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首页> 外文期刊>IEEE Transactions on Medical Imaging >Evaluation of three-dimensional segmentation algorithms for the identification of luminal and medial-adventitial borders in intravascular ultrasound images
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Evaluation of three-dimensional segmentation algorithms for the identification of luminal and medial-adventitial borders in intravascular ultrasound images

机译:三维分割算法在腔内超声图像识别腔内外膜边界的评估

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摘要

Intravascular ultrasound (IVUS) provides direct depiction of coronary artery anatomy, including plaque and vessel area, which is important in quantitative studies on the progression or regression of coronary artery disease. Traditionally, these studies have relied on manual evaluation, which is laborious, time consuming, and subject to large interobserver and intraobserver variability. A new technique, called active surface segmentation, alleviates these limitations and makes strides toward routine analyses. However, for three-dimensional (3-D) plaque assessment or 3-D reconstruction to become a clinical reality, methods must be developed which can analyze many images quickly. Presented is a comparison between two active surface techniques for three-dimensional segmentation of luminal and medial-adventitial borders. The force-acceleration technique and the neighborhood-search technique accurately detected both borders in vivo (r/sup 2/=0.95 and 0.99, Williams' index=0.67 and 0.65, and r/sup 2/=0.95 and 0.99, WI=0.67 and 0.70, respectively). However, the neighborhood-search technique was significantly faster and required less computation. Volume calculations for both techniques (r/sup 2/=0.99 and r/sup 2/=0.99) also agreed with a known-volume phantom. Active surface segmentation allows 3-D assessment of coronary morphology and further developments with this technology will provide clinical analysis tools.
机译:血管内超声(IVUS)可直接描绘冠状动脉的解剖结构,包括斑块和血管区域,这在定量研究冠状动脉疾病的进展或消退方面非常重要。传统上,这些研究依靠人工评估,这很费力,费时,而且观察者之间和观察者内部差异很大。一种称为主动表面分割的新技术减轻了这些限制,并朝着常规分析迈进了一大步。但是,为了使三维(3-D)斑块评估或3-D重建成为临床现实,必须开发出可以快速分析许多图像的方法。本文介绍了用于腔和内侧-外膜边界的三维分割的两种主动表面技术之间的比较。力加速技术和邻域搜索技术可以准确地检测到体内的两个边界(r / sup 2 / = 0.95和0.99,Williams指数= 0.67和0.65,r / sup 2 / = 0.95和0.99,WI = 0.67和0.70)。但是,邻域搜索技术明显更快,并且所需的计算更少。两种技术的体积计算(r / sup 2 / = 0.99和r / sup 2 / = 0.99)也与已知体积的模型相吻合。主动表面分割允许对冠状动脉形态进行3D评估,并且该技术的进一步发展将提供临床分析工具。

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