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Value and Clinical Application of Orthopedic Metal Artifact Reduction Algorithm in CT Scans after Orthopedic Metal Implantation

机译:骨科金属假象减少算法在骨科金属植入后CT扫描中的价值和临床应用

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Objective To evaluate orthopedic metal artifact reduction algorithm (O-MAR) in CT orthopedic metal artifact reduction at different tube voltages, identify an appropriate low tube voltage for clinical practice, and investigate its clinical application. Materials and Methods The institutional ethical committee approved all the animal procedures. A stainless-steel plate and four screws were implanted into the femurs of three Japanese white rabbits. Preoperative CT was performed at 120 kVp without O-MAR reconstruction, and postoperative CT was performed at 80–140 kVp with O-MAR. Muscular CT attenuation, artifact index (AI) and signal-to-noise ratio (SNR) were compared between preoperative and postoperative images (unpaired t test), between paired O-MAR and non-O-MAR images (paired Student t test) and among different kVp settings (repeated measures ANOVA). Artifacts' severity, muscular homogeneity, visibility of inter-muscular space and definition of bony structures were subjectively evaluated and compared (Wilcoxon rank-sum test). In the clinical study, 20 patients undertook CT scan at low kVp with O-MAR with informed consent. The diagnostic satisfaction of clinical images was subjectively assessed. Results Animal experiments showed that the use of O-MAR resulted in accurate CT attenuation, lower AI, better SNR, and higher subjective scores ( p Conclusion O-MAR can effectively reduce orthopedic metal artifacts at different tube voltages, and facilitates low-tube-voltage CT for patients with orthopedic metal implants.
机译:目的评估在不同管电压下CT骨科金属假象减少中的骨科金属假象减少算法(O-MAR),确定适合临床使用的低管电压,并研究其临床应用。材料和方法机构伦理委员会批准了所有动物程序。将不锈钢板和四个螺钉植入三只日本白兔的股骨中。术前CT在120 kVp下进行,无需O-MAR重建,术后CT在80-140 kVp下进行O-MAR。比较术前和术后图像(未配对t检验),成对的O-MAR和非O-MAR图像(成对的Student t检验)之间的肌肉CT衰减,伪影指数(AI)和信噪比(SNR)。以及不同的kVp设置之间(重复测量方差分析)。主观评估并比较伪影的严重程度,肌肉同质性,肌间间隙的可见性和骨结构的定义(Wilcoxon秩和检验)。在临床研究中,有20例患者在知情同意的情况下,在低kVp和O-MAR下进行了CT扫描。主观评估临床图像的诊断满意度。结果动物实验表明,使用O-MAR可以导致准确的CT衰减,较低的AI,更好的SNR和更高的主观评分(p结论O-MAR可以有效减少不同管电压下的矫形金属假象,并有助于低管矫形金属植入物的电压CT。

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