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首页> 外文期刊>Medical Physics >Automatic nonrigid registration of whole body CT mice images.
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Automatic nonrigid registration of whole body CT mice images.

机译:全身CT小鼠图像的自动非刚性配准。

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摘要

Three-dimensional intra- and intersubject registration of image volumes is important for tasks that include quantification of temporal/longitudinal changes, atlas-based segmentation, computing population averages, or voxel and tensor-based morphometry. While a number of methods have been proposed to address this problem, few have focused on the problem of registering whole body image volumes acquired either from humans or small animals. These image volumes typically contain a large number of articulated structures, which makes registration more difficult than the registration of head images, to which the majority of registration algorithms have been applied. This article presents a new method for the automatic registration of whole body computed tomography (CT) volumes, which consists of two main steps. Skeletons are first brought into approximate correspondence with a robust point-based method. Transformations so obtained are refined with an intensity-based nonrigid registration algorithm that includes spatial adaptation of the transformation's stiffness. The approach has been applied to whole body CT images of mice, to CT images of the human upper torso, and to human head and neck CT images. To validate the authors method on soft tissue structures, which are difficult to see in CT images, the authors use coregistered magnetic resonance images. They demonstrate that the approach they propose can successfully register image volumes even when these volumes are very different in size and shape or if they have been acquired with the subjects in different positions.
机译:图像体积的三维对象内和对象间配准对于包括时间/纵向变化的量化,基于图集的分割,计算总体平均值或基于体素和张量的形态测定在内的任务非常重要。尽管已经提出了许多方法来解决这个问题,但是很少有方法集中在记录从人或小动物获得的全身图像体积的问题上。这些图像体积通常包含大量的关节结构,这使得配准比头部图像的配准更困难,头部配准算法已应用到大多数头部配准算法上。本文介绍了一种自动注册全身计算机断层扫描(CT)量的新方法,该方法包括两个主要步骤。首先使用基于点的鲁棒方法使骨骼近似对应。如此获得的变换使用基于强度的非刚性配准算法进行完善,该算法包括对变换刚度的空间适应。该方法已应用于小鼠的全身CT图像,人体上躯干的CT图像以及人体头部和颈部的CT图像。为了验证作者的方法在软组织结构上的困难,这种结构在CT图像中很难看到,作者使用了共配准的磁共振图像。他们证明了他们提出的方法可以成功注册图像体积,即使这些体积在大小和形状上有很大差异,或者在对象处于不同位置时都已被捕获。

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