首页> 外文期刊>Physics in medicine and biology. >A cubic B-spline-based hybrid registration of lung CT images for a dynamic airway geometric model with large deformation.
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A cubic B-spline-based hybrid registration of lung CT images for a dynamic airway geometric model with large deformation.

机译:基于立方B样条的肺部CT图像的混合配准,用于动态变形的动态气道几何模型。

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The goal of this study is to develop a matching algorithm that can handle large geometric changes in x-ray computed tomography (CT)-derived lung geometry occurring during deep breath maneuvers. These geometric relationships are further utilized to build a dynamic lung airway model for computational fluid dynamics (CFD) studies of pulmonary air flow. The proposed algorithm is based on a cubic B-spline-based hybrid registration framework that incorporates anatomic landmark information with intensity patterns. A sequence of invertible B-splines is composed in a multiresolution framework to ensure local invertibility of the large deformation transformation and a physiologically meaningful similarity measure is adopted to compensate for changes in voxel intensity due to inflation. Registrations are performed using the proposed approach to match six pairs of 3D CT human lung datasets. Results show that the proposed approach has the ability to match the intensity pattern and the anatomical landmarks, and ensure local invertibility for large deformation transformations. Statistical results also show that the proposed hybrid approach yields significantly improved results as compared with approaches using either landmarks or intensity alone.
机译:这项研究的目的是开发一种匹配算法,该算法可以处理在深呼吸操作期间发生的X射线计算机断层摄影(CT)衍生的肺部几何结构中的较大几何变化。这些几何关系还被用来建立动态肺气道模型,用于肺气流的计算流体动力学(CFD)研究。所提出的算法基于基于立方B样条的混合配准框架,该框架结合了具有强度图案的解剖界标信息。在多分辨率框架中组成了一系列可逆B样条,以确保大变形变换的局部可逆性,并采用了一种具有生理意义的相似性度量来补偿由于膨胀引起的体素强度变化。使用建议的方法执行注册以匹配六对3D CT人肺数据集。结果表明,该方法具有匹配强度模式和解剖标志的能力,并能确保大变形变换的局部可逆性。统计结果还表明,与仅使用路标或强度的方法相比,所提出的混合方法可显着改善结果。

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