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Point-Spread-Function-Aware Slice-to-Volume Registration: Application to Upper Abdominal MRI Super-Resolution

机译:点传播功能感知切片卷注册:应用于上腹部MRI超分辨率

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MR image acquisition of moving organs remains challenging despite the advances in ultra-fast 2D MRI sequences. Post-acquisition techniques have been proposed to increase spatial resolution a posteriori by combining acquired orthogonal stacks into a single, high-resolution (HR) volume. Current super-resolution techniques classically rely on a two-step procedure. The volumetric reconstruction step leverages a physical slice acquisition model. However, the motion correction step typically neglects the point spread function (PSF) information. In this paper, we propose a PSF-aware slice-to-volume registration approach and, for the first time, demonstrate the potential benefit of Super-Resolution for upper abdominal imaging. Our novel reconstruction pipeline takes advantage of different MR acquisitions clinically used in routine MR cholangio-pancreatography studies to guide the registration. On evaluation of clinically relevant image information, our approach outperforms state-of-the-art reconstruction toolkits in terms of visual clarity and preservation of raw data information. Overall, we achieve promising results towards replacing currently required CT scans.
机译:尽管超快速2D MRI序列的进展,但MR IMage Acquatis的移动器官的获取仍然挑战。已经提出了采集后技术来增加通过将获取的正交堆叠组合成单个高分辨率(HR)体积的空间分辨率。当前的超分辨率技术经典依赖于两步过程。体积重建步骤利用物理切片采集模型。然而,运动校正步骤通常忽略点扩展功能(PSF)信息。在本文中,我们提出了PSF感知的切片对储备的登记方法,并首次证明了上腹部成像超分辨率的潜在益处。我们的小说重建管道利用不同的MR收购临床上用于胆管胰胰岛素研究研究,以指导登记。在临床相关图像信息的评估中,我们的方法在视觉清晰度和原始数据信息的保存方面优于最先进的重建工具包。总体而言,我们达到了替换目前所需的CT扫描的有希望的结果。

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