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A quasi-local method for instantaneous frequency estimation with application to structural magnetic resonance images

机译:一种瞬时频率估计的准局部方法及其在结构磁共振图像中的应用

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Spatially-varying signal content can be effectively modeled using amplitude modulation-frequency modulation (AM-FM) representations. The AM-FM representation allow us to extract instantaneous amplitude (IA) and instantaneous frequency (IF) components that can be used to measure non-stationary content in biomedical images and videos. This paper introduces a new method for estimating the IA and the IF based on a quasi-local method (QLM). We provide an extensive comparison of AM-FM demodulation approaches based on QLM and a quasi-eigenfunction approximation method using three different filter-banks: (i) a separable, equiripple design, (ii) a Gabor filter bank, and (iii) a directional filter bank approach based on the Contourlet transform. The results document that the use of the new QLM method with an equiripple filter bank design gave the best IF magnitude estimates for a synthetic image. The new QLM method is then applied to a multi-site schizophrenia dataset (N=307). The dataset included structure magnetic resonance images from healthy controls and patients diagnosed with schizophrenia. The IF magnitude is shown to be less sensitive to variations across sites as opposed to the standard use of SMRI images that suffered from significant dependency on the scanner configurations on different collection sites. Furthermore, the regions of interest identified through the use of the IF magnitude are in agreement with previous studies.
机译:可以使用幅度调制-频率调制(AM-FM)表示有效地模拟空间变化的信号内容。 AM-FM表示使我们能够提取瞬时振幅(IA)和瞬时频率(IF)分量,这些分量可用于测量生物医学图像和视频中的非平稳内容。本文介绍了一种基于准局部方法(QLM)估计IA和IF的新方法。我们使用三种不同的滤波器组,对基于QLM的AM-FM解调方法和准本征函数近似方法进行了广泛的比较:(i)可分离的等波纹设计,(ii)Gabor滤波器组,和(iii)基于Contourlet变换的定向滤波器组方法。结果表明,将新的QLM方法与等波纹滤波器组设计配合使用可为合成图像提供最佳的IF幅值估计。然后将新的QLM方法应用于多站点精神分裂症数据集(N = 307)。该数据集包括来自健康对照和诊断为精神分裂症的患者的结构磁共振图像。 IF幅值显示出对站点间的变化不那么敏感,这与SMRI图像的标准使用相反,后者在很大程度上依赖于不同收集站点上的扫描仪配置。此外,通过使用IF幅度确定的感兴趣区域与先前的研究一致。

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