Gharehaghaji Nahideh, Khezerloo Davood, Abbasiazar Tohid
Department of Radiology, Faculty of Paramedical, Tabriz University of Medical Sciences, Tabriz, Iran.
J Med Signals Sens. 2019 Apr-Jun;9(2):137-142. doi: 10.4103/jmss.JMSS_30_18.
Creating a high-quality image with the low patient dose is one of the most important goals in medical X-ray imaging. In this study, the image quality parameters of the digital radiographic units in Tabriz city were considered and compared with the international protocols. The image quality parameters were measured at 11 high workload digital radiography (DR) imaging centers in Tabriz city, and the results were compared to DINN 6868/58 standards. All centers equipped with the direct DR units passed the spatial resolution, low contrast detectability, contrast dynamic range, and noise tests, while the computed radiography (CR) units only could pass the two last tests. The highest spatial resolution was observed 3.2 lp/mm in the DR unit while the lowest one was 1.8 lp/mm in the CR unit. The highest noise was measured to be 0.03 OD that was observed in the DR unit. The most difference between the nominal and measured peak kilovoltage and mAs was 3.1% and 6.8%, respectively. The entrance surface air kerma in all units was obtained <0.63 mGy. The measured half-value layer range was between 2.4 and 3.54 mmAl. The physical parameters of image quality such as spatial resolution, contrast, and noise are robustness quantitative parameters for the assessment of the image quality performance of the units. Therefore, measurement and control of these parameters using two-dimensional phantoms are very critical.
在低患者剂量下生成高质量图像是医学X射线成像中最重要的目标之一。在本研究中,对大不里士市数字射线摄影设备的图像质量参数进行了考量,并与国际协议进行了比较。在大不里士市的11个高工作量数字射线摄影(DR)成像中心测量了图像质量参数,并将结果与DINN 6868/58标准进行了比较。所有配备直接DR设备的中心均通过了空间分辨率、低对比度可探测性、对比度动态范围和噪声测试,而计算机X线摄影(CR)设备仅能通过最后两项测试。在DR设备中观察到的最高空间分辨率为3.2 lp/mm,而在CR设备中最低为1.8 lp/mm。在DR设备中测得的最高噪声为0.03 OD。标称和测量的峰值千伏和毫安秒之间的最大差异分别为3.1%和6.8%。所有设备的入射表面空气比释动能均<0.63 mGy。测得的半值层范围在2.4至3.54 mmAl之间。图像质量的物理参数,如空间分辨率、对比度和噪声,是评估设备图像质量性能的稳健定量参数。因此,使用二维体模对这些参数进行测量和控制非常关键。