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Measurements and applications of dose indices in radiography (Conference Paper)

机译:射线照相术中剂量指数的测量和应用(会议论文)

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摘要

Assessments of radiation dose and image quality are required in diagnostic radiography for quality assurance and optimization studies. In work currently being undertaken, dose indices were measured and image quality evaluated for a chest PA procedure. Thermoluminescent dosimeters of the GR-200 type were attached to the entrance and exit surfaces and placed at various depths of the PMMA phantom to measure the entrance surface dose, the exit surface dose, and the organ dose index. The effective dose was estimated from the entrance surface dose using PCXMC software. Two contrast-detail image plates, one with air holes for the low contrast objects and the other with gypsum holes for the high contrast objects, were used to obtain radiographic images. This image plate was placed at different depths from the entrance surface of the phantom to simulate objects at different positions in the body. Each image was evaluated by three independent radiologists to determine image quality. Analyses of radiation dose versus image quality were performed to determine the optimal technical factors such as, filtration and tube potential. It was found that an 11-cm thick PMMA phantom best simulated the patients. The fractional dose backscattered from this phantom was between 22% and 27% for kVp's between 66 and 133. Optimization analyses showed that no extra filter was required. For low contrast objects, an optimal choice of tube potential was 120 kVp. For high contrast objects, a kVp as low as 77 kVp could be used, depending on the image quality requirement.
机译:诊断放射线照相术需要评估放射线剂量和图像质量,以进行质量保证和优化研究。在目前正在进行的工作中,针对胸部PA程序测量了剂量指数并评估了图像质量。 GR-200型热释光剂量计连接到入口和出口表面,并放置在PMMA体模的不同深度,以测量入口表面剂量,出口表面剂量和器官剂量指数。使用PCXMC软件根据入射表面剂量估算有效剂量。使用两个对比细节图像板,一个用于低对比度对象的气孔,另一个用于高对比度对象的石膏孔,以获取射线照相图像。将该图像板放置在距幻影入口表面不同深度处,以模拟物体在人体不同位置的位置。每位图像均由三位独立的放射科医生进行评估,以确定图像质量。进行了辐射剂量与图像质量的对比分析,以确定最佳的技术因素,例如过滤和管电势。结果发现,厚度为11厘米的PMMA幻像最能模拟患者。对于从66到133的kVp,从该体模反向散射的分数剂量在22%到27%之间。优化分析表明,不需要额外的过滤器。对于低对比度的物体,管电位的最佳选择是120 kVp。对于高对比度的物体,可以根据图像质量要求使用低至77 kVp的kVp。

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