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Ultrasound bio-microscopic image segmentation for evaluation of zebrafish cardiac function

机译:超声生物显微图像分割技术评估斑马鱼心脏功能

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摘要

Zebrafish can fully regenerate their myocardium after ventricular resection without evidence of scars. This extraordinary regenerative ability provides an excellent model system to study the activation of the regenerative potential for human heart tissue. In addition to the morphology, it is vital to understand the cardiac function of zebrafish. To characterize adult zebrafish cardiac function, an ultrasound biomicroscope (UBM) was customized for real-time imaging of the zebrafish heart (about 1 mm in diameter) at a resolution of around 37 ??m. Moreover, we developed an image segmentation algorithm to track the cardiac boundary and measure the dynamic size of the zebrafish heart for further quantification of zebrafish cardiac function. The effectiveness and accuracy of the proposed segmentation algorithm were verified on a tissuemimicking phantom and in vivo zebrafish echocardiography. The quantitative evaluation demonstrated that the accuracy of the proposed algorithm is comparable to the manual delineation by experts.
机译:斑马鱼可以在心室切除后完全再生心肌,而没有疤痕的迹象。这种非凡的再生能力为研究人类心脏组织再生潜力的激活提供了出色的模型系统。除了形态外,了解斑马鱼的心脏功能也至关重要。为了表征成年斑马鱼的心脏功能,超声生物显微镜(UBM)被定制用于斑马鱼心脏(直径约1毫米)的实时成像,分辨率约为37微米。此外,我们开发了一种图像分割算法来跟踪心脏边界并测量斑马鱼心脏的动态大小,以进一步量化斑马鱼的心脏功能。在组织模拟体模和体内斑马鱼超声心动图上验证了所提出的分割算法的有效性和准确性。定量评估表明,所提算法的准确性与专家的人工描述相当。

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