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Signal analysis of human brain function activation: effect of spatial registration noise in brain images

机译:人脑功能激活的信号分析:脑图像中空间配准噪声的影响

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Human brain function is frequently being studied by subtracting two brain images of the same subject, one obtained while resting and the other one while his brain is activated by either a motor task, a cognitive activity, the effects of a medication, or drug abuse. The activation signal has noise induced both by the camera and the patient, i.e. daily metabolic variability, patient positioning errors, etc. The present methodology allows the determination of faint activation signals by finding sharper error bounds in the error induced in the signal by each separate source of noise in the image, combining them later for a final bound on the noise to assess the signal's statistical significance. Using simple concepts from numerical analysis and directional statistics, we present a general methodology to analyze the effect that spatial registration errors have on each pixel's signal to noise ratio. This approach to signal analysis is valid for most imaging modalities and registration methods. Experimental results are given for 48 subjects, using Positron Emission Tomography (PET) brain images spatially registered with the Centroidal Principal Axes registration method.
机译:人们经常通过减去同一受试者的两张大脑图像来研究人的大脑功能,一个是在静止时获得的,另一个是在他的大脑因运动任务,认知活动,药物作用或药物滥用而被激活时获得的。激活信号具有由照相机和患者引起的噪声,即每日代谢变化,患者定位误差等。本方法通过在每个信号分离器中在信号引起的误差中找到更清晰的误差范围,从而确定微弱的激活信号。图像中的噪声源,稍后将它们组合在一起以最终确定噪声,以评估信号的统计意义。使用来自数值分析和方向统计的简单概念,我们提出了一种通用方法来分析空间配准误差对每个像素信噪比的影响。这种信号分析方法适用于大多数成像方式和配准方法。使用正电子主轴配准方法在空间上配准的正电子发射断层扫描(PET)脑图像给出了48位受试者的实验结果。

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