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The Effect of Image Enhancement on the Statistical Analysis of Functional Neuroimages: Wavelet-Based Denoising and Gaussian Smoothing

机译:图像增强对功能神经图像的统计分析的影响:基于小波的消噪和高斯平滑

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The quality of statistical analyses of functional neuroimages is studied after applying various preprocessing methods. We present wavelet-based denoising as an alternative to Gaussian smoothing, the standard denoising method in statistical parametric mapping (SPM). The wavelet-based denoising schemes are extensions of WaveLab routines, using the symmetric orthogonal cubic spline wavelet basis. In a first study, activity in a time series is simulated by superimposing a time-dependent signal on a selected region. We add noise with a known signal-to-noise ratio (SNR) and spatial correlation. After denoising, the statistical analysis, performed with SPM, is evaluated. We compare the shapes of activations detected after applying the wavelet-based methods with the shapes of activations detected after Gaussian smoothing. In a second study, the denoising schemes are applied to a real functional MRI time series, where signal and noise cannot be separated. The denoised time series are analysed with SPM, while false discovery rate (FDR) control is used to correct for multiple testing. Wavelet-based denoising, combined with FDR control, yields reliable activation maps. While Gaussian smoothing and wavelet-based methods producing smooth images work well with very low SNRs, less smoothing wavelet-based methods produce better results for time series of moderate quality.
机译:应用各种预处理方法后,研究功能神经图像的统计分析的质量。我们提出基于小波的去噪作为高斯平滑的替代方法,高斯平滑是统计参数映射(SPM)中的标准去噪方法。基于小波的去噪方案是WaveLab例程的扩展,使用了对称正交三次样条小波基。在第一个研究中,通过在所选区域上叠加时间相关信号来模拟时间序列中的活动。我们添加具有已知信噪比(SNR)和空间相关性的噪声。去噪后,评估使用SPM执行的统计分析。我们将应用基于小波的方法后检测到的激活形状与经过高斯平滑处理后检测到的激活形状进行比较。在第二项研究中,将去噪方案应用于无法分离信号和噪声的真实功能MRI时间序列。用SPM分析去噪的时间序列,同时使用错误发现率(FDR)控制来校正多次测试。基于小波的降噪与FDR控制相结合,可生成可靠的激活图。尽管产生平滑图像的高斯平滑和基于小波的方法在信噪比非常低的情况下效果很好,但是基于平滑小波的方法在中等质量的时间序列上会产生更好的结果。

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