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一种用于肾脏扩散加权成像的体素内定向流动模型。

An intravoxel oriented flow model for diffusion-weighted imaging of the kidney.

作者信息

Hilbert Fabian, Bock Maximilian, Neubauer Henning, Veldhoen Simon, Wech Tobias, Bley Thorsten Alexander, Köstler Herbert

机构信息

Department of Diagnostic and Interventional Radiology, University of Würzburg, Würzburg, Germany.

出版信息

NMR Biomed. 2016 Oct;29(10):1403-13. doi: 10.1002/nbm.3584. Epub 2016 Aug 4.

Abstract

By combining intravoxel incoherent motion (IVIM) and diffusion tensor imaging (DTI) we introduce a new diffusion model called intravoxel oriented flow (IVOF) that accounts for anisotropy of diffusion and the flow-related signal. An IVOF model using a simplified apparent flow fraction tensor (IVOFf ) is applied to diffusion-weighted imaging of human kidneys. The kidneys of 13 healthy volunteers were examined on a 3 T scanner. Diffusion-weighted images were acquired with six b values between 0 and 800 s/mm(2) and 30 diffusion directions. Diffusivity and flow fraction were calculated for different diffusion models. The Akaike information criterion was used to compare the model fit of the proposed IVOFf model to IVIM and DTI. In the majority of voxels the proposed IVOFf model with a simplified apparent flow fraction tensor performs better than IVIM and DTI. Mean diffusivity is significantly higher in DTI compared with models that account for the flow-related signal. The fractional anisotropy of diffusion is significantly reduced when flow fraction is considered to be anisotropic. Anisotropy of the apparent flow fraction tensor is significantly higher in the renal medulla than in the cortex region. The IVOFf model describes diffusion-weighted data in the human kidney more accurately than IVIM or DTI. The apparent flow fraction in the kidney proved to be anisotropic.

摘要

通过结合体素内不相干运动(IVIM)和扩散张量成像(DTI),我们引入了一种新的扩散模型,称为体素内定向流(IVOF),该模型考虑了扩散的各向异性和与血流相关的信号。一种使用简化表观流分数张量(IVOFf)的IVOF模型被应用于人体肾脏的扩散加权成像。对13名健康志愿者的肾脏在3T扫描仪上进行检查。在0至800 s/mm²之间的六个b值和30个扩散方向上采集扩散加权图像。计算不同扩散模型的扩散率和流分数。使用赤池信息准则来比较所提出的IVOFf模型与IVIM和DTI的模型拟合度。在大多数体素中,具有简化表观流分数张量的所提出的IVOFf模型比IVIM和DTI表现更好。与考虑与血流相关信号的模型相比,DTI中的平均扩散率显著更高。当将流分数视为各向异性时,扩散的分数各向异性显著降低。肾髓质中表观流分数张量的各向异性明显高于皮质区域。IVOFf模型比IVIM或DTI更准确地描述了人体肾脏中的扩散加权数据。肾脏中的表观流分数被证明是各向异性的。

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