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An improved neuroanatomical model of the default-mode network reconciles previous neuroimaging and neuropathological findings

机译:默认模式网络的改进的神经解剖模型调和以前的神经影像学和神经病理学发现

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摘要

The brain is constituted of multiple networks of functionally correlated brain areas, out of which the default-mode network (DMN) is the largest. Most existing research into the DMN has taken a corticocentric approach. Despite its resemblance with the unitary model of the limbic system, the contribution of subcortical structures to the DMN may be underappreciated. Here, we propose a more comprehensive neuroanatomical model of the DMN including subcortical structures such as the basal forebrain, cholinergic nuclei, anterior and mediodorsal thalamic nuclei. Additionally, tractography of diffusion-weighted imaging was employed to explore the structural connectivity, which revealed that the thalamus and basal forebrain are of central importance for the functioning of the DMN. The contribution of these neurochemically diverse brain nuclei reconciles previous neuroimaging with neuropathological findings in diseased brains and offers the potential for identifying a conserved homologue of the DMN in other mammalian species.
机译:大脑由功能相关的大脑区域的多个网络组成,其中默认模式网络(DMN)是最大的网络。对DMN的大多数现有研究都采取了以皮质为中心的方法。尽管它与边缘系统的统一模型相似,但皮质下结构对DMN的贡献可能未被充分认识。在这里,我们提出了DMN的更全面的神经解剖模型,包括皮层下结构,如基底前脑,胆碱能核,前,中部丘脑丘脑核。此外,采用扩散加权成像的束线照相术来探索结构的连通性,这表明丘脑和基底前脑对于DMN的功能至关重要。这些神经化学多样性的大脑核的贡献使患病大脑中先前的神经影像与神经病理学发现相一致,并为鉴定其他哺乳动物物种中DMN的保守同源物提供了潜力。

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