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MARS: A mouse atlas registration system based on a planar x-ray projector and an optical camera

机译:MARS:基于平面X射线投影仪和光学相机的鼠标图集注册系统

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摘要

This paper introduces a mouse atlas registration system (MARS), composed of a stationary top-view x-ray projector and a side-view optical camera, coupled to a mouse atlas registration algorithm. This system uses the x-ray and optical images to guide a fully automatic co-registration of a mouse atlas with each subject, in order to provide anatomical reference for small animal molecular imaging systems such as positron emission tomography (PET). To facilitate the registration, a statistical atlas that accounts for inter-subject anatomical variations was constructed based on 83 organ-labeled mouse micro-computed tomography (CT) images. The statistical shape model and conditional Gaussian model techniques were used to register the atlas with the x-ray image and optical photo. The accuracy of the atlas registration was evaluated by comparing the registered atlas with the organ-labeled micro-CT images of the test subjects. The results showed excellent registration accuracy of the whole-body region, and good accuracy for the brain, liver, heart, lungs and kidneys. In its implementation, the MARS was integrated with a preclinical PET scanner to deliver combined PET/MARS imaging, and to facilitate atlas-assisted analysis of the preclinical PET images.
机译:本文介绍了一种鼠标图册注册系统(MARS),该系统由固定的顶视图X射线投影仪和侧面光学相机组成,并结合了鼠标图册注册算法。该系统使用X射线和光学图像引导小鼠图谱与每个对象的全自动共配准,以便为小型动物分子成像系统(例如正电子发射断层扫描(PET))提供解剖学参考。为了便于注册,根据83个器官标记的小鼠微计算机断层扫描(CT)图像,构建了一个统计图集,该图集解释了受试者之间的解剖学差异。统计形状模型和条件高斯模型技术用于将地图集与X射线图像和光学照片配准。通过将注册的地图集与测试对象的器官标记的微CT图像进行比较,来评估地图集注册的准确性。结果表明,整个部位的配准精度极好,对大脑,肝脏,心脏,肺和肾脏的配准精度也很高。在实施过程中,MARS与临床前PET扫描仪集成在一起,以提供PET / MARS组合成像,并有助于对临床前PET图像进行图集辅助分析。

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