首页> 外文会议>Conference on image perception and performance >Psychophysical evaluation of the image quality of a dynamic flat-panel digital x-ray image detector using the threshold contrast detail detectability (TCDD) technique
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Psychophysical evaluation of the image quality of a dynamic flat-panel digital x-ray image detector using the threshold contrast detail detectability (TCDD) technique

机译:使用阈值对比度细节可检测性(TCDD)技术对动态平板数字X射线图像检测器的图像质量进行心理物理评估

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Abstract: We are currently in an era of active development of the digital X-ray imaging detectors that will serve the radiological communities in the new millennium. The rigorous comparative physical evaluations of such devices are therefore becoming increasingly important from both the technical and clinical perspectives. The authors have been actively involved in the evaluation of a clinical demonstration version of a flat-panel dynamic digital X-ray image detector (or FDXD). Results of objective physical evaluation of this device have been presented elsewhere at this conference. The imaging performance of FDXD under radiographic exposure conditions have been previously reported, and in this paper a psychophysical evaluation of the FDXD detector operating under continuous fluoroscopic conditions is presented. The evaluation technique employed was the threshold contrast detail detectability (TCDD) technique, which enables image quality to be measured on devices operating in the clinical environment. This approach addresses image quality in the context of both the image acquisition and display processes, and uses human observers to measure performance. The Leeds test objects TO$LB@10$RB and TO$LB@10$PLU$RB were used to obtain comparative measurements of performance on the FDXD and two digital spot fluorography (DSF) systems, one utilizing a Plumbicon camera and the other a state of the art CCD camera. Measurements were taken at a range of detector entrance exposure rates, namely 6, 12, 25 and 50 $mu@R/s. In order to facilitate comparisons between the systems, all fluoroscopic image processing such as noise reduction algorithms, were disabled during the experiments. At the highest dose rate FDXD significantly outperformed the DSF comparison systems in the TCDD comparisons. At 25 and 12 $mu@R/s all three-systems performed in an equivalent manner and at the lowest exposure rate FDXD was inferior to the two DSF systems. At standard fluoroscopic exposures, FDXD performed in an equivalent manner to the DSF systems for the TCDD comparisons. This would suggest that FDXD would therefore perform adequately in a clinical fluoroscopic environment and our initial clinical experiences support this. Noise reduction processing of the fluoroscopic data acquired on FDXD was also found to further improve TCDD performance for FDXD. FDXD therefore combines acceptable fluoroscopic performance with excellent radiographic (snap shot) imaging fidelity, allowing the possibility of a universal x-ray detector to be developed, based on FDXD's technology. It is also envisaged that fluoroscopic performance will be improved by the development of digital image enhancement techniques specifically tailored to the characteristics of the FDXD detector. !9
机译:摘要:我们目前正处于积极开发数字X射线成像探测器的时代,该探测器将为新千年的放射学界服务。因此,从技术和临床角度来看,对此类设备进行严格的比较物理评估都变得越来越重要。作者一直积极参与平板动态数字X射线图像检测器(或FDXD)的临床演示版本的评估。对该设备进行客观物理评估的结果已在本次会议的其他地方进行了介绍。 FDXD在射线曝光条件下的成像性能以前已有报道,在本文中,对在连续荧光透视条件下运行的FDXD检测器进行了心理物理评估。所采用的评估技术是阈值对比度细节可检测性(TCDD)技术,该技术可在临床环境中运行的设备上测量图像质量。这种方法在图像获取和显示过程中都解决了图像质量问题,并使用人工观察者来衡量性能。利兹测试对象TO $ LB @ 10 $ RB和TO $ LB @ 10 $ PLU $ RB用于获得FDXD和两个数字点透视(DSF)系统的性能比较测量,一个使用Plumbicon相机,另一个使用最先进的CCD相机。在检测器入口暴露速率范围内进行测量,即6、12、25和50μmuR/ s。为了促进系统之间的比较,在实验过程中禁用了所有透视图像处理(例如降噪算法)。在最高剂量率下,FDXD在TCDD比较中明显优于DSF比较系统。在25和12 $ mu @ R / s的情况下,所有三个系统均以相同的方式运行,并且在最低的暴露速率下,FDXD的性能低于两个DSF系统。在标准荧光透视曝光下,对于TCDD比较,FDXD的表现与DSF系统等效。这表明FDXD因此可以在临床荧光镜检查环境中充分发挥作用,我们的初步临床经验对此提供了支持。还发现对在FDXD上采集的荧光透视数据进行降噪处理可以进一步提高FDXD的TCDD性能。因此,FDXD将可接受的荧光检查性能与出色的射线照相(快照)成像保真度相结合,从而可以基于FDXD的技术开发出通用的X射线检测器。还可以设想通过开发专门针对FDXD检测器特性的数字图像增强技术来改善透视性能。 !9

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