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利用光子计数探测器 CT 提高冠状动脉钙化定量:尸体标本的离体研究。

Improved coronary calcification quantification using photon-counting-detector CT: an ex vivo study in cadaveric specimens.

机构信息

Center for Medical Image Science and Visualization (CMIV), Linköping University, Linköping, Sweden.

Department of Radiology and Department of Health, Medicine and Caring Sciences, Linköping University, Linköping, Sweden.

出版信息

Eur Radiol. 2021 Sep;31(9):6621-6630. doi: 10.1007/s00330-021-07780-6. Epub 2021 Mar 13.

Abstract

OBJECTIVES

To compare the accuracy of coronary calcium quantification of cadaveric specimens imaged from a photon-counting detector (PCD)-CT and an energy-integrating detector (EID)-CT.

METHODS

Excised coronary specimens were scanned on a PCD-CT scanner, using both the PCD and EID subsystems. The scanning and reconstruction parameters for EID-CT and PCD-CT were matched: 120 kV, 9.3-9.4 mGy CTDI, and a quantitative kernel (D50). PCD-CT images were also reconstructed using a sharper kernel (D60). Scanning the same specimens using micro-CT served as a reference standard for calcified volumes. Calcifications were segmented with a half-maximum thresholding technique. Segmented calcified volume differences were analyzed using the Friedman test and post hoc pairwise Wilcoxon signed rank test with the Bonferroni correction. Image noise measurements were compared between EID-CT and PCD-CT with a repeated-measures ANOVA test and post hoc pairwise comparison with the Bonferroni correction. A p < 0.05 was considered statistically significant.

RESULTS

The volume measurements in 12/13 calcifications followed a similar trend: EID-D50 > PCD-D50 > PCD-D60 > micro-CT. The median calcified volumes in EID-D50, PCD-D50, PCD-D60, and micro-CT were 22.1 (IQR 10.2-64.8), 21.0 (IQR 9.0-56.5), 18.2 (IQR 8.3-49.3), and 14.6 (IQR 5.1-42.4) mm, respectively (p < 0.05 for all pairwise comparisons). The average image noise in EID-D50, PCD-D50, and PCD-D60 was 60.4 (± 3.5), 56.0 (± 4.2), and 113.6 (± 8.5) HU, respectively (p < 0.01 for all pairwise comparisons).

CONCLUSION

The PCT-CT system quantified coronary calcifications more accurately than EID-CT, and a sharp PCD-CT kernel further improved the accuracy. The PCD-CT images exhibited lower noise than the EID-CT images.

KEY POINTS

• High spatial resolution offered by PCD-CT reduces partial volume averaging and consequently leads to better morphological depiction of coronary calcifications. • Improved quantitative accuracy for coronary calcification volumes could be achieved using high-resolution PCD-CT compared to conventional EID-CT. • PCD-CT images exhibit lower image noise than conventional EID-CT at matched radiation dose and reconstruction kernel.

摘要

目的

比较光子计数探测器(PCD)-CT 和能量积分探测器(EID)-CT 对尸检标本冠状动脉钙定量的准确性。

方法

使用 PCD 和 EID 子系统对离体冠状动脉标本进行 PCD-CT 扫描。EID-CT 和 PCD-CT 的扫描和重建参数相匹配:120 kV、9.3-9.4 mGy CTDI 和定量核(D50)。PCD-CT 图像也使用更清晰的核(D60)重建。使用微 CT 扫描同一标本作为钙化体积的参考标准。使用半最大值阈值技术对钙化进行分割。使用 Friedman 检验和事后两两 Wilcoxon 符号秩检验(Bonferroni 校正)分析分割的钙化体积差异。使用重复测量方差分析检验和事后两两比较(Bonferroni 校正)比较 EID-CT 和 PCD-CT 之间的图像噪声测量值。p < 0.05 被认为具有统计学意义。

结果

12/13 个钙化的体积测量结果呈相似趋势:EID-D50 > PCD-D50 > PCD-D60 > 微 CT。EID-D50、PCD-D50、PCD-D60 和微 CT 中的钙化体积中位数分别为 22.1(IQR 10.2-64.8)、21.0(IQR 9.0-56.5)、18.2(IQR 8.3-49.3)和 14.6(IQR 5.1-42.4)mm(所有两两比较均为 p < 0.05)。EID-D50、PCD-D50 和 PCD-D60 中的平均图像噪声分别为 60.4(±3.5)、56.0(±4.2)和 113.6(±8.5)HU(所有两两比较均为 p < 0.01)。

结论

与 EID-CT 相比,PCT-CT 系统更准确地量化了冠状动脉钙化,而更清晰的 PCD-CT 核进一步提高了准确性。PCD-CT 图像的噪声低于 EID-CT 图像。

要点

• PCD-CT 提供的高空间分辨率可减少部分容积平均化,从而改善冠状动脉钙化的形态描述。

• 与传统的 EID-CT 相比,使用高分辨率 PCD-CT 可实现冠状动脉钙化体积的定量准确性提高。

• 在匹配的辐射剂量和重建核下,PCD-CT 图像的图像噪声低于传统的 EID-CT。

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