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Usefulness of the SNR Using the Subtraction Method and Image Visibility Using the Howlett Chart Method in X-Ray Fluoroscopic System

机译:X射线荧光透视系统中使用减法的SNR的有用性和使用Howlett图表法的图像可见性的有用性

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X-ray fluoroscopy has been used not only for diagnoses but also for treatment, as in interventional radiology. The aim of this study is to assess the usefulness of the signal-to-noise ratio (SNR) using the subtraction method, which is used in the quality assurance/quality control (QA/QC) of magnetic resonance imaging (MRI) equipment, and image visibility using the Howlett chart method in the fluoroscopic examination. The fluoroscopy unit has a detector with an image intensifier and a color liquid crystal display. A 2620 dosimeter and an ionization chamber were selected for the dose measurement. Fluoroscopic images for visual and physical evaluations were collected as dynamic data. The skin surface absorbed dose rates for each tube current were measured using a dosimeter. The SNR using the subtraction method and image visibility using the Howlett chart method were examined. The results from both indicate that as the SNR improves, visual evaluation increases, but the rate of increase gradually saturates. Therefore, physical and visual evaluations are possible with the SNR using the subtraction method and the image visibility using the Howlett chart method.
机译:X射线透视术已不仅用于诊断,而且还用于治疗,如介入放射学。这项研究的目的是使用减法评估信噪比(SNR)的有效性,该方法用于磁共振成像(MRI)设备的质量保证/质量控制(QA / QC)中,透视检查中使用Howlett图表方法的图像可见性。荧光检查单元具有带图像增强器和彩色液晶显示器的检测器。选择2620剂量计和电离室进行剂量测量。收集用于视觉和物理评估的荧光镜图像作为动态数据。使用剂量计测量每个管电流的皮肤表面吸收剂量率。检查了使用减法的SNR和使用Howlett图表法的图像可见性。两者的结果都表明,随着SNR的提高,视觉评估会增加,但是增加的速度会逐渐饱和。因此,可以通过使用减法的SNR和使用Howlett图表法的图像可见性来进行物理和视觉评估。

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