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Novel gradient vector flow-based balloon force for active contours

机译:基于梯度矢量流的主动轮廓气球力

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摘要

Active contours, as a technique for boundary extraction, have been successfully used in image processing and computer vision. One of the knotty problems of active contours is to conform to the object boundary with complex shape, which could bring heavy manual work at the initialization procedure. The gradient vector flow (GVF) field has been one of the most popular external forces that can increase the capture range of active contours and bidirectionally evolve the active contours toward the object boundary. However, it has a poor performance when dealing with some complex shapes, such as semi-closed concave, screwy concave, hooked concave, as well as the others presented in our experiments. We propose a novel GVF-based balloon force, which can efficiently assist the GVF field in driving active contours toward the complex object shapes. This additional force is used only when the active contours are prevented from evolving toward the object boundary by the saddle and/or stationary points in the GVF field. Therefore, it can maintain the bidirectional evolution property of the GVF and meanwhile take advantage of the power of the balloon force in segmenting complex shapes. Various experimental results on image segmentation are presented to show the good performance of the proposed active contour model that uses the GVF field and the proposed balloon force together.
机译:活动轮廓作为一种边界提取技术,已成功地用于图像处理和计算机视觉中。活动轮廓的棘手问题之一是使物体边界与形状复杂一致,这可能在初始化过程中带来繁重的人工工作。梯度矢量流(GVF)场已成为最流行的外力之一,可以增加活动轮廓的捕获范围并向对象边界双向扩展活动轮廓。但是,在处理某些复杂形状(例如半封闭凹形,螺旋形凹形,钩形凹形以及我们实验中介绍的其他形状)时,其性能较差。我们提出了一种新颖的基于GVF的气球力,它可以有效地协助GVF场将活动轮廓驱动到复杂的物体形状。仅当通过GVF字段中的鞍点和/或固定点阻止活动轮廓朝对象边界演变时,才使用此附加力。因此,它可以保持GVF的双向演化特性,同时在分割复杂形状时利用气球力的力量。提出了关于图像分割的各种实验结果,以显示使用GVF场和气球力共同提出的主动轮廓模型的良好性能。

著录项

  • 来源
    《Journal of electronic imaging》 |2009年第2期|71-78|共8页
  • 作者单位

    Sun Yat-sen University School of Information Science and Technology Guangzhou 510006, China;

    City University of New York College of Staten Island Department of Computer Science Staten Island, NY 10314;

    Harbin Institute of Technology Space Control and Inertial Technology Research Center Harbin 150001, China;

    Harbin Institute of Technology Space Control and Inertial Technology Research Center Harbin 150001, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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