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Non-rigid point cloud registration based lung motion estimation using tangent-plane distance

机译:基于切平面距离的基于非刚性点云配准的肺运动估计

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摘要

Accurate estimation of motion field in respiration-correlated 4DCT images, is a precondition for the analysis of patient-specific breathing dynamics and subsequent image-supported treatment planning. However, the lung motion estimation often suffers from the sliding motion. In this paper, a novel lung motion method based on the non-rigid registration of point clouds is proposed, and the tangent-plane distance is used to represent the distance term, which describes the difference between two point clouds. Local affine transformation model is used to express the non-rigid deformation of the lung motion. The final objective function is expressed in the Frobenius norm formation, and matrix optimization scheme is carried out to find out the optimal transformation parameters that minimize the objective function. A key advantage of our proposed method is that it alleviates the requirement that the source point cloud and the reference point cloud should be in one-to-one corresponding relationship, and the requirement is difficult to be satisfied in practical application. Furthermore, the proposed method takes the sliding motion of the lung into consideration and improves the registration accuracy by reducing the constraint of the motion along the tangent direction. Non-rigid registration experiments are carried out to validate the performance of the proposed method using popi-model data. The results demonstrate that the proposed method outperforms the traditional method with about 20% accuracy increase.
机译:准确估计与呼吸相关的4DCT图像中的运动场,是分析特定于患者的呼吸动力学和后续图像支持的治疗计划的前提。然而,肺运动估计经常遭受滑动运动的困扰。本文提出了一种基于点云非刚性配准的新型肺运动方法,并以切线平面距离表示距离项,描述了两个点云之间的差异。局部仿射变换模型用于表达肺运动的非刚性变形。最终目标函数以Frobenius范式表示,并执行矩阵优化方案以找出使目标函数最小化的最佳转换参数。我们提出的方法的一个主要优点是减轻了源点云和参考点云应该一对一对应关系的要求,并且在实际应用中难以满足。此外,所提出的方法考虑了肺部的滑动运动,并通过减少沿切线方向的运动约束来提高配准精度。使用popi模型数据进行非刚性配准实验以验证所提出方法的性能。结果表明,该方法优于传统方法,精度提高了约20%。

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