...
首页> 外文期刊>Journal of digital imaging: the official journal of the Society for Computer Applications in Radiology >Spatiotemporal Free-Form Registration Method Assisted by a Minimum Spanning Tree During Discontinuous Transformations
【24h】

Spatiotemporal Free-Form Registration Method Assisted by a Minimum Spanning Tree During Discontinuous Transformations

机译:时空自由形式注册方法由不连续变换期间的最小生成树辅助

获取原文
获取原文并翻译 | 示例

摘要

The sliding motion along the boundaries of discontinuous regions has been actively studied in B-spline free-form deformation framework. This study focusses on the sliding motion for a velocity field-based 3D+t registration. The discontinuity of the tangent direction guides the deformation of the object region, and a separate control of two regions provides a better registration accuracy. The sliding motion under the velocity field-based transformation is conducted under the alpha-Renyi entropy estimator using a minimum spanning tree (MST) topology. Moreover, a new topology changing method of the MST is proposed. The topology change is performed as follows: inserting random noise, constructing the MST, and removing random noise while preserving a local connection consistency of the MST. This random noise process (RNP) prevents the alpha-Renyi entropy-based registration from degrading in sliding motion, because the RNP creates a small disturbance around special locations. Experiments were performed using two publicly available datasets: the DIR-Lab dataset, which consists of 4D pulmonary computed tomography (CT) images, and a benchmarking framework dataset for cardiac 3D ultrasound. For the 4D pulmonary CT images, RNP produced a significantly improved result for the original MST with sliding motion (p<0.05). For the cardiac 3D ultrasound dataset, only a discontinuity-based registration indicated activity of the RNP. In contrast, the single MST without sliding motion did not show any improvement. These experiments proved the effectiveness of the RNP for sliding motion.
机译:在B样条自由变形框架中,沿不连续区域边界的滑动运动已被积极研究。本文主要研究基于速度场的3D+t配准中的滑动运动。切线方向的不连续性引导对象区域的变形,两个区域的单独控制提供了更好的配准精度。基于速度场变换的滑动运动在使用最小生成树(MST)拓扑的alpha-Renyi熵估计器下进行。此外,还提出了一种新的MST拓扑变换方法。拓扑结构的改变如下:插入随机噪声,构造MST,去除随机噪声,同时保持MST的局部连接一致性。这种随机噪声过程(RNP)可以防止基于alpha-Renyi熵的配准在滑动运动中退化,因为RNP会在特定位置周围产生小扰动。实验使用两个公开的数据集进行:DIR实验室数据集(由4D肺部计算机断层扫描(CT)图像组成)和心脏3D超声基准框架数据集。对于4D肺部CT图像,RNP对滑动运动的原始MST产生了显著改善(p<0.05)。对于心脏3D超声数据集,只有基于不连续性的注册表明RNP的活动。相比之下,没有滑动运动的单个MST没有显示出任何改善。这些实验证明了RNP对滑动运动的有效性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号