首页> 外文期刊>European spine journal: official publication of the European Spine Society, the European Spinal Deformity Society, and the European Section of the Cervical Spine Research Society >Noise-optimised virtual monoenergetic imaging of dual-energy CT: effect on metal artefact reduction in patients with lumbar internal fixation
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Noise-optimised virtual monoenergetic imaging of dual-energy CT: effect on metal artefact reduction in patients with lumbar internal fixation

机译:双能CT的噪声优化虚拟单元成像分析:腰椎内固定患者金属艺术品减少的影响

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Purpose The purpose of this study was to evaluate the effects of noise-optimised virtual monoenergetic imaging (VMI+) reconstructions on reducing metal artefacts compared to traditional virtual monoenergetic imaging (VMI) and linearly blended (M_0.6) reconstructions in patients with lumbar metal internal fixation in dual-energy CT (DECT). Methods Forty patients who underwent DECT were evaluated in this retrospective study. Images were reconstructed with M_0.6 and with VMI+ and VMI at 10-keV intervals from 40 keV to 190 keV. Attenuation and noise were measured in the hyperdense artefacts, hypodense artefacts, spinal canal, abdominal aorta (AA), and inferior vena cava (IVC). An artefact index (AI) was calculated. A subjective evaluation of the metal-bone interface, surrounding soft tissue, spinal canal, AA, and IVC was conducted. Results The AI values for the hypodense artefacts, spinal canal, and IVC were lowest in the 130 keV VMI+ series, for the hyperdense artefacts in the 120 keV VMI+ series, and for the AA in the 190 keV VMI+ series. Except for the hypodense artefacts, the AI values were lower compared to the M_0.6 images and all the VMI series (all p < 0.05). The subjective image quality was highest at 130 keV VMI+ for the metal-bone interface, surrounding soft tissue, AA, and IVC, and at 120 keV VMI+ for the spinal canal. Except for the AA, these rating scores were higher compared to the M_0.6 images and the entire VMI series (all p < 0.05). Conclusions DECT with high-keV VMI+ efficiently reduces metal artefacts and shows superior image quality in patients with lumbar internal fixation.
机译:目的本研究的目的是评估噪声优化的虚拟单体成像(VMI +)重建对减少金属伪影的影响,与传统的虚拟单体成像(VMI)和腰椎内部的患者线性混合(M_0.6)重建进行线性混合(M_0.6)重建在双能CT(DECT)中固定。方法在此回顾性研究中评估了接受DECT的四十名患者。使用M_0.6和VMI +和VMI重建图像,以10-KEV间隔为40keV至190keV。在高密集的人工制品,脱索人工制品,脊柱管,腹主动脉(AA)和下腔静脉(IVC)中测量衰减和噪音。计算人工制品指数(AI)。进行了金属骨界面,周围软组织,脊柱管,AA和IVC的主观评价。结果脱索人工制品,脊柱管道和IVC的AI值在130keV VMI +系列中最低,用于120keV VMI +系列中的高阵列人工制品,以及190 keV VMI +系列中的AA。除了脱索人工制品外,与M_0.6图像和所有VMI系列相比,AI值较低(所有P <0.05)。主体图像质量在130 kev VMI +中最高,用于金属骨界面,周围软组织,AA和IVC,以及脊柱管的120keV VMI +。除AA外,与M_0.6图像和整个VMI系列相比,这些评级分数更高(所有P <0.05)。结论DECT具有高kev VMI +有效地减少了金属伪影,并显示出腰椎内固定患者的优越图像质量。

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