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The Human Brain Traverses a Common Activation-Pattern State Space Across Task and Rest

机译:人脑遍历任务和休息的共同激活模式状态空间

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摘要

Much of our lives are spent in unconstrained rest states, yet cognitive brain processes are primarily investigated using task-constrained states. It may be possible to utilize the insights gained from experimental control of task processes as reference points for investigating unconstrained rest. To facilitate comparison of rest and task functional magnetic resonance imaging data, we focused on activation amplitude patterns, commonly used for task but not rest analyses. During rest, we identified spontaneous changes in temporally extended whole-brain activation-pattern states. This revealed a hierarchical organization of rest states. The top consisted of two competing states consistent with previously identified “task-positive” and “task-negative” activation patterns. These states were composed of more specific states that repeated over time and across individuals. Contrasting with the view that rest consists of only task-negative states, task-positive states occurred 40% of the time while individuals “rested,” suggesting task-focused activity may occur during rest. Together our results suggest that brain activation dynamics form a general hierarchy across task and rest, with a small number of dominant general states reflecting basic functional modes and a variety of specific states potentially reflecting a wide variety of cognitive processes.
机译:我们的生活大部分时间都在不受约束的休息状态中度过,但是认知大脑的过程主要是通过任务受约束的状态进行调查的。可以利用从任务过程的实验控制中获得的见识作为研究无限制休息的参考点。为了便于比较静止和任务功能磁共振成像数据,我们集中于通常用于任务但未进行静止分析的激活幅度模式。在休息期间,我们确定了时间扩展的全脑激活模式状态的自发变化。这揭示了休息状态的层次结构。顶部由两个竞争状态组成,这些状态与先前确定的“任务阳性”和“任务阴性”激活模式一致。这些状态由更具体的状态组成,这些状态会随着时间的推移并在个体之间重复。与休息仅由任务否定状态构成的观点相反,当个人“休息”时,任务阳性状态发生的时间占40%,这表明在休息期间可能发生以任务为中心的活动。我们的研究结果共同表明,大脑激活动力学形成了跨任务和休息的总体层次结构,少数占主导地位的一般状态反映了基本的功能模式,而各种特定状态则潜在地反映了多种认知过程。

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