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Semi-automatic misalignment correction for a small animal micro-CT scanner with variable geometry

机译:具有可变几何形状的小型动物微型CT扫描仪的半自动失准校正

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摘要

An enginereed micro-CT scanner for in vivo imaging of small animals (Xalt, which stands for X-ray AnimaL Tomograph) has been recently built at the Institute of Clinical Physiology of the National Research Council (IFC-CNR, Pisa, Italy), in partnership with the University of Pisa. The Xalt scanner is a cone beam micro-CT based on a 2-dimensional flat-panel detector and microfocus x-ray source. The magnification and detector orientation can be manually varied to select the spatial resolution, field of view (FoV) and sensitivity that match the needs of several different imaging protocols for mice, rats and test tubes. Even with high precision mechanical assembly, recalibration for geometric misalignments is necessary after each modification of the scanner geometry. To avoid the burden of geometric recalibration, a semi-automatic cone beam calibration method has been applied and integrated in the reconstruction software. The calibration method does not require measurements on specific phantoms, as it is based on the recovery of redundancies in the projection data of generic objects that are lost when the scanner components are out of alignment. By using this method, our variable geometry micro-CT can be realigned at each scan by analyzing the projection data set (or part of it), without additional phantom measurements. To assess the reliability of our method we have made several acquisitions on a phantom, each carried after mechanical stress of the positioning system. We showed that the semi-automatic calibration method is an effective aid for a fast and reliable scanner realignment, without additional acquisitions. Index Terms-MicroCT, geometrical calibration, variable geometry scanners
机译:最近在国家研究委员会(IFC-CNR,意大利比萨)的临床生理学研究所制造了一种用于对小动物进行体内成像的引擎微CT扫描仪(Xalt代表X射线AnimaL断层扫描仪),与比萨大学合作。 Xalt扫描仪是基于二维平板检测器和微焦点X射线源的锥形束微型CT。可以手动更改放大倍率和检测器方向,以选择空间分辨率,视场(FoV)和灵敏度,以满足小鼠,大鼠和试管的几种不同成像方案的需求。即使采用高精度的机械装配,在每次更改扫描仪几何形状后也需要对几何不对准进行重新校准。为避免几何重新校准的负担,半自动锥形束校准方法已被应用并集成在重建软件中。校准方法不需要对特定体模进行测量,因为它基于恢复当扫描仪组件未对准时丢失的通用对象的投影数据中的冗余。通过使用这种方法,我们的可变几何结构微型CT可以在每次扫描时通过分析投影数据集(或其一部分)进行重新对齐,而无需进行额外的幻像测量。为了评估我们方法的可靠性,我们在幻像上进行了几次采集,每次采集都是在定位系统的机械应力之后进行的。我们证明,半自动校准方法是快速可靠地重新排列扫描仪的有效辅助方法,而无需进行额外的采集。索引术语-MicroCT,几何校准,可变几何扫描仪

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