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Motion-Robust Spatially Constrained Parameter Estimation in Renal Diffusion-Weighted MRI by 3D Motion Tracking and Correction of Sequential Slices

机译:3D运动跟踪和序贯切片校正肾扩散加权MRI中的运动稳健的空间限制参数估计

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In this work, we introduce a novel motion-robust spatially constrained parameter estimation (MOSCOPE) technique for kidney diffusion-weighted MRI. The proposed motion compensation technique does not require a navigator, trigger, or breath-hold but only uses the intrinsic features of the acquired data to track and compensate for motion to reconstruct precise models of the renal diffusion signal. We have developed a technique for physiological motion tracking based on robust state estimation and sequential registration of diffusion sensitized slices acquired within 200 ms. This allows a sampling rate of 5 Hz for state estimation in motion tracking that is sufficiently faster than both respiratory and cardiac motion rates in children and adults, which range between 0.8 to 0.2 Hz, and 2.5 to 1 Hz, respectively. We then apply the estimated motion parameters to data from each slice and use motion-compensated data for (1) robust intra-voxel incoherent motion (IVIM) model estimation in the kidney using a spatially constrained model fitting approach, and (2) robust weighted least squares estimation of the diffusion tensor model. Experimental results, including precision of IVIM model parameters using bootstrap-sampling and in-vivo whole kidney tractography, showed significant improvement in precision and accuracy of these models using the proposed method compared to models based on the original data and volumetric registration.
机译:在这项工作中,我们介绍了一种用于肾扩散加权MRI的新型运动稳健的空间限制参数估计(手术室)技术。所提出的运动补偿技术不需要导航器,触发器或呼吸保持,而是仅使用所获取的数据的内在特征来跟踪和补偿运动以重建肾脏扩散信号的精确模型。我们已经开发了一种基于鲁棒状态估计的生理运动跟踪技术,并在200ms内获得的扩散敏化切片的顺序登记。这允许在运动跟踪中采样率为5 Hz,其运动跟踪中的状态估计比儿童和成人中的呼吸和心动运动率足够快,分别在0.8至0.2Hz和2.5至1Hz之间。然后,我们将估计的运动参数应用于来自每个切片的数据,并使用运动补偿数据(1)使用空间约束的模型拟合方法,并且(2)强大的加权(2)强制加权,使用肾脏中的运动补偿数据扩散张量模型的最小二乘估计。实验结果包括使用引导 - 采样和体内整个肾脏牵引的IVIM模型参数的精度,并使用所提出的方法与基于原始数据和体积配准的模型相比,这些模型的精度和准确性的精度和精度的显着提高。

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