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视觉搜索难度调节额叶眼区的神经元相互作用和反应变异性。

Difficulty of visual search modulates neuronal interactions and response variability in the frontal eye field.

作者信息

Cohen Jeremiah Y, Pouget Pierre, Woodman Geoffrey F, Subraveti Chenchal R, Schall Jeffrey D, Rossi Andrew F

机构信息

Vanderbilt Brain Institute, Vanderbilt University, Nashville, TN 37240, USA.

出版信息

J Neurophysiol. 2007 Nov;98(5):2580-7. doi: 10.1152/jn.00522.2007. Epub 2007 Sep 12.

Abstract

The frontal eye field (FEF) is involved in selecting visual targets for eye movements. To understand how populations of FEF neurons interact during target selection, we recorded activity from multiple neurons simultaneously while macaques performed two versions of a visual search task. We used a multivariate analysis in a point process statistical framework to estimate the instantaneous firing rate and compare interactions among neurons between tasks. We found that FEF neurons were engaged in more interactions during easier visual search tasks compared with harder search tasks. In particular, eye movement-related neurons were involved in more interactions than visual-related neurons. In addition, our analysis revealed a decrease in the variability of spiking activity in the FEF beginning approximately 100 ms before saccade onset. The minimum in response variability occurred approximately 20 ms earlier for the easier search task compared with the harder one. This difference is positively correlated with the difference in saccade reaction times for the two tasks. These findings show that a multivariate analysis can provide a measure of neuronal interactions and characterize the spiking activity of FEF neurons in the context of a population of neurons.

摘要

额叶眼区(FEF)参与为眼动选择视觉目标。为了解FEF神经元群体在目标选择过程中如何相互作用,我们在猕猴执行两种视觉搜索任务版本时,同时记录了多个神经元的活动。我们在点过程统计框架中使用多变量分析来估计瞬时放电率,并比较任务之间神经元的相互作用。我们发现,与较难的搜索任务相比,在较容易的视觉搜索任务中,FEF神经元参与的相互作用更多。特别是,与眼动相关的神经元比与视觉相关的神经元参与的相互作用更多。此外,我们的分析显示,在扫视开始前约100毫秒,FEF中尖峰活动的变异性开始下降。与较难的搜索任务相比,较容易的搜索任务中反应变异性的最小值出现时间提前了约20毫秒。这种差异与两项任务的扫视反应时间差异呈正相关。这些发现表明,多变量分析可以提供神经元相互作用的度量,并在神经元群体的背景下表征FEF神经元的尖峰活动。

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