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Intra-coronary Stent Localization in Intravascular Ultrasound Sequences, A Preliminary Study

机译:血管内超声序列中冠状动脉内支架定位,初步研究

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An intraluminal coronary stent is a metal scaffold deployed in a stenotic artery during Percutaneous Coronary Intervention (PCI). Intravascular Ultrasound (IVUS) is a catheter-based imaging technique generally used for assessing the correct placement of the stent. All the approaches proposed so far for the stent analysis only focused on the struts detection, while this paper proposes a novel approach to detect the boundaries and the position of the stent along the pullback. The pipeline of the method requires the identification of the stable frames of the sequence and the reliable detection of stent struts. Using this data, a measure of likelihood for a frame to contain a stent is computed. Then, a robust binary representation of the presence of the stent in the pullback is obtained applying an iterative and multi-scale approximation of the signal to symbols using the SAX algorithm. Results obtained comparing the automatic results versus the manual annotation of two observers on 80 IVUS in-vivo sequences shows that the method approaches the inter-observer variability scores.
机译:腔内冠状动脉支架是在经皮冠状动脉介入(PCI)期间在狭窄动脉中部署的金属支架。血管内超声(IVUS)是一种基于导管的成像技术,通常用于评估支架的正确放置。到目前为止,所提出的所有方法都仅关注支柱检测,而本文提出了一种新的方法来检测边界的边界和沿着回调的位置。该方法的管道需要识别序列的稳定框架和可靠地检测支架支柱。使用该数据,计算了帧中包含支架的似然性的量度。然后,获得使用SAX算法将信号的迭代和多尺度近似值应用于回波中的支架存在的鲁棒二进制表示。获得的结果比较自动结果与用于80个IVUS In-Vivo序列的两个观察者的手动注释表明该方法接近观察者间变异分数。

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