Biplane X-ray angiograms, intravascular ultrasound, and 3D visualization of coronary vessels.

K R Hoffmann, A Wahle, C Pellot-Barakat, J Sklansky, M Sonka
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引用次数: 34

Abstract

The technology for determination of the 3D vascular tree and quantitative characterization of the vessel lumen and vessel wall has become available. With this technology, cardiologists will no longer rely primarily on visual inspection of coronary angiograms but use sophisticated modeling techniques combining images from various modalities for the evaluation of coronary artery disease and the effects of treatment. Techniques have been developed which allow the calculation of the imaging geometry and the 3D position of the vessel centerlines of the vascular tree from biplane views without a calibration object, i.e., from the images themselves, removing the awkwardness of moving the patient to obtain 3D information. With the geometry and positional information, techniques for reconstructing the vessel lumen can now be applied that provide more accurate estimates of the area and shape of the vessel lumen. In conjunction with these developments, techniques have been developed for combining information from intravascular ultrasound images with the information obtained from angiography. The combination of these technologies will yield a more comprehensive characterization and understanding of coronary artery disease and should lead to improved and perhaps less invasive patient care.

双翼x线血管造影、血管内超声和冠状血管三维可视化。
三维血管树的确定和血管管腔和血管壁的定量表征技术已经成为可能。有了这项技术,心脏病专家将不再主要依靠冠状动脉造影的视觉检查,而是使用复杂的建模技术,结合各种形式的图像来评估冠状动脉疾病和治疗效果。已经开发出的技术允许在没有校准对象的情况下从双翼视图(即从图像本身)计算成像几何形状和血管树的血管中心线的3D位置,从而消除了移动患者以获得3D信息的尴尬。有了几何和位置信息,现在可以应用重建血管管腔的技术,对血管管腔的面积和形状提供更准确的估计。与这些发展相结合,已经开发了将血管内超声图像信息与血管造影信息相结合的技术。这些技术的结合将产生更全面的表征和对冠状动脉疾病的理解,并将导致改善和可能更少的侵入性患者护理。
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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