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Exploring metal artifact reduction using dual-energy CT with pre-metal and post-metal implant cadaver comparison: are implant specific protocols needed?

机译:使用双能CT与金属植入前和金属植入后尸体的比较探索金属伪影的减少:是否需要特定于植入物的协议?

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摘要

To quantify and optimize metal artifact reduction using virtual monochromatic dual-energy CT for different metal implants compared to non-metal reference scans. Dual-energy CT scans of a pair of human cadaver limbs were acquired before and after implanting a titanium tibia plate, a stainless-steel tibia plate and a titanium intramedullary nail respectively. Virtual monochromatic images were analyzed from 70 to 190 keV. Region-of-interest (ROI), used to determine fluctuations and inaccuracies in CT numbers of soft tissues and bone, were placed in muscle, fat, cortical bone and intramedullary tibia canal. The stainless-steel implant resulted in more pronounced metal artifacts compared to both titanium implants. CT number inaccuracies in 70 keV reference images were minimized at 130, 180 and 190 keV for the titanium tibia plate, stainless-steel tibia plate and titanium intramedullary nail respectively. Noise, measured as the standard deviation of pixels within a ROI, was minimized at 130, 150 and 140 keV for the titanium tibia plate, stainless-steel tibia plate and titanium intramedullary nail respectively. Tailoring dual-energy CT protocols using implant specific virtual monochromatic images minimizes fluctuations and inaccuracies in CT numbers in bone and soft tissues compared to non-metal reference scans
机译:与非金属参考扫描相比,使用虚拟单色双能CT对不同的金属植入物进行量化和优化金属伪影的减少。在分别植入钛胫骨板,不锈钢胫骨板和钛髓内钉之前和之后,对一对人的尸体四肢进行了双能CT扫描。分析了70至190 keV的虚拟单色图像。感兴趣区域(ROI)用于确定软组织和骨骼的CT数量的波动和不准确性,被放置在肌肉,脂肪,皮质骨和胫骨髓内腔中。与两种钛植入物相比,不锈钢植入物会导致更明显的金属伪影。对于钛胫骨板,不锈钢胫骨板和钛髓内钉,分别在130、180和190keV的情况下,将70 keV参考图像中的CT数误差最小化。分别将钛胫骨板,不锈钢胫骨板和钛髓内钉分别以130 keV,150 keV和140 keV的噪声最小化,以ROI中像素的标准偏差衡量。与非金属参考扫描相比,使用特定于植入物的虚拟单色图像定制双能CT协议可最大程度地减少骨骼和软组织中CT数量的波动和不准确性

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