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首页> 外文期刊>Radiology >Virtual monochromatic reconstruction of dual-energy unenhanced head CT at 65-75 keV maximizes image quality compared with conventional polychromatic CT
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Virtual monochromatic reconstruction of dual-energy unenhanced head CT at 65-75 keV maximizes image quality compared with conventional polychromatic CT

机译:与传统的多色CT相比,双能量无增强头CT在65-75 keV的虚拟单色重建可最大程度地提高图像质量

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摘要

Purpose: To determine the virtual monochromatic imaging (VMI) energy levels that maximize brain parenchymal image quality in dual- energy unenhanced head computed tomography (CT) and to assess the improvement with this technique compared with conventional polychromatic scanning. Materials and Methods: Institutional review board approval was obtained with no informed consent required for this HIPAA-compliant retrospective analysis. Twenty-five consecutive unenhanced head CT scans were acquired with a 64-section dual- energy scanner with fast tube voltage switching (80-140 kVp). Scans were retrospectively reconstructed at VMI energy levels from 40 to 140 keV in 5-keV increments and were analyzed by using four quality indexes: gray matter (GM) signal-to-noise ratio (SNR), white matter (WM) SNR, GM-WM contrast-to-noise ratio (CNR), and posterior fossa artifact index (PFAI). Optimal mean values for each parameter were compared with those from 50 consecutive scans obtained with the same scanner in 120-kVp single-energy mode. Repeated-measures analysis of variance and Dunnett post hoc t test were then used to determine significance. Results: Maximal GM SNR, WM SNR, and GM-WM CNR values were observed at 65 keV, and minimal PFAI was observed at 75 keV. These values were significantly better than those of conventional polychromatic CT (P < .01); quality index improvement ratios (corrected for radiation dose) ranged from 17% to 50%. Conclusion: Virtual monochromatic reconstruction of dual-energy unenhanced head CT scans at 65-75 keV (optimal energy levels) maximizes image quality compared with scans obtained with conventional polychromatic CT.
机译:目的:确定虚拟单色成像(VMI)能量水平,以在双能不增强头部计算机断层扫描(CT)中最大化脑实质图像质量,并评估与常规多色扫描相比该技术的改进。材料和方法:在获得符合HIPAA要求的回顾性分析时,无需获得机构审查委员会的批准即可。使用具有快速管电压切换(80-140 kVp)的64节双能扫描仪,进行了25次连续未增强的头部CT扫描。以40到140 keV的VMI能量水平以5 keV的增量回顾性重建扫描,并使用四个质量指标进行分析:灰质(GM)信噪比(SNR),白质(WM)SNR,GM -WM对比噪声比(CNR)和后颅窝伪影指数(PFAI)。将每个参数的最佳平均值与使用相同扫描仪以120kVp单能模式获得的50次连续扫描的平均值进行比较。然后使用方差重复测量分析和Dunnett事后检验确定显着性。结果:在65 keV时观察到最大GM SNR,WM SNR和GM-WM CNR值,在75 keV时观察到最小的PFAI。这些值明显优于传统的多色CT(P <.01);质量指标的改善率(针对辐射剂量校正)为17%至50%。结论:与传统的多色CT扫描相比,虚拟双色无增强头CT扫描在65-75 keV(最佳能量水平)下的单色重建可以最大程度地提高图像质量。

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