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Fast Rigid Registration of Vascular Structures in IVUS Sequences

机译:IVUS序列中血管结构的快速刚性配准

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摘要

Intravascular ultrasound (IVUS) technology permits visualization of high-resolution images of internal vascular structures. IVUS is a unique image-guiding tool to display longitudinal view of the vessels, and estimate the length and size of vascular structures with the goal of accurate diagnosis. Unfortunately, due to pulsatile contraction and expansion of the heart, the captured images are affected by different motion artifacts that make visual inspection difficult. In this paper, we propose an efficient algorithm that aligns vascular structures and strongly reduces the saw-shaped oscillation, simplifying the inspection of longitudinal cuts; it reduces the motion artifacts caused by the displacement of the catheter in the short-axis plane and the catheter rotation due to vessel tortuosity. The algorithm prototype aligns $hbox{3.16}$ frames/s and clearly outperforms state-of-the-art methods with similar computational cost. The speed of the algorithm is crucial since it allows to inspect the corrected sequence during patient intervention. Moreover, we improved an indirect methodology for IVUS rigid registration algorithm evaluation.
机译:血管内超声(IVUS)技术允许可视化内部血管结构的高分辨率图像。 IVUS是一种独特的图像引导工具,可显示血管的纵向视图,并估计血管结构的长度和大小,以达到准确诊断的目的。不幸的是,由于心脏的搏动性收缩和扩张,捕获的图像会受到不同的运动伪影的影响,从而使目视检查变得困难。在本文中,我们提出了一种有效的算法,该算法可对齐血管结构并大大减少锯齿形振荡,从而简化了对纵向切口的检查。它减少了由于导管在短轴平面上的位移以及导管由于曲折引起的旋转而引起的运动伪影。该算法原型以$ hbox {3.16} $帧/ s的速度对齐,并且以相似的计算成本明显胜过最新方法。该算法的速度至关重要,因为它允许在患者干预期间检查校正后的序列。此外,我们改进了IVUS刚性配准算法评估的间接方法。

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