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Phase-sensitive X-ray imaging of synovial joints.

机译:滑膜关节的相敏X射线成像。

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摘要

OBJECTIVE: To test the efficacy of phase-sensitive X-ray imaging for intact synovial joints, whereby refraction effects, along with the attenuation of conventional radiography, can be exploited. DESIGN: Intact cadaveric human knee joints were imaged, in the computed tomographic mode, using an analyzer-based X-ray system at the National Synchrotron Light Source, Brookhaven National Laboratory. A collimated fan beam of 51 keV X-rays was prepared by a silicon [1,1,1 reflection] double-crystal monochromator. The X-ray beam transmitted through the specimen was imaged after diffraction in the vertical plane by means of the analyzer crystal with the analyzer crystal tuned to its half-reflectivity point (6.5 microrad). A two-dimensional filtered backprojection (FBP) algorithm was used for reconstructing transverse slices of images. RESULTS: The resulting images demonstrate simultaneous soft tissue and bone contrast at a level that has not been achieved previously. Identifiable structures include articular cartilage, cruciate ligaments, loose connective tissue, menisci, and chondrocalcinosis. CONCLUSION: Phase-sensitive X-ray imaging using an analyzer-based system renders exceptionally high quality images of soft and hard tissues within synovial joints, with high contrast and resolution, and thus holds promise for the eventual clinical utility.
机译:目的:为了检验相敏X射线成像对滑膜完整关节的有效性,从而可以利用折射作用以及传统放射照相的衰减。设计:在布鲁克海文国家实验室的国家同步加速器光源中,使用基于分析仪的X射线系统,以计算机断层扫描模式对完整的尸体人膝关节成像。通过硅[1,1,1反射]双晶体单色仪制备了51 keV X射线准直的扇形光束。透射过样品的X射线束在垂直面上通过分析仪晶体成像后,将分析仪晶体调整到其半反射点(6.5微弧度)。二维滤波反投影(FBP)算法用于重建图像的横向切片。结果:所得图像显示了同时存在的软组织和骨骼对比,其水平是以前无法达到的。可识别的结构包括关节软骨,交叉韧带,疏松的结缔组织,半月板和软骨钙化病。结论:使用基于分析仪的系统的相敏X射线成像可提供滑膜关节内软组织和硬组织的高质量图像,具有高对比度和分辨率,因此有望在最终的临床应用。

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