首页> 美国卫生研究院文献>Brain Connectivity >Partial Correlation-Based Retinotopically Organized Resting-State Functional Connectivity Within and Between Areas of the Visual Cortex Reflects More Than Cortical Distance
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Partial Correlation-Based Retinotopically Organized Resting-State Functional Connectivity Within and Between Areas of the Visual Cortex Reflects More Than Cortical Distance

机译:在视觉皮层区域内和区域之间基于局部相关性的视网膜组织的静息状态功能连接反映了比皮层距离更多。

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摘要

Numerous studies have demonstrated functional magnetic resonance imaging (fMRI)-based resting-state functional connectivity (RSFC) between cortical areas. Recent evidence suggests that synchronous fluctuations in blood oxygenation level-dependent fMRI reflect functional organization at a scale finer than that of visual areas. In this study, we investigated whether RSFCs within and between lower visual areas are retinotopically organized and whether retinotopically organized RSFC merely reflects cortical distance. Subjects underwent retinotopic mapping and separately resting-state fMRI. Visual areas V1, V2, and V3, were subdivided into regions of interest (ROIs) according to quadrants and visual field eccentricity. Functional connectivity (FC) was computed based on Pearson's linear correlation (correlation), and Pearson's linear partial correlation (correlation between two time courses after the time courses from all other regions in the network are regressed out). Within a quadrant, within visual areas, all correlation and nearly all partial correlation FC measures showed statistical significance. Consistently in V1, V2, and to a lesser extent in V3, correlation decreased with increasing eccentricity separation. Consistent with previously reported monkey anatomical connectivity, correlation/partial correlation values between regions from adjacent areas (V1-V2 and V2-V3) were higher than those between nonadjacent areas (V1-V3). Within a quadrant, partial correlation showed consistent significance between regions from two different areas with the same or adjacent eccentricities. Pairs of ROIs with similar eccentricity showed higher correlation/partial correlation than pairs distant in eccentricity. Between dorsal and ventral quadrants, partial correlation between common and adjacent eccentricity regions within a visual area showed statistical significance; this extended to more distant eccentricity regions in V1. Within and between quadrants, correlation decreased approximately linearly with increasing distances separating the tested ROIs. Partial correlation showed a more complex dependence on cortical distance: it decreased exponentially with increasing distance within a quadrant, but was best fit by a quadratic function between quadrants. We conclude that RSFCs within and between lower visual areas are retinotopically organized. Correlation-based FC is nonselectively high across lower visual areas, even between regions that do not share direct anatomical connections. The mechanisms likely involve network effects caused by the dense anatomical connectivity within this network and projections from higher visual areas. FC based on partial correlation, which minimizes network effects, follows expectations based on direct anatomical connections in the monkey visual cortex better than correlation. Last, partial correlation-based retinotopically organized RSFC reflects more than cortical distance effects.
机译:大量研究表明,皮质区域之间基于功能磁共振成像(fMRI)的静止状态功能连接(RSFC)。最近的证据表明,血液氧合水平依赖性fMRI的同步波动以比视觉区域更细的尺度反映功能组织。在这项研究中,我们调查了视网膜下组织内部和之间的RSFC是否是视网膜组织的,以及视网膜组织的RSFC是否仅反映皮层距离。受试者进行了视网膜定位和单独的静止状态功能磁共振成像。根据象限和视野偏心率,将视觉区域V1,V2和V3细分为感兴趣区域(ROI)。函数连接性(FC)是根据Pearson的线性相关性(相关性)和Pearson的线性偏相关性(从网络中所有其他区域的时间过程中减去两个时间过程之间的相关性得出的)计算出来的。在一个象限内,在视觉区域内,所有相关性和几乎所有部分相关性FC量度均显示出统计学意义。在V1,V2中一致,在V3中程度较小,相关性随偏心距增加而降低。与先前报道的猴子解剖学连通性相一致,相邻区域(V1-V2和V2-V3)之间的相关/部分相关值高于非相邻区域(V1-V3)之间的相关/部分相关值。在一个象限内,部分相关性显示了两个具有相同或相邻偏心距的不同区域之间的一致性。偏心率相似的ROI对比偏心率远的ROI具有更高的相关性/部分相关性。在背象限和腹象限之间,视觉区域内公共偏心区域和相邻偏心区域之间的部分相关性具有统计学意义;这扩展到了V1中更远的偏心区域。在象限内和象限之间,相关性随着分离测试的ROI的距离增加而线性地降低。局部相关性显示出对皮层距离的更复杂的依赖关系:它随着象限内距离的增加呈指数下降,但最适合象限之间的二次函数。我们得出的结论是,视力低下区域之内和之间的RSFC是视网膜组织的。即使在不共享直接解剖连接的区域之间,基于相关的FC在较低的视觉区域中也非选择性地较高。该机制可能涉及网络效应,该效应是由该网络内密集的解剖结构连接以及较高视觉区域的投影引起的。基于部分相关的FC(使关联效应最小化)比基于猴子的大脑皮层中直接解剖连接的预期要好于相关。最后,基于局部相关性的视网膜组织RSFC反映的远不止皮质距离效应。

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