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首页> 外文期刊>PLoS One >Extracellular electrical conductivity property imaging by decomposition of high-frequency conductivity at Larmor-frequency using multi- b -value diffusion-weighted imaging
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Extracellular electrical conductivity property imaging by decomposition of high-frequency conductivity at Larmor-frequency using multi- b -value diffusion-weighted imaging

机译:通过多B-value扩散加权成像通过分解高频电导率的细胞外电导率成像

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摘要

Magnetic resonance electrical properties tomography (MREPT) uses the B1 mapping technique to provide the high-frequency conductivity distribution at Larmor frequency that simultaneously reflects the intracellular and extracellular effects. In biological tissues, the electrical conductivity can be described as the concentration and mobility of charge carriers. For the water molecule diffusivity, diffusion weighted imaging (DWI) measures the random Brownian motion of water molecules within biological tissues. The DWI data can quantitatively access the mobility of microscopic water molecules within biological tissues. By measuring multi- b -value DWI data and the recovered high-frequency conductivity at Larmor frequency, we propose a new method to decompose the conductivity into the total ion concentration and mobility in the extracellular space (ECS) within a routinely applicable MR scan time. Using the measured multi- b -value DWI data, a constrained compartment model is designed to estimate the extracellular volume fraction and extracellular mean diffusivity. With the extracted extracellular volume fraction and water molecule diffusivity, we directly reconstruct the low-frequency electrical properties including the extracellular mean conductivity and extracellular conductivity tensor. To demonstrate the proposed method by comparing the ion concentration and the ion mobility, we conducted human experiments for the proposed low-frequency conductivity imaging. Human experiments verify that the proposed method can recover the low-frequency electrical properties using a conventional MRI scanner.
机译:磁共振电气性断层扫描(MREPT)使用B1映射技术在大频频率下提供高频电导率分布,同时反映细胞内和细胞外效应。在生物组织中,可以描述电导率作为电荷载体的浓度和迁移率。对于水分子扩散率,扩散加权成像(DWI)测量生物组织内水分子的随机褐色运动。 DWI数据可以定量地访问生物组织内微观水分子的迁移率。通过测量Mult-B -Value DWI数据和大频频率的恢复的高频电导率,我们提出了一种在常规适用的MR扫描时间内将电导率分解为细胞外空间(ECS)中的总离子浓度和移动性的新方法。使用测量的多B-value DWI数据,被设计为估计细胞外体积分数和细胞外平均扩散性的约束隔室模型。随着提取的细胞外体积分数和水分子扩散率,我们直接重建低频电性能,包括细胞外平均导电性和细胞外导电性张量。通过比较离子浓度和离子迁移率来证明所提出的方法,我们对所提出的低频电导率成像进行人的实验。人类实验验证所提出的方法可以使用传统的MRI扫描仪恢复低频电性能。

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