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本文引用的文献

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Uncovering intrinsic modular organization of spontaneous brain activity in humans.揭示人类自发脑活动的内在模块化组织。
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Predicting human resting-state functional connectivity from structural connectivity.从结构连接性预测人类静息态功能连接性。
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Noise during rest enables the exploration of the brain's dynamic repertoire.休息时的噪音有助于探索大脑的动态功能。
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Measuring brain connectivity: diffusion tensor imaging validates resting state temporal correlations.测量脑连接性:扩散张量成像验证静息态时间相关性。
Neuroimage. 2008 Nov 15;43(3):554-61. doi: 10.1016/j.neuroimage.2008.07.063. Epub 2008 Aug 15.
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The precuneus/posterior cingulate cortex plays a pivotal role in the default mode network: Evidence from a partial correlation network analysis.楔前叶/后扣带回皮质在默认模式网络中起关键作用:来自偏相关网络分析的证据。
Neuroimage. 2008 Sep 1;42(3):1178-84. doi: 10.1016/j.neuroimage.2008.05.059. Epub 2008 Jun 12.
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Functional connectivity of human striatum: a resting state FMRI study.人类纹状体的功能连接性:一项静息态功能磁共振成像研究。
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Distinct cortical anatomy linked to subregions of the medial temporal lobe revealed by intrinsic functional connectivity.通过内在功能连接揭示的与内侧颞叶亚区域相关的独特皮质解剖结构。
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楔前叶在人类和猴子中具有内在的功能结构。

Precuneus shares intrinsic functional architecture in humans and monkeys.

机构信息

Berlin School of Mind and Brain, Humboldt Universität, 10099 Berlin, Germany.

出版信息

Proc Natl Acad Sci U S A. 2009 Nov 24;106(47):20069-74. doi: 10.1073/pnas.0905314106. Epub 2009 Nov 10.

DOI:10.1073/pnas.0905314106
PMID:19903877
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2775700/
Abstract

Evidence from macaque monkey tracing studies suggests connectivity-based subdivisions within the precuneus, offering predictions for similar subdivisions in the human. Here we present functional connectivity analyses of this region using resting-state functional MRI data collected from both humans and macaque monkeys. Three distinct patterns of functional connectivity were demonstrated within the precuneus of both species, with each subdivision suggesting a discrete functional role: (i) the anterior precuneus, functionally connected with the superior parietal cortex, paracentral lobule, and motor cortex, suggesting a sensorimotor region; (ii) the central precuneus, functionally connected to the dorsolateral prefrontal, dorsomedial prefrontal, and multimodal lateral inferior parietal cortex, suggesting a cognitive/associative region; and (iii) the posterior precuneus, displaying functional connectivity with adjacent visual cortical regions. These functional connectivity patterns were differentiated from the more ventral networks associated with the posterior cingulate, which connected with limbic structures such as the medial temporal cortex, dorsal and ventromedial prefrontal regions, posterior lateral inferior parietal regions, and the lateral temporal cortex. Our findings are consistent with predictions from anatomical tracer studies in the monkey, and provide support that resting-state functional connectivity (RSFC) may in part reflect underlying anatomy. These subdivisions within the precuneus suggest that neuroimaging studies will benefit from treating this region as anatomically (and thus functionally) heterogeneous. Furthermore, the consistency between functional connectivity networks in monkeys and humans provides support for RSFC as a viable tool for addressing cross-species comparisons of functional neuroanatomy.

摘要

猴 tracing 研究的证据表明,在楔前叶内存在基于连接的细分,为人类中类似的细分提供了预测。在这里,我们使用来自人类和猕猴的静息态功能磁共振成像 (rs-fMRI) 数据,对该区域的功能连接进行了分析。在这两个物种的楔前叶中,都显示出了三种不同的功能连接模式,每个细分都暗示了一个离散的功能作用:(i)前楔前叶,与顶上回、旁中央小叶和运动皮层功能连接,提示其为感觉运动区域;(ii)中央楔前叶,与背外侧前额叶、背内侧前额叶和多模态外侧下顶叶皮层功能连接,提示其为认知/联想区域;(iii)后楔前叶,与相邻的视觉皮层区域显示功能连接。这些功能连接模式与与后扣带回相关的更腹侧网络区分开来,后者与内侧颞叶、背侧和腹内侧前额叶区域、后外侧下顶叶区域以及外侧颞叶等边缘结构相连。我们的发现与猴 tracer 研究的预测一致,支持静息态功能连接 (rsfc) 可能部分反映了潜在的解剖结构。楔前叶内的这些细分表明,神经影像学研究将受益于将该区域视为解剖学(因此也是功能学)上的异质区域。猴和人类的功能连接网络之间的一致性为 rsfc 作为一种可行的工具,支持在功能神经解剖学的跨物种比较中提供了支持。