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多能量同步加速器生物医学成像系统。

Multiple energy synchrotron biomedical imaging system.

作者信息

Bassey B, Martinson M, Samadi N, Belev G, Karanfil C, Qi P, Chapman D

机构信息

Physics and Engineering Physics, University of Saskatchewan, Saskatoon, SK, Canada.

出版信息

Phys Med Biol. 2016 Dec 7;61(23):8180-8198. doi: 10.1088/0031-9155/61/23/8180. Epub 2016 Nov 2.

Abstract

A multiple energy imaging system that can extract multiple endogenous or induced contrast materials as well as water and bone images would be ideal for imaging of biological subjects. The continuous spectrum available from synchrotron light facilities provides a nearly perfect source for multiple energy x-ray imaging. A novel multiple energy x-ray imaging system, which prepares a horizontally focused polychromatic x-ray beam, has been developed at the BioMedical Imaging and Therapy bend magnet beamline at the Canadian Light Source. The imaging system is made up of a cylindrically bent Laue single silicon (5,1,1) crystal monochromator, scanning and positioning stages for the subjects, flat panel (area) detector, and a data acquisition and control system. Depending on the crystal's bent radius, reflection type, and the horizontal beam width of the filtered synchrotron radiation (20-50 keV) used, the size and spectral energy range of the focused beam prepared varied. For example, with a bent radius of 95 cm, a (1,1,1) type reflection and a 50 mm wide beam, a 0.5 mm wide focused beam of spectral energy range 27 keV-43 keV was obtained. This spectral energy range covers the K-edges of iodine (33.17 keV), xenon (34.56 keV), cesium (35.99 keV), and barium (37.44 keV); some of these elements are used as biomedical and clinical contrast agents. Using the developed imaging system, a test subject composed of iodine, xenon, cesium, and barium along with water and bone were imaged and their projected concentrations successfully extracted. The estimated dose rate to test subjects imaged at a ring current of 200 mA is 8.7 mGy s, corresponding to a cumulative dose of 1.3 Gy and a dose of 26.1 mGy per image. Potential biomedical applications of the imaging system will include projection imaging that requires any of the extracted elements as a contrast agent and multi-contrast K-edge imaging.

摘要

一种能够提取多种内源性或诱导性对比剂以及水和骨骼图像的多能量成像系统,对于生物对象的成像将是理想的。同步加速器光源提供的连续光谱为多能量X射线成像提供了近乎完美的光源。在加拿大光源的生物医学成像与治疗弯铁光束线上,开发了一种新型的多能量X射线成像系统,该系统可产生水平聚焦的多色X射线束。该成像系统由圆柱形弯曲的劳厄单晶硅(5,1,1)晶体单色仪、用于对象的扫描和定位台、平板(面积)探测器以及数据采集和控制系统组成。根据晶体的弯曲半径、反射类型以及所使用的经过滤波的同步辐射(20 - 50 keV)的水平光束宽度,所制备的聚焦光束的尺寸和光谱能量范围会有所不同。例如,弯曲半径为95 cm、采用(1,1,1)型反射且光束宽度为50 mm时,可获得光谱能量范围为27 keV - 43 keV、宽度为0.5 mm的聚焦光束。该光谱能量范围涵盖了碘(33.17 keV)、氙(34.56 keV)、铯(35.99 keV)和钡(37.44 keV)的K边;其中一些元素用作生物医学和临床对比剂。使用所开发的成像系统,对由碘、氙、铯、钡以及水和骨骼组成的测试对象进行了成像,并成功提取了它们的投影浓度。在200 mA的环电流下对测试对象成像时,估计的剂量率为8.7 mGy/s,对应于1.3 Gy的累积剂量和每张图像26.1 mGy 的剂量。该成像系统潜在的生物医学应用将包括需要任何提取元素作为对比剂的投影成像以及多对比K边成像。

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