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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >A Two-Dimensional CVIB Imaging System with a Snake-Based Tracking Algorithm
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A Two-Dimensional CVIB Imaging System with a Snake-Based Tracking Algorithm

机译:具有基于蛇的跟踪算法的二维CVIB成像系统

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Quantitative ultrasound tissue characterization based on integrated backscatter (IB) has shown great potential in detecting myocardial ischemia. The magnitude of the cyclic variation in IB (CVIB) has recently been considered as one of the most promising parameters in assessing regional myocardial contractile performance. Our laboratory previously developed a novel ultrasonic fusion imaging method based on the CVIB. However, the major problem for clinical applications of this technique and other existing analytical methods based on IB is that the myocardial tissue can''t be traced effectively without the cardiologist''s intervention. In order to solve this problem, this paper presents a snake-based tracking algorithm to trace myocardial tissue automatically. A mathematical method is also introduced to extend the application of the snake model for detecting non-closed contours. The system developed in our previous research was redesigned to synchronize the radio frequency signal, the electrocardiographic signal, and the video signal, which allows verification of the system. Our results suggest that the system using the auto-tracking method increases the accuracy of detecting myocardial ischemia.
机译:基于积分背向散射(IB)的定量超声组织表征已显示出检测心肌缺血的巨大潜力。 IB(CVIB)周期性变化的幅度最近被认为是评估区域心肌收缩表现的最有希望的参数之一。我们的实验室以前基于CVIB开发了一种新颖的超声融合成像方法。然而,该技术和其他现有的基于IB的分析方法在临床上的主要问题是,在没有心脏病专家干预的情况下,无法有效地追踪心肌组织。为了解决这个问题,本文提出了一种基于蛇的跟踪算法来自动跟踪心肌组织。还引入了一种数学方法来扩展蛇模型在检测非闭合轮廓中的应用。我们在先前研究中开发的系统经过重新设计,可以使射频信号,心电图信号和视频信号同步,从而可以验证系统。我们的结果表明,使用自动跟踪方法的系统可提高检测心肌缺血的准确性。

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