Dual-source photon-counting CT: impact of residual cross-scatter on quantitative spectral results.

Leening P Liu, Edgar Salazar, Pooyan Sahbaee, Harold I Litt, Peter B Noël
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Abstract

Dual-source photon-counting CT combines the high temporal resolution and high pitch of dual-source CT with the material quantification capabilities of photon-counting CT. It, however, results in cross-scatter that increases in severity with increased patient size and collimation. This cross-scatter must be corrected to ensure the removal of scatter artifacts and improve quantitative accuracy. To evaluate residual cross-scatter of a first-generation dual-source photon-counting CT and the effect of phantom size, collimation, and radiation dose, a phantom was scanned in single- and dual-source modes with and without its extension ring at three collimations and three radiation doses. Virtual monoenergetic images (VMI) at 50 keV, VMI 150 keV, and iodine density maps were reconstructed to determine variation between acquisition parameters in single- and dual-source modes. Additionally, differences relative to single-source acquisitions and to single-source and small collimation acquisitions were calculated to reflect residual cross-scatter with and without matched collimation. At VMI 50 keV, inserts exhibited accuracy and similar variation between single- and dual-source modes, averaging 5.4 ± 2.6 and 6.2 ± 2.5 HU, respectively, across phantom size, collimation, and radiation dose. Differences relative to single-source measured 5.1 ± 8.5 and 0.4 ± 4.2 HU while differences relative to single-source and small collimation acquisitions were 6.4 ± 10.8 HU and -0.5 ± 3.9 HU for VMI 50 and 150 keV, respectively. This minimal residual cross-scatter increases confidence in the quantitative accuracy of spectral results necessary for clinical applications of dual-source photon-counting CT with motion, such as cardiac imaging.

双源光子计数 CT:残余交叉散射对定量光谱结果的影响。
双源光子计数 CT 将双源 CT 的高时间分辨率和高螺距与光子计数 CT 的材料定量功能相结合。但它会产生交叉散射,随着患者体型和准直度的增加,交叉散射的严重程度也会增加。必须对这种交叉散射进行校正,以确保消除散射伪影并提高定量准确性。为了评估第一代双源光子计数 CT 的残余交叉散射以及模型尺寸、准直度和辐射剂量的影响,我们在三种准直度和三种辐射剂量下,分别使用单源和双源模式扫描了一个模型,并分别使用和不使用其扩展环。重建了 50 千伏的虚拟单能图像(VMI)、150 千伏的虚拟单能图像和碘密度图,以确定单源和双源模式下采集参数之间的差异。此外,还计算了相对于单源采集和单源与小准直采集的差异,以反映有匹配准直和无匹配准直时的残余交叉散射。在 VMI 50 keV 时,单源和双源模式的插入显示出准确性和相似的变化,在不同的模型尺寸、准直和辐射剂量下,平均值分别为 5.4 ± 2.6 HU 和 6.2 ± 2.5 HU。对于 VMI 50 和 150 keV,相对于单源的差异分别为 5.1 ± 8.5 和 0.4 ± 4.2 HU,而相对于单源和小准直采集的差异分别为 6.4 ± 10.8 HU 和 -0.5 ± 3.9 HU。这种极小的残余交叉散射增强了对光谱结果定量准确性的信心,而这正是双源光子计数运动 CT 临床应用(如心脏成像)所必需的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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