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Reliable Assessment of Perfusivity and Diffusivity from Diffusion Imaging of the Body

机译:人体扩散成像对灌注和扩散的可靠评估

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Diffusion-weighted MRI of the body has the potential to provide important new insights into physiological and microstructural properties. The Intra-Voxel Incoherent Motion (IVIM) model relates the observed DW-MRI signal decay to parameters that reflect perfusivity (D~*) and its volume fraction (f), and diffusivity (D). However, the commonly used voxel-wise fitting of the IVIM model leads to parameter estimates with poor precision, which has hampered their practical usage. In this work, we increase the estimates' precision by introducing a model of spatial homogeneity, through which we obtain estimates of model parameters for all of the voxels at once, instead of solving for each voxel independently. Furthermore, we introduce an efficient iterative solver which utilizes a model-based bootstrap estimate of the distribution of residuals and a binary graph cut to generate optimal model parameter updates. Simulation experiments show that our approach reduces the relative root mean square error of the estimated parameters by 80% for the D~* parameter and by 50% for the f and D parameters. We demonstrated the clinical impact of our model in distinguishing between enhancing and nonenhancing ileum segments in 24 Crohn's disease patients. Our model detected the enhanced segments with 91%/92% sensitivity/specificity which is better than the 81%/85% obtained by the voxel-independent approach.
机译:身体的弥散加权MRI有可能为生理和微结构特性提供重要的新见解。体内部不相干运动(IVIM)模型将观察到的DW-MRI信号衰减与反映灌注率(D〜*)及其体积分数(f)和扩散率(D)的参数相关。但是,通常使用的IVIM模型的体素方向拟合导致参数估计精度不高,从而妨碍了它们的实际使用。在这项工作中,我们通过引入空间同质性模型来提高估计的精度,通过该模型,我们可以一次获得所有体素的模型参数的估计,而不是独立地求解每个体素。此外,我们介绍了一种有效的迭代求解器,该求解器利用基于模型的残差分布的自举估计和二进制图割来生成最佳模型参数更新。仿真实验表明,我们的方法对于D〜*参数将估计参数的相对均方根误差降低了80%,对于f和D参数将其降低了50%。我们证明了我们的模型在区分24例克罗恩病患者的回肠段增强和不增强之间的临床影响。我们的模型以91%/ 92%的敏感性/特异性检测到增强的片段,这比通过体素无关的方法获得的81%/ 85%更好。

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