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Metal artefact reduction in gemstone spectral imaging dual-energy CT with and without metal artefact reduction software

机译:带有和不带有金属伪影减少软件的宝石光谱成像双能CT中的金属伪影减少

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Objective To assess the usefulness of gemstone spectral imaging (GSI) dual-energy CT (DECT) with/without metal artefact reduction software (MARs). Methods The DECTs were performed using fast kV-switching GSI between 80 and 140 kV. The CT data were retroreconstructed with/without MARs, by different displayed fields-of-view (DFOV), and with synthesised monochromatic energy in the range 40-140 keV. A phantom study of size and CT numbers was performed in a titanium plate and a stainless steel plate. A clinical study was performed in 26 patients with metallic hardware. All images were retrospectively reviewed in terms of the visualisation of periprosthetic regions and the severity of beam-hardening artefacts by using a five-point scale. Results The GSI-MARs reconstruction can markedly reduce the metal-related artefacts, and the image quality was affected by the prosthesis composition and DFOV. The spectral CT numbers of the prosthesis and periprosthetic regions showed different patterns on stainless steel and titanium plates. Conclusion Dual-energy CT with GSI-MARs can reduce metal-related artefacts and improve the delineation of the prosthesis and periprosthetic region. We should be cautious when using GSI-MARs because the image quality was affected by the prosthesis composition, energy (in keV) and DFOV. The metallic composition and size should be considered in metallic imaging with GSI-MARs reconstruction. Key Points ? Metal-related artefacts can be troublesome on musculoskeletal computed tomography (CT). ? Gemstone spectral imaging (GSI) with dual-energy CT (DECT) offers a novel solution ? GSI and metallic artefact reduction software (GSI-MAR) can markedly reduce these artefacts. ? However image quality is influenced by the prosthesis composition and other parameters. ? We should be aware about potential overcorrection when using GSI-MARs.
机译:目的评估使用/不使用金属伪影减少软件(MARs)的宝石光谱成像(GSI)双能CT(DECT)的有用性。方法使用80 kV至140 kV之间的快速kV切换GSI进行DECT。通过不同的显示视场(DFOV)和合成的单色能量在40-140 keV范围内,使用/不使用MARs来重建CT数据。在钛板和不锈钢板中进行了尺寸和CT数的幻像研究。对26名金属硬件患者进行了临床研究。通过使用五点量表对假体周围区域的可视化和束硬化伪影的严重性进行回顾性回顾。结果GSI-MARs重建可以显着减少与金属有关的伪影,并且图像质量受假体成分和DFOV的影响。假体和假体周围区域的光谱CT数在不锈钢和钛板上显示出不同的图案。结论结合GSI-MAR的双能CT可以减少与金属有关的伪影,并改善假体和假体周围区域的轮廓。使用GSI-MAR时应谨慎,因为图像质量受假体成分,能量(以keV为单位)和DFOV的影响。在使用GSI-MARs重建的金属成像中,应考虑金属成分和尺寸。关键点 ?金属相关的人工制品可能会在骨骼肌肉计算机断层扫描(CT)上造成麻烦。 ?带有双能CT(DECT)的宝石光谱成像(GSI)提供了一种新颖的解决方案? GSI和金属伪影减少软件(GSI-MAR)可以显着减少这些伪影。 ?但是,图像质量受假体组成和其他参数影响。 ?使用GSI-MAR时,我们应该意识到潜在的过度校正。

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