图像质量
成像体模
剂量学
锥束ct
医学影像学
核医学
扫描仪
电压
图像噪声
霍恩斯菲尔德秤
光学
管(容器)
对比度(视觉)
梁(结构)
计算机断层摄影术
材料科学
物理
医学
计算机科学
图像(数学)
放射科
人工智能
量子力学
复合材料
作者
Rebecca Fahrig,Robert L. Dixon,Thomas H. Payne,Richard L. Morin,Arundhuti Ganguly,Norbert Strobel
摘要
We assess dose and image quality of a state-of-the-art angiographic C-arm system (Axiom Artis dTA, Siemens Medical Solutions, Forchheim, Germany) for three-dimensional neuro-imaging at various dose levels and tube voltages and an associated measurement method. Unlike conventional CT, the beam length covers the entire phantom, hence, the concept of computed tomography dose index (CTDI) is not the metric of choice, and one can revert to conventional dosimetry methods by directly measuring the dose at various points using a small ion chamber. This method allows us to define and compute a new dose metric that is appropriate for a direct comparison with the familiar CTDIw of conventional CT. A perception study involving the CATPHAN 600 indicates that one can expect to see at least the 9 mm inset with 0.5% nominal contrast at the recommended head-scan dose (60 mGy) when using tube voltages ranging from 70 kVp to 125 kVp. When analyzing the impact of tube voltage on image quality at a fixed dose, we found that lower tube voltages gave improved low contrast detectability for small-diameter objects. The relationships between kVp, image noise, dose, and contrast perception are discussed.
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