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Variability of fMRI‐response patterns at different spatial observation scales

机译:不同空间观察尺度下fMRI反应模式的变异性

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摘要

Functional organization units of the cerebral cortex exist over a wide range of spatial scales, from local circuits to entire cortical areas. In the last decades, scale‐space representations of neuroimaging data suited to probe the multi‐scale nature of cortical functional organization have been introduced and methodologically elaborated. For this purpose, responses are statistically detected over a range of spatial scales using a family of Gaussian filters, with small filters being related to fine and large filters—to coarse spatial scales. The goal of the present study was to investigate the degree of variability of fMRI‐response patterns over a broad range of observation scales. To this aim, the same fMRI data set obtained from 18 subjects during a visuomotor task was analyzed with a range of filters from 4‐ to 16‐mm full width at half‐maximum (FWHM). We found substantial observation‐scale‐related variability. For example, using filter widths of 6‐ to 8‐mm FWHM, in the group‐level results, significant responses in the right secondary visual but not in the primary visual cortex were detected. However, when larger filters were used, the responses in the right primary visual cortex reached significance. Often, responses in probabilistically defined areas were significant when both small and large filters, but not intermediate filter widths were applied. This suggests that brain responses can be organized in local clusters of multiple distinct activation foci. Our findings illustrate the potential of multi‐scale fMRI analysis to reveal novel features in the spatial organization of human brain responses. Hum Brain Mapp, 2011. © 2011 Wiley‐Liss, Inc.
机译:从局部回路到整个皮层区域,大脑皮层的功能组织单位存在于广泛的空间尺度上。在过去的几十年中,引入了神经影像数据的尺度空间表示,以探测皮质功能组织的多尺度性质。为此,使用一系列高斯滤波器在一定范围的空间尺度上统计检测响应,其中小滤波器与精细和大型滤波器有关,而与粗略的空间尺度有关。本研究的目的是在广泛的观察范围内研究fMRI反应模式的变异程度。为了达到这个目的,我们分析了在运动运动过程中从18位受试者获得的相同fMRI数据集,并使用了从4到16毫米半高全宽(FWHM)范围的过滤器。我们发现了与观测规模有关的大量可变性。例如,使用6到8毫米FWHM的滤光片宽度,在组级结果中,检测到右侧次要视觉的显着响应,但未检测到主要视觉皮层的显着响应。但是,当使用较大的滤镜时,右侧初级视觉皮层的响应达到了显着水平。通常,当同时使用大小不一的过滤器时,概率定义区域中的响应很显着,但未应用中间宽度的过滤器。这表明大脑反应可以组织在多个不同激活灶的局部簇中。我们的发现说明了多尺度功能磁共振成像分析揭示人脑反应空间组织中新特征的潜力。嗡嗡的脑图,2011年。©2011 Wiley-Liss,Inc.

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