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A New Metric to Measure Shape Differences in fMRI Activity

机译:一种测量fMRI活动中形状差异的新指标

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We present a novel shape metric for quantification of shape differences between the spatial components obtained from independent component analysis (ICA) of group functional magnetic resonance imaging (fMRI) data. This metric is utilized to measure the difference in shapes of the activation regions obtained from different subjects within a group (healthy controls or patients). The parameters comprising the metric are computed for each pixel on the outermost contour (edge) of an activation region for each slice. These parameters are in the form of (r, θ) pairs that may be interpreted as the length and orientation of a vector originating from the centroid of the activation region to the pixel belonging to the boundary contour. Using this information we extract three features that quantify the shape difference between the two shapes under observation. The reference and observation shapes may be selected in two ways: (a) activation maps from two different subjects or (b) mean activation map compared against subject-wise activations, as obtained from group ICA. We present different methods to visualize the shape differences, thus providing a tool to observe the spatial differences within a group or across groups. In addition to the above results, we also address a few special cases where two or more activation contours are present in a single slice and present potential solutions for accounting for these regions as special measures. Our results show that this metric has utility in creating a better understanding of the variability in brain activity among different groups of subjects performing the same task.
机译:我们提出了一种新颖的形状度量,用于量化从组功能磁共振成像(fMRI)数据的独立成分分析(ICA)获得的空间成分之间的形状差异。利用该度量来测量从一组(健康对照或患者)中的不同受试者获得的激活区域的形状差异。对于每个切片,为激活区域的最外轮廓(边缘)上的每个像素计算包含度量的参数。这些参数为(r,θ)对的形式,其可以解释为从激活区域的质心到属于边界轮廓的像素的矢量的长度和方向。使用此信息,我们提取了三个特征,这些特征量化了所观察的两个形状之间的形状差异。可以以两种方式选择参考形状和观察形状:(a)来自两个不同受试者的激活图,或(b)与从ICA组获得的受试者激活相比的平均激活图。我们提出了不同的方法来可视化形状差异,从而提供了一种工具来观察组内或组间的空间差异。除上述结果外,我们还解决了一些特殊情况,即在单个切片中存在两个或多个激活轮廓,并提出了将这些区域作为特殊措施的潜在解决方案。我们的研究结果表明,该指标可用于更好地理解执行同一任务的不同受试者组之间的大脑活动差异。

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