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Cascade Registration of Micro CT Volumes Taken in Multiple Resolutions

机译:微型CT股票的级联注册多分辨率拍摄

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In this paper, we present a preliminary report of a multi-scale registration method between micro-focus X-ray CT (micro CT) volumes taken in different scales. 3D fine structures of target objects can be observed on micro CT volumes, which are difficult to observe on clinical CT volumes. Micro CT scanners can scan specimens in various resolutions. In their high resolution volumes, ultra fine structures of specimens can be observed, while scanned areas are limited to very small. On the other hand, in low resolution volumes, large areas can be captured, while fine structures of specimens are difficult to observe. The fusion volume of the high and low resolution volumes will have benefits of both. Because the difference of resolutions between the high and low resolution volumes may vary greatly, an intermediate resolution volume is required for successful fusion of volumes. To perform such volume fusion, a cascade multi-resolution registration technique is required. To register micro CT volumes that have quite different resolutions, we employ a cascade co-registration technique. In the cascade co-registration process, intermediate resolution volumes are used in a registration process of the high and low resolution volumes. In the registration between two volumes, we apply two steps registration techniques. In the first step, a block division is used to register two resolution volumes. Afterward, we estimate the fine spatial positions relating the registered two volumes using the Powell method. The registration result can be used to generate a fusion volume of the high and low resolution volumes.
机译:在本文中,我们在不同尺度采集的微焦X射线CT(Micro CT)体积之间的多尺度登记方法的初步报告。在Micro CT卷上可以观察到靶对象的3D细结构,这难以在临床CT体积上观察。 Micro CT扫描仪可以在各种分辨率下扫描样品。在其高分辨率体积中,可以观察到样品的超细结构,而扫描区域仅限于非常小。另一方面,在低分辨率体积中,可以捕获大面积,而标本的细结构难以观察。高分辨率卷的融合体积将有两者的益处。由于高分辨率之间的分辨率之间的分辨率的差异可能很大,因此成功融合了体积的中间分辨率体积。为了执行这种体积融合,需要级联的多分辨率注册技术。为了注册具有相当不同分辨率的微型CT卷,我们采用了级联共同登记技术。在级联共同登记过程中,中间分辨率体积用于高分辨率和低分辨率体积的注册过程中。在两个卷之间的注册中,我们应用两个步骤登记技术。在第一步中,块划分用于注册两个分辨率卷。之后,我们估计使用Powell方法估计与登记的二卷相关的细空间位置。注册结果可用于生成高分辨率卷的融合量。

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