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Fast multi-scale edge-detection in medical ultrasound signals

机译:医学超声信号中的快速多尺度边缘检测

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In this article we suggest a fast multi-scale edge-detection scheme for medical ultrasound signals. The edge-detector is based on well-known properties of the continuous wavelet transform. To achieve both good localization of edges and detect only significant edges, we study the maxima-lines of the wavelet transform. One can obtain the maxima-lines between two scales by computing the wavelet transform at several intermediate scales. To reduce computational effort and time we suggest a time-scale filtering procedure which uses only few scales to connect modulus-maxima across time-scale plane. The design of this procedure is based on a study of maxima-lines corresponding to edges typical for medical ultrasound signals. This study allows us to construct an algorithm for medical ultrasound signals which meets the demand for speed, but not on expense of reliability. The edge-detection algorithm has been applied to a large class of medical ultrasound signals including tumour-, liver- and artery-images. Our results show that the proposed algorithm effectively detects major features in such signals, including edges with low contrast.
机译:在本文中,我们提出了一种用于医学超声信号的快速多尺度边缘检测方案。边缘检测器基于连续小波变换的众所周知的属性。为了实现边缘的良好定位并仅检测到显着边缘,我们研究了小波变换的最大值线。通过在几个中间尺度上计算小波变换,可以获得两个尺度之间的最大值线。为了减少计算量和时间,我们建议使用一种时标过滤程序,该程序仅使用很少的标度来连接整个时标平面上的模数最大值。该程序的设计基于对与医学超声信号典型边缘相对应的最大线的研究。这项研究使我们能够构建一种医学超声信号的算法,该算法可以满足对速度的需求,但又不会牺牲可靠性。边缘检测算法已应用于包括肿瘤,肝脏和动脉图像在内的一大类医学超声信号。我们的结果表明,所提出的算法有效地检测了此类信号的主要特征,包括低对比度的边缘。

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