首页> 外文期刊>Medical Physics >Performance comparison of an active matrix flat panel imager, computed radiography system, and a screen-film system at four standard radiation qualities.
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Performance comparison of an active matrix flat panel imager, computed radiography system, and a screen-film system at four standard radiation qualities.

机译:有源矩阵平板成像仪,计算机射线照相系统和银幕胶片系统在四种标准辐射质量下的性能比较。

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Four standard radiation qualities (from RQA 3 to RQA 9) were used to compare the imaging performance of a computed radiography (CR) system (general purpose and high resolution phosphor plates of a Kodak CR 9000 system), a selenium-based direct flat panel detector (Kodak Direct View DR 9000), and a conventional screen-film system (Kodak T-MAT L/RA film with a 3M Trimax Regular screen of speed 400) in conventional radiography. Reference exposure levels were chosen according to the manufacturer's recommendations to be representative of clinical practice (exposure index of 1700 for digital systems and a film optical density of 1.4). With the exception of the RQA 3 beam quality, the exposure levels needed to produce a mean digital signal of 1700 were higher than those needed to obtain a mean film optical density of 1.4. In spite of intense developments in the field of digital detectors, screen-film systems are still very efficient detectors for most of the beam qualities used in radiology. An important outcome of this study is the behavior of the detective quantum efficiency of the digital radiography (DR) system as a function of beam energy. The practice of users to increase beam energy when switching from a screen-film system to a CR system, in order to improve the compromise between patient dose and image quality, might not be appropriate when switching from screen-film to selenium-based DR systems.
机译:使用四种标准辐射质量(从RQA 3到RQA 9)来比较计算机射线照相(CR)系统(基于柯达CR 9000系统的通用和高分辨率荧光板),基于硒的直接平板的成像性能。检测器(Kodak Direct View DR 9000)和传统的放射线照相胶片系统(具有速度为400的3M Trimax Regular屏幕的Kodak T-MAT​​ L / RA胶片)。根据制造商的建议选择参考曝光量,以代表临床实践(数字系统的曝光指数为1700,胶片光学密度为1.4)。除了RQA 3光束质量外,产生1700的平均数字信号所需的曝光水平高于获得1.4的平均胶片光密度所需的曝光水平。尽管数字检测器领域已取得了长足的发展,但屏幕胶片系统对于放射学中使用的大多数光束质量仍然是非常有效的检测器。这项研究的重要成果是数字射线照相(DR)系统的探测量子效率与光束能量的关系。从屏幕胶片系统切换到CR系统时,用户的做法是增加光束能量,以改善患者剂量和图像质量之间的折衷,从屏幕胶片系统切换到基于硒的DR系统时,可能不适合。

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