment effect. Recently, magnetic resonance electrical impedance tomography (MREIT), as a non-invasive imaging method of internal conductivity distribution using an MR scanner, has been developed. Its reconstruction algorithm uses measured magnetic flux density induced by injected currents. The MREIT technique has the potential to visualize electrical conductivity of tissue with high spatial resolution and measure relative conductivity variation according to the internal temperature change based on the fact that the electrical conductivity of biological tissues is sensitive to the internal temperature distribution. In this paper, we propose a method to provide a non-invasive alternative to monitor the internal temperature distribution by recovering the electrical conductivity distribution using the MREIT technique. To validate the proposed method, we design a phantom with saline solution and a thin transparency film in a form of a hollow cylinder with holes to create anomalies with different electrical and thermal conductivities controlled by morphological structure. We first prove the temperature maps with respect to spatial and time resolution by solving the thermal conductivity partial differential equation with the real phantom experimental environment. The measured magnetic flux density and the reconstructed conductivity distributions using the phantom experiments were compared to the simulated temperature distribution. The relative temperature variation of two testing objects with respect to the background saline was determined by the relative conductivity contrast ratio (rCCR,%). The relation between the temperature and conductivity measurements using MREIT was approximately linear with better accuracy than 0.22 °C.

摘要

在射频 (RF) 消融或热疗中,内部温度测量和组织特性成像对于控制输出和评估治疗效果非常重要。最近,磁共振电阻抗断层成像(MREIT)作为一种使用磁共振扫描仪的内部电导率分布的非侵入性成像方法得到了发展。其重建算法使用注入电流感应的测量磁场强度。根据生物组织的电导率对内部温度分布敏感的事实,MREIT 技术具有可视化组织电导率的高空间分辨率和根据内部温度变化测量相对电导率变化的潜力。在本文中,我们提出了一种通过使用 MREIT 技术恢复电导率分布来提供非侵入式替代方法来监测内部温度分布的方法。为了验证所提出的方法,我们设计了一个具有盐水和薄透明膜的体模,其形式为带有孔的空心圆柱体,以创建由形态结构控制的具有不同电导率和热导率的异常。我们首先通过使用真实体模实验环境求解热导率偏微分方程来证明空间和时间分辨率的温度图。将使用体模实验测量的磁场强度和重建的电导率分布与模拟的温度分布进行比较。通过相对电导率对比比 (rCCR,%) 确定两个测试对象相对于背景盐水的相对温度变化。使用 MREIT 的温度和电导率测量之间的关系近似线性,精度优于 0.22°C。

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