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首页> 外文期刊>Behavioural Brain Research: An International Journal >Mental rotation task specifically modulates functional connectivity strength of intrinsic brain activity in low frequency domains: A maximum uncertainty linear discriminant analysis
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Mental rotation task specifically modulates functional connectivity strength of intrinsic brain activity in low frequency domains: A maximum uncertainty linear discriminant analysis

机译:精神旋转任务特异性调节低频域中固有脑活动的功能连通性强度:最大不确定性线性判别分析

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Neuroimaging studies have highlighted that intrinsic brain activity is modified to implement task demands. However, the relation between mental rotation and intrinsic brain activity remains unclear. To answer this question, we collected functional MRI (fMRI) data from 30 healthy participants in two mental rotation task periods (1st-task state, 2nd-task state) and two rest periods before (pre-task resting state) and after the task (post-task resting state) respectively. By combining the spatial independent component analysis (ICA) and voxel-wise functional connectivity strength (FCS), we identified FCS maps of 10 brain resting state networks (RSNs) within six different bands (i.e., 0-0.05, 0.05-0.1, 0.1-0.15, 0.15-0.2, 0.2-0.25, and 0.01-0.08 Hz) corresponding to the four states for each subject. The maximum uncertainty linear discriminant analysis (MLDA) method showed that the FCS within the low frequency bandwidth of 0.05-0.1 Hz could effectively classify the mental rotation task state from pre-/post-task resting states but failed to discriminate the pre- and post-task resting states. Discriminative FCSs were observed in the cognitive executive-control network (central executive and attention) and the imagery-based internal mental manipulation network (default mode, primary sensorimotor, and primary visual). Imagery manipulation is a stable mental element of mental rotation, and the involvement of executive control is dependent on the degree of task familiarity. Together, the present study provides evidence that mental rotation task specifically modifies intrinsic brain activity to complement cognitive demands, which provides further insight into the neural basis of mental rotation manipulation. (C) 2016 Elsevier B.V. All rights reserved.
机译:神经影像学研究突出显示,修改内在脑活动以实施任务需求。然而,精神旋转与内在脑活动之间的关系仍然不清楚。要回答这个问题,我们从30个精神旋转任务期间(第1任务状态,第2任务状态)和两个休息时间(前任务休息状态)和任务之后,收集了来自30个健康参与者的功能MRI(FMRI)数据(任务后休息状态)分别。通过组合空间独立分量分析(ICA)和Voxel-Wise功能连接强度(FCS),我们在六个不同频段内识别出10个大脑休息状态网络(RSNS)的FCS映射(即0-0.05,0.05-0.1,0.1 -0.15,0.15-0.2,0.2-0.25和0.01-0.08 Hz)对应每个受试者的四种状态。最大不确定性线性判别分析(MLDA)方法表明,0.05-0.1Hz的低频带宽内的FC可以有效地将心理旋转任务状态从前/任务后休息状态进行分类,但未能辨别预先和邮寄 - 休息状态。在认知行政控制网络(中央行政和关注)和基于图像的内心操作网络(默认模式,主SensorImotor和主视觉)中,观察到判别FCSS。图像操纵是精神旋转的稳定心理要素,执行控制的参与取决于任务熟悉程度。在一起,本研究提供了证据,即精神旋转任务特异性地修改内在大脑活动以补充认知需求,这提供了进一步了解精神旋转操纵的神经基础。 (c)2016年Elsevier B.v.保留所有权利。

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