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Task-Evoked Negative BOLD Response in the Default Mode Network Does Not Alter Its Functional Connectivity

机译:默认模式下网络中任务引起的负大胆响应不会更改其功能连接

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摘要

While functional connectivity networks are often extracted from resting-state fMRI scans, they have been shown to be active during task performance as well. However, the effect of an in-scanner task on functional connectivity networks is not completely understood. While there is evidence that task-evoked positive BOLD response can alter functional connectivity networks, particularly in the primary sensorimotor cortices, the effect of task-evoked negative BOLD response on the functional connectivity of the Default mode network (DMN) is somewhat ambiguous. In this study, we aim to investigate whether task performance, which is associated with negative BOLD response in the DMN regions, alters the time-course of functional connectivity in the same regions obtained by independent component analysis (ICA). ICA has been used to effectively extract functional connectivity networks during task performance and resting-state. We first demonstrate that performing a simple visual-motor task alters the temporal time-course of the network extracted from the primary visual cortex. Then we show that despite detecting a robust task-evoked negative BOLD response in the DMN regions, a simple visual-motor task does not alter the functional connectivity of the DMN regions. Our findings suggest that different mechanisms may underlie the relationship between task-related activation/deactivation networks and the overlapping functional connectivity networks in the human large-scale brain networks.
机译:虽然功能连接网络通常是从静止状态fMRI扫描中提取的,但事实表明它们在任务执行期间也很活跃。但是,扫描器内任务对功能连接网络的影响尚未完全了解。尽管有证据表明,任务诱发的BOLD阳性反应可以改变功能连通性网络,尤其是在初级感觉运动皮层中,但任务激发的BOLD阴性反应对默认模式网络(DMN)的功能连通性的影响尚不明确。在这项研究中,我们旨在调查与DMN区域中负的BOLD响应相关的任务执行是否会改变通过独立成分分析(ICA)获得的相同区域中功能连接的时程。 ICA已用于在任务执行和静止状态期间有效提取功能连接网络。我们首先证明执行简单的视觉运动任务会改变从主要视觉皮层提取的网络的时间时程。然后我们表明,尽管在DMN地区检测到了强大的任务诱发的负BOLD响应,但简单的视觉运动任务并不会改变DMN地区的功能连通性。我们的发现表明,不同的机制可能是与任务相关的激活/停用网络和人类大规模脑网络中重叠的功能连接网络之间的关系的基础。

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