首页> 美国卫生研究院文献>Brain Connectivity >Intrinsic Connectivity Provides the Baseline Framework for Variability in Motor Performance: A Multivariate Fusion Analysis of Low- and High-Frequency Resting-State Oscillations and Antisaccade Performance
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Intrinsic Connectivity Provides the Baseline Framework for Variability in Motor Performance: A Multivariate Fusion Analysis of Low- and High-Frequency Resting-State Oscillations and Antisaccade Performance

机译:内部连通性为电动机性能的变化提供了基线框架:低频和高频静止状态振荡和反扫视性能的多元融合分析

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摘要

Intrinsic brain activity provides the functional framework for the brain's full repertoire of behavioral responses; that is, a common mechanism underlies intrinsic and extrinsic neural activity, with extrinsic activity building upon the underlying baseline intrinsic activity. The generation of a motor movement in response to sensory stimulation is one of the most fundamental functions of the central nervous system. Since saccadic eye movements are among our most stereotyped motor responses, we hypothesized that individual variability in the ability to inhibit a prepotent saccade and make a voluntary antisaccade would be related to individual variability in intrinsic connectivity. Twenty-three individuals completed the antisaccade task and resting-state functional magnetic resonance imaging (fMRI). A multivariate analysis of covariance identified relationships between fMRI oscillations (0.01–0.2 Hz) of resting-state networks determined using high-dimensional independent component analysis and antisaccade performance (latency, error rate). Significant multivariate relationships between antisaccade latency and directional error rate were obtained in independent components across the entire brain. Some of the relationships were obtained in components that overlapped substantially with the task; however, many were obtained in components that showed little overlap with the task. The current results demonstrate that even in the absence of a task, spectral power in regions showing little overlap with task activity predicts an individual's performance on a saccade task.
机译:内在的大脑活动为大脑的全部行为反应提供了功能框架。也就是说,内在和外在神经活动是一种通用机制,外在活动建立在基础基线内在活动之上。响应于感觉刺激而产生的运动运动是中枢神经系统的最基本功能之一。由于眼跳运动是我们最刻板的运动反应之一,因此我们假设抑制潜在扫视和进行自愿性扫视的能力中的个体变异性与内在连通性中的个体变异性有关。 23个人完成了抗扫视任务和静止状态功能磁共振成像(fMRI)。协方差的多元分析确定了使用高维独立分量分析确定的静息状态网络的fMRI振荡(0.01–0.2 Hz)与反扫视性能(延迟,错误率)之间的关系。在整个大脑的独立组件中,获得了反扫视潜伏期和方向错误率之间的重要多元关系。一些关系是在与任务基本重叠的组件中获得的;但是,许多组件是与任务几乎没有重叠的组件。目前的结果表明,即使没有任务,与任务活动几乎没有重叠的区域的频谱功率也可以预测个人在扫视任务上的表现。

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