HUS Medical Imaging Center, Radiology, University of Helsinki and Helsinki University Hospital, P.O. Box 340, 00029, Helsinki, Finland.
BMC Med Imaging. 2021 Jan 6;21(1):2. doi: 10.1186/s12880-020-00538-4.
Cone-beam computed tomography (CBCT) has become an increasingly important medical imaging modality in orthopedic operating rooms. Metal implants and related image artifacts create challenges for image quality optimization in CBCT. The purpose of this study was to develop a robust and quantitative method for the comprehensive determination of metal artifacts in novel CBCT applications.
The image quality of an O-arm CBCT device was assessed with an anthropomorphic pelvis phantom in the presence of metal implants. Three different kilovoltage and two different exposure settings were used to scan the phantom both with and without the presence of metal rods.
The amount of metal artifact was related to the applied CBCT imaging protocol parameters. The size of the artifact was moderate with all imaging settings. The highest applied kilovoltage and exposure level distinctly increased artifact severity.
The developed method offers a practical and robust way to quantify metal artifacts in CBCT. Changes in imaging parameters may have nonlinear effects on image quality which are not anticipated based on physics.
锥形束计算机断层扫描(CBCT)已成为骨科手术室中越来越重要的医学成像方式。金属植入物和相关的图像伪影给 CBCT 的图像质量优化带来了挑战。本研究的目的是开发一种强大而定量的方法,用于全面确定新型 CBCT 应用中的金属伪影。
使用带有金属植入物的人体骨盆模型评估 O 臂 CBCT 设备的图像质量。使用三种不同千伏和两种不同的曝光设置,在有和没有金属棒的情况下扫描模型。
金属伪影的数量与应用的 CBCT 成像协议参数有关。所有成像设置的伪影大小适中。最高应用千伏和曝光水平明显增加了伪影的严重程度。
所开发的方法提供了一种实用且强大的方法,可用于定量 CBCT 中的金属伪影。成像参数的变化可能对图像质量产生非线性影响,而这些影响无法根据物理原理预测。