Agreement of wall shear stress distribution between two core laboratories using three-dimensional quantitative coronary angiography.

IF 1.5 4区 医学 Q3 CARDIAC & CARDIOVASCULAR SYSTEMS
Shigetaka Kageyama, Vincenzo Tufaro, Ryo Torii, Grigoris V Karamasis, Roby D Rakhit, Eric K W Poon, Jean-Paul Aben, Andreas Baumbach, Patrick W Serruys, Yoshinobu Onuma, Christos V Bourantas
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引用次数: 0

Abstract

Wall shear stress (WSS) estimated in models reconstructed from intravascular imaging and 3-dimensional-quantitative coronary angiography (3D-QCA) data provides important prognostic information and enables identification of high-risk lesions. However, these analyses are time-consuming and require expertise, limiting WSS adoption in clinical practice. Recently, a novel software has been developed for real-time computation of time-averaged WSS (TAWSS) and multidirectional WSS distribution. This study aims to examine its inter-corelab reproducibility. Sixty lesions (20 coronary bifurcations) with a borderline negative fractional flow reserve were processed using the CAAS Workstation WSS prototype to estimate WSS and multi-directional WSS values. Analysis was performed by two corelabs and their estimations for the WSS in 3 mm segments across each reconstructed vessel was extracted and compared. In total 700 segments (256 located in bifurcated vessels) were included in the analysis. A high intra-class correlation was noted for all the 3D-QCA and TAWSS metrics between the estimations of the two corelabs irrespective of the presence (range: 0.90-0.92) or absence (range: 0.89-0.90) of a coronary bifurcation, while the ICC was good-moderate for the multidirectional WSS (range: 0.72-0.86). Lesion level analysis demonstrated a high agreement of the two corelabls for detecting lesions exposed to an unfavourable haemodynamic environment (WSS > 8.24 Pa, κ = 0.77) that had a high-risk morphology (area stenosis > 61.3%, κ = 0.71) and were prone to progress and cause events. The CAAS Workstation WSS enables reproducible 3D-QCA reconstruction and computation of WSS metrics. Further research is needed to explore its value in detecting high-risk lesions.

Abstract Image

Abstract Image

Abstract Image

两家核心实验室使用三维定量冠状动脉造影对血管壁剪切应力分布的一致性。
根据血管内成像和三维定量冠状动脉造影(3D-QCA)数据重建的模型中估算的壁剪应力(WSS)可提供重要的预后信息,并能识别高风险病变。然而,这些分析耗时且需要专业知识,限制了 WSS 在临床实践中的应用。最近,一种新型软件被开发出来,用于实时计算时间平均 WSS(TAWSS)和多方向 WSS 分布。本研究的目的是检验该软件在实验室间的可重复性。使用 CAAS 工作站 WSS 原型处理了 60 个边缘负分数血流储备的病变(20 个冠状动脉分叉),以估算 WSS 和多方向 WSS 值。由两个核心实验室进行分析,并提取和比较他们对每条重建血管 3 毫米节段的 WSS 估计值。共有 700 个片段(256 个位于分叉血管中)被纳入分析。无论是否存在冠状动脉分叉(范围:0.90-0.92),两个核心实验室估算的所有 3D-QCA 和 TAWSS 指标均具有较高的类内相关性,而多方向 WSS 的 ICC 为良好-中等(范围:0.72-0.86)。病变水平分析表明,两种核心实验室在检测暴露于不利血流动力学环境(WSS > 8.24 Pa,κ = 0.77)的病变方面具有很高的一致性,这些病变具有高风险形态(狭窄面积 > 61.3%,κ = 0.71),容易恶化并引发事件。CAAS 工作站 WSS 可实现可重复的 3D-QCA 重建和 WSS 指标计算。还需要进一步的研究来探讨它在检测高风险病变方面的价值。
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来源期刊
CiteScore
4.00
自引率
9.50%
发文量
77
审稿时长
1 months
期刊介绍: The International Journal of Cardiovascular Imaging publishes technical and clinical communications (original articles, review articles and editorial comments) associated with cardiovascular diseases. The technical communications include the research, development and evaluation of novel imaging methods in the various imaging domains. These domains include magnetic resonance imaging, computed tomography, X-ray imaging, intravascular imaging, and applications in nuclear cardiology and echocardiography, and any combination of these techniques. Of particular interest are topics in medical image processing and image-guided interventions. Clinical applications of such imaging techniques include improved diagnostic approaches, treatment , prognosis and follow-up of cardiovascular patients. Topics include: multi-center or larger individual studies dealing with risk stratification and imaging utilization, applications for better characterization of cardiovascular diseases, and assessment of the efficacy of new drugs and interventional devices.
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