Dillinger Daniel, Overhoff Daniel, Booz Christian, Kaatsch Hanns L, Piechotka Joel, Hagen Achim, Froelich Matthias F, Vogl Thomas J, Waldeck Stephan
Department of Vascular Surgery and Endovascular Surgery, Bundeswehr Central Hospital, Rübenacher Straße 170, 56072 Koblenz, Germany.
Department of Radiology and Neuroradiology, Bundeswehr Central Hospital, Rübenacher Straße 170, 56072 Koblenz, Germany.
Diagnostics (Basel). 2023 Mar 1;13(5):938. doi: 10.3390/diagnostics13050938.
The novel photon-counting detector (PCD) technique acquires spectral data for virtual monoenergetic imaging (VMI) in every examination. The aim of this study was the evaluation of the impact of VMI of abdominal arterial vessels on quantitative and qualitative subjective image parameters.
A total of 20 patients that underwent an arterial phase computed tomography (CT) scan of the abdomen with a novel PCD CT (Siemens NAEOTOM alpha) were analyzed regarding attenuation at different energy levels in virtual monoenergetic imaging. Contrast-to-noise ratio (CNR) and signal-to-noise ratio (SNR) were calculated and compared between the different virtual monoenergetic (VME) levels with correlation to vessel diameter. In addition, subjective image parameters (overall subjective image quality, subjective image noise and vessel contrast) were evaluated.
Our research showed decreasing attenuation levels with increasing energy levels in virtual monoenergetic imaging regardless of vessel diameter. CNR showed best overall results at 60 keV, and SNR at 70 keV with no significant difference to 60 keV ( = 0.294). Subjective image quality was rated best at 70 keV for overall image quality, vessel contrast and noise.
Our data suggest that VMI at 60-70 keV provides the best objective and subjective image quality concerning vessel contrast irrespective of vessel size.
新型光子计数探测器(PCD)技术在每次检查中均可获取用于虚拟单能量成像(VMI)的光谱数据。本研究的目的是评估腹部动脉血管的VMI对定量和定性主观图像参数的影响。
对20例使用新型PCD CT(西门子NAEOTOM alpha)进行腹部动脉期计算机断层扫描(CT)的患者,分析其在虚拟单能量成像中不同能量水平下的衰减情况。计算并比较不同虚拟单能量(VME)水平下的对比噪声比(CNR)和信噪比(SNR),并与血管直径进行相关性分析。此外,还评估了主观图像参数(整体主观图像质量、主观图像噪声和血管对比度)。
我们的研究表明,在虚拟单能量成像中,无论血管直径如何,随着能量水平的增加,衰减水平都会降低。CNR在60 keV时总体结果最佳,SNR在70 keV时最佳,与60 keV无显著差异(P = 0.294)。总体图像质量、血管对比度和噪声在70 keV时主观图像质量评分最佳。
我们的数据表明,60 - 70 keV的VMI在血管对比度方面提供了最佳的客观和主观图像质量,与血管大小无关。