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首页> 外文期刊>American Journal of Physiology >Three-dimensional imaging of vasculature and parenchyma in intact rodent organs with X-ray micro-CT.
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Three-dimensional imaging of vasculature and parenchyma in intact rodent organs with X-ray micro-CT.

机译:X射线微型CT对完整啮齿动物器官的血管和实质进行三维成像。

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摘要

A microcomputed tomography (micro-CT) scanner, which generates three-dimensional (3-D) images consisting of up to a billion cubic voxels, each 5-25 micron on a side, and which has isotropic spatial resolution, is described. Its main components are a spectroscopic X-ray source that produces selectable primary emission peaks at approximately 9, 18, or 25 keV and a fluorescing thin crystal plate that is imaged (at selectable magnification) with a lens onto a 2.5 x 2.5-cm, 1,024 x 1,024-pixel, charge-coupled device (CCD) detector array. The specimen is positioned close to the crystal and is rotated in 721 equiangular steps around 360 degrees between each X-ray exposure and its CCD recording. Tomographic reconstruction algorithms, applied to these recorded images, are used to generate 3-D images of the specimen. The system is used to scan isolated, intact, fixed rodent organs (e.g., heart or kidney) with the image contrast of vessel lumens enhanced with contrast medium. 3-D image display and analysis are used to address physiological questions about the internal structure-to-function relationships of the organs.
机译:描述了一种微计算机断层摄影(micro-CT)扫描仪,该扫描仪生成三维(3-D)图像,该图像由多达十亿个立方像素组成,每个像素的侧面为5-25微米,并且具有各向同性的空间分辨率。它的主要成分是能产生约9、18或25 keV的可选初级发射峰的光谱X射线源,以及用透镜成像到2.5 x 2.5-cm上的荧光薄晶体板(可以选择放大倍数), 1,024 x 1,024像素的电荷耦合器件(CCD)检测器阵列。样品放置在靠近晶体的位置,并在每次X射线曝光及其CCD记录之间以721个等角点的角度绕360度旋转。应用于这些记录图像的断层扫描重建算法用于生成标本的3-D图像。该系统用于扫描孤立的,完整的,固定的啮齿动物器官(例如,心脏或肾脏),并通过造影剂增强血管腔的图像对比度。 3-D图像显示和分析用于解决有关器官内部结构与功能关系的生理问题。

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