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Reconfiguration of Intrinsic Functional Coupling Patterns Following Circumscribed Network Lesions

机译:外接网络病变之后的内在功能耦合图案的重新配置

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Communication between cortical regions is necessary for optimal cognitive processing. Functional relationships between cortical regions can be inferred through measurements of temporal synchrony in spontaneous activity patterns. These relationships can be further elaborated by surveying effects of cortical lesions upon inter-regional connectivity. Lesions to cortical hubs and heteromodal association regions are expected to induce distributed connectivity changes and higher-order cognitive deficits, yet their functional consequences remain relatively unexplored. Here, we used resting-state fMRI to investigate intrinsic functional connectivity (FC) and graph theoretical metrics in 12 patients with circumscribed lesions of the medial prefrontal cortex (mPFC) portion of the Default Network (DN), and compared these metrics with those observed in healthy matched comparison participants and a sample of 1139 healthy individuals. Despite significant mPFC destruction, patients did not demonstrate weakened intrinsic FC among undamaged DN nodes. Instead, network-specific changes were manifested as weaker negative correlations between the DN and attentional and somatomotor networks. These findings conflict with the DN being a homogenous system functionally anchored at mPFC. Rather, they implicate a role for mPFC in mediating cross-network functional interactions. More broadly, our data suggest that lesions to association cortical hubs might induce clinical deficits by disrupting communication between interacting large-scale systems.
机译:皮质区域之间的通信是最佳认知处理所必需的。皮质区域之间的功能关系可以通过在自发活动模式中测量时间同步的测量来推断。通过测量皮质病变对区域间连通性的影响,可以进一步阐述这些关系。预计皮质集线器和异常关联区域的病变将诱导分布式连通性变化和高阶认知缺陷,但它们的功能后果仍然相对未开发。在这里,我们使用休息状态FMRI来调查默认网络(DN)的内侧前额平皮层(MPFC)部分的12例患者内部功能连接(FC)和图形理论度量,并将这些指标与观察到的那些指标进行了比较在健康匹配的比较参与者和1139名健康个人的样本中。尽管存在显着的MPFC破坏,但患者在未损坏的DN节点中没有展示弱化的内在FC。相反,网络特定的变化表现为DN和注意力和SOMatomotor网络之间的较弱负相关。这些调查结果与DN发生冲突,是在MPFC中功能锚定的同质系统。相反,它们对MPFC致力于调解跨网络功能交互来致力致力于致力。更广泛地,我们的数据表明,通过扰乱互动大规模系统之间的沟通,病变能够诱导临床缺陷。

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