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Detection of point landmarks in 3D medical images via phase congruency model

机译:通过相位一致性模型检测3D医学图像中的点界标

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This paper presents a novel technique for detection of point landmarks in volumetric medical images based on a three-dimensional (3D) Phase Congruency (PC) model. A bank of 3D log-Gabor filters is specially designed in the frequency domain and used to compute 3D energy maps, which are further combined to form the phase congruency measure. The PC measure is invariant to intensity variations and contrast resolution and provides a good indication of feature significance in an image. To detect significant 3D point landmarks, eigen-analysis of a 3×3 matrix of second-order PC moments, computed for each point in the image, is performed followed by local maxima detection. Two different application scenarios in radiation therapy planning of the head and neck anatomy are used to illustrate the feasibility and usefulness of the proposed method.
机译:本文提出了一种基于三维(3D)相一致(PC)模型的体积医学图像中的点界标检测新技术。在频域中专门设计了一组3D log-Gabor滤波器,用于计算3D能量图,将其进一步组合以形成相位一致性度量。 PC测量不随强度变化和对比度分辨率而变化,并很好地表明了图像中特征的重要性。为了检测重要的3D点地标,对图像中的每个点计算的二阶PC矩的3×3矩阵进行特征分析,然后进行局部最大值检测。在头颈部解剖学放射治疗计划中的两种不同的应用场景被用来说明所提出的方法的可行性和实用性。

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