最小化生理功能成本重建血管树。

Yifeng Jiang, Zhenwu Zhuang, Albert J Sinusas, Xenophon Papademetris
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引用次数: 0

摘要

从医学图像中重建完整的血管树具有许多重要的应用。尽管血管检测已经得到了广泛的研究,但关于如何将结果联系起来重建完整树的工作却很少。在本文中,我们提出了一个新的血管自动连接理论框架,其中自动化是通过利用血管树生理特性的约束来实现的。特别地,推导了整个血管树的生理功能代价,并开发了一种有效的最小化算法。该方法具有通用性,可适用于不同的血管检测/分割结果,如本文采用的经典刚性检测方法。我们证明了该方法在二维和三维数据上的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Vascular Tree Reconstruction by Minimizing A Physiological Functional Cost.

Vascular Tree Reconstruction by Minimizing A Physiological Functional Cost.

Vascular Tree Reconstruction by Minimizing A Physiological Functional Cost.

Vascular Tree Reconstruction by Minimizing A Physiological Functional Cost.

The reconstruction of complete vascular trees from medical images has many important applications. Although vessel detection has been extensively investigated, little work has been done on how connect the results to reconstruct the full trees. In this paper, we propose a novel theoretical framework for automatic vessel connection, where the automation is achieved by leveraging constraints from the physiological properties of the vascular trees. In particular, a physiological functional cost for the whole vascular tree is derived and an efficient algorithm is developed to minimize it. The method is generic and can be applied to different vessel detection/segmentation results, e.g. the classic rigid detection method as adopted in this paper. We demonstrate the effectiveness of this method on both 2D and 3D data.

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