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Variational B-Spline Level-Set: A Linear Filtering Approach for Fast Deformable Model Evolution

机译:可变的B样条水平集:用于快速变形模型演化的线性滤波方法

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In the field of image segmentation, most level-set-based active-contour approaches take advantage of a discrete representation of the associated implicit function. We present in this paper a different formulation where the implicit function is modeled as a continuous parametric function expressed on a B-spline basis. Starting from the active-contour energy functional, we show that this formulation allows us to compute the solution as a restriction of the variational problem on the space spanned by the B-splines. As a consequence, the minimization of the functional is directly obtained in terms of the B-spline coefficients. We also show that each step of this minimization may be expressed through a convolution operation. Because the B-spline functions are separable, this convolution may in turn be performed as a sequence of simple 1-D convolutions, which yields an efficient algorithm. As a further consequence, each step of the level-set evolution may be interpreted as a filtering operation with a B-spline kernel. Such filtering induces an intrinsic smoothing in the algorithm, which can be controlled explicitly via the degree and the scale of the chosen B-spline kernel. We illustrate the behavior of this approach on simulated as well as experimental images from various fields.
机译:在图像分割领域,大多数基于水平集的主动轮廓方法都利用了相关隐式函数的离散表示。我们在本文中提出了另一种形式,其中隐式函数被建模为以B样条表示的连续参数函数。从主动轮廓能量函数开始,我们证明了该公式使我们能够计算解,作为对B样条跨越空间上的变分问题的限制。结果,根据B样条系数直接获得函数的最小化。我们还表明,可以通过卷积运算来表示此最小化的每个步骤。由于B样条函数是可分离的,因此该卷积可以依次作为简单的一维卷积序列执行,从而产生有效的算法。作为进一步的结果,水平集演化的每个步骤都可以解释为具有B样条内核的滤波操作。这种滤波在算法中引起固有的平滑,可以通过所选B样条内核的程度和规模来明确控制该平滑。我们说明了这种方法在来自各个领域的模拟和实验图像上的行为。

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