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一种用于从双平面图像确定三维血管树中心线的系统。

A system for determination of 3D vessel tree centerlines from biplane images.

作者信息

Hoffmann K R, Sen A, Lan L, Chua K G, Esthappan J, Mazzucco M

机构信息

Toshiba Stroke Research Center, Department of Neurosurgery, SUNY at Buffalo, NY 14214-3025, USA.

出版信息

Int J Card Imaging. 2000 Oct;16(5):315-30. doi: 10.1023/a:1026528209003.

Abstract

With the increasing number and complexity of therapeutic coronary interventions, there is an increasing need for accurate quantitative measurements. These interventions and measurements may be facilitated by accurate and reproducible magnifications and orientations of the vessel structures, specifically by accurate 3D vascular tree centerlines. A number of methods have been proposed to calculate 3D vascular tree centerlines from biplane images. In general, the calculated magnifications and orientations are accurate to within approximately 1-3% and 2-5 degrees, respectively. Here, we present a complete system for determination of the 3D vessel centerlines from biplane angiograms without the use of a calibration object. Subsequent to indication of the vessel centerlines, the imaging geometry and 3D centerlines are calculated automatically and within approximately 2 min. The system was evaluated in terms of the intra- and inter-user variations of the various calculated quantities. The reproducibilities obtained with this system are comparable to or better than the accuracies and reproducibilities quoted for other proposed methods. Based on these results and those reported in earlier studies, we believe that this system will provide accurate and reproducible vascular tree centerlines from biplane images while the patient is still on the table, and thereby will facilitate interventions and associated quantitative analyses of the vasculature.

摘要

随着治疗性冠状动脉介入手术数量的增加和复杂性的提高,对精确的定量测量的需求也日益增长。这些介入手术和测量可以通过血管结构的精确且可重复的放大和定向来实现,特别是通过精确的三维血管树中心线。已经提出了许多从双平面图像计算三维血管树中心线的方法。一般来说,计算得到的放大率和定向分别精确到大约1 - 3%和2 - 5度以内。在此,我们提出了一个完整的系统,用于在不使用校准物体的情况下从双平面血管造影中确定三维血管中心线。在指示血管中心线之后,成像几何形状和三维中心线会在大约2分钟内自动计算出来。该系统根据各种计算量的用户内和用户间差异进行了评估。该系统获得的可重复性与其他提出的方法所引用的精度和可重复性相当或更好。基于这些结果以及早期研究中报告的结果,我们相信该系统将在患者仍在手术台上时从双平面图像中提供精确且可重复的血管树中心线,从而有助于血管系统的介入手术和相关定量分析。

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