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Geodesic Active Contour, Inertia And Initial Speed

机译:测地线主动轮廓,惯性和初始速度

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摘要

A new force field for geodesic active contours, called inertia, is proposed in this paper. Based on analyzing the evolution process of geodesic active contours and constructing extension velocities in level set methods, it is found that geodesic active contours can inherit their evolution velocities from the previous time step and have the tendency to keep their original evolution state through integrating inertia into them. As an useful complementarity to the force field family for geodesic active contours, inertia force is constructed on the base of gradient vector flow external force field. Experimental results reveal that, compared with gradient vector flow geodesic active contours, geodesic active contours integrated with inertia and gradient vector flow can enter into long indentions and special-shape concavities. Furthermore, they are more tolerant toward initial positions under the action of inertia and initial speeds.
机译:本文提出了一种用于测地线活动轮廓的新力场,称为惯性。通过对测地线活动轮廓线的演化过程进行分析,并通过水平集方法构造扩展速度,发现测地线活动轮廓线可以继承前一时间步长的演化速度,并具有通过将惯性整合到原点而保持其原始演化状态的趋势。他们。作为对测地线活动轮廓的力场族的有用补充,惯性力是在梯度矢量流外力场的基础上构造的。实验结果表明,与梯度矢量流测地线活动轮廓相比,结合了惯性和梯度矢量流的测地线活动轮廓可以进入长凹口和特殊形状的凹面。此外,它们在惯性和初始速度的作用下对初始位置具有更大的容忍度。

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