Department of Radiology, Cardiac Imaging, University Hospital Zurich, Ramistrasse 100, NUK C 42, CH-8091 Zurich, Switzerland.
Eur Heart J Cardiovasc Imaging. 2013 Oct;14(10):969-77. doi: 10.1093/ehjci/jet013. Epub 2013 Feb 20.
The assessment of coronary stents with present-generation 64-detector row computed tomography (HDCT) scanners is limited by image noise and blooming artefacts. We evaluated the performance of adaptive statistical iterative reconstruction (ASIR) for noise reduction in coronary stent imaging with HDCT.
In 50 stents of 28 patients (mean age 64 ± 10 years) undergoing coronary CT angiography (CCTA) on an HDCT scanner the mean in-stent luminal diameter, stent length, image quality, in-stent contrast attenuation, and image noise were assessed. Studies were reconstructed using filtered back projection (FBP) and ASIR-FBP composites. ASIR resulted in reduced image noise vs. FBP (P < 0.0001). Two readers graded the CCTA stent image quality on a 4-point Likert scale and determined the proportion of interpretable stent segments. The best image quality for all clinical images was obtained with 40 and 60% ASIR with significantly larger luminal area visualization compared with FBP (+42.1 ± 5.4% with 100% ASIR vs. FBP alone; P < 0.0001) while the stent length was decreased (-4.7 ± 0.9%, <P = 0.002) and volume measurements were unaffected.
Reconstruction of CCTA from HDCT using 40 and 60% ASIR incrementally improves intra-stent luminal area, diameter visualization, and image quality compared with FBP reconstruction.
目前使用 64 排探测器 CT(HDCT)扫描仪评估冠状动脉支架受到图像噪声和blooming 伪影的限制。我们评估了自适应统计迭代重建(ASIR)在 HDCT 冠状动脉支架成像中降低噪声的性能。
在 28 例患者的 50 个支架(平均年龄 64±10 岁)中,通过 HDCT 扫描仪进行冠状动脉 CT 血管造影(CCTA),评估支架内管腔直径、支架长度、图像质量、支架内对比衰减和图像噪声。研究使用滤波反投影(FBP)和 ASIR-FBP 复合材料进行重建。与 FBP 相比,ASIR 降低了图像噪声(P<0.0001)。两位读者使用 4 分李克特量表对 CCTA 支架图像质量进行评分,并确定可解释的支架节段比例。所有临床图像的最佳图像质量均采用 40%和 60%ASIR 获得,与 FBP 相比,管腔面积可视化明显增加(100%ASIR 比单独 FBP 增加 42.1±5.4%;P<0.0001),而支架长度减少(-4.7±0.9%,P<0.002),体积测量不受影响。
与 FBP 重建相比,使用 40%和 60%ASIR 对 HDCT 的 CCTA 进行重建可逐步提高支架内管腔面积、直径可视化和图像质量。