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First small-animal in-vivo phase-contrast micro-CT scanner

机译:第一台小动物体内相差显微CT扫描仪

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We have developed a compact grating-based in-vivo phase-contrast micro-CT system with a rotating gantry. The 50 W microfocus x-ray source operates with 20 to 50 kV peak energy. The length of the rotating interferometer is around 47 cm. Pixel size in the object is 30 micron; the field of view is approx. 35 mm in diameter, suited to image a mouse. The interferometer consists of three gratings: an absorption grating close to the x-ray source, a phase grating to introduce a π/2 phase shift and an absorption analyzer grating positioned at the first fractional Talbot distance. Numerous drives and actuators are used to provide angular and linear grating alignment, phase stepping and object/gantry precision positioning. Phantom studies were conducted to investigate performance, accuracy and stability of the scanner. In particular, the influences of gantry rotation and of temperature fluctuations on the interferometric image acquisition were characterized. Also dose measurements were performed. The first imaging results obtained with the system show the complementary nature of phase-contrast micro-CT images with respect to absorption-based micro-CT. Future improvements, necessary to optimize the scanner for in-vivo small-animal CT scanning on a regular and easy-to-use basis, are also discussed.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:我们已经开发了具有旋转机架的紧凑型基于光栅的体内相差微CT系统。 50 W微焦点X射线源的峰值能量为20到50 kV。旋转干涉仪的长度约为47厘米。对象中的像素大小为30微米;视场约为直径35毫米,适合给鼠标成像。干涉仪由三个光栅组成:靠近x射线源的吸收光栅,引入π/ 2相移的相位光栅和位于第一分数塔尔伯特距离的吸收分析仪光栅。许多驱动器和致动器用于提供角度和线性光栅对准,相位步进以及对象/门架精确定位。进行了幻影研究以研究扫描仪的性能,准确性和稳定性。尤其是,表征了机架旋转和温度波动对干涉图像采集的影响。还进行剂量测量。用该系统获得的第一个成像结果显示了相衬微CT图像相对于基于吸收的微CT的互补性质。还讨论了在常规且易于使用的基础上优化扫描仪以进行体内小动物CT扫描所需的未来改进措施。©(2012)COPYRIGHT光电仪器工程师协会(SPIE)。摘要的下载仅允许个人使用。

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