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The 4D Hyperspherical Diffusion Wavelet: A New Method for the Detection of Localized Anatomical Variation

机译:4D超球面扩散小波:一种检测局部解剖变化的新方法

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Recently, the HyperSPHARM algorithm was proposed to parameterize multiple disjoint objects in a holistic manner using the 4D hyperspherical harmonics. The HyperSPHARM coefficients are global; they cannot be used to directly infer localized variations in signal. In this paper, we present a unified wavelet framework that links HyperSPHARM to the diffusion wavelet transform. Specifically, we will show that the HyperSPHARM basis forms a subset of a wavelet-based multi-scale representation of surface-based signals. This wavelet, termed the hyperspherical diffusion wavelet, is a consequence of the equivalence of isotropic heat diffusion smoothing and the diffusion wavelet transform on the hypersphere. Our framework allows for the statistical inference of highly localized anatomical changes, which we demonstrate in the first-ever developmental study on the hyoid bone investigating gender and age effects. We also show that the hyperspherical wavelet successfully picks up group-wise differences that are barely detectable using SPHARM.
机译:最近,提出了HyperSPHARM算法,该算法使用4D超球面谐波以整体方式对多个不相交的对象进行参数化。 HyperSPHARM系数是全局系数;它们不能用于直接推断信号的局部变化。在本文中,我们提出了一个统一的小波框架,该框架将HyperSPHARM链接到扩散小波变换。具体来说,我们将显示HyperSPHARM基础构成基于表面的信号的基于小波的多尺度表示的子集。该小波称为超球形扩散小波,是各向同性热扩散平滑和超小球上的扩散小波变换等效的结果。我们的框架允许对高度局部的解剖变化进行统计推断,这在有关舌骨和性别影响的首次发育研究中得到了证明。我们还表明,超球形小波成功地拾取了使用SPHARM几乎无法检测到的逐组差异。

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