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在视觉刺激、工作记忆和注意力过程中,前额叶眼区神经元的反应变异性与放电率效应的分离。

Dissociation of response variability from firing rate effects in frontal eye field neurons during visual stimulation, working memory, and attention.

机构信息

Department of Bioengineering, Stanford University, Stanford, California 94305, USA.

出版信息

J Neurosci. 2012 Feb 8;32(6):2204-16. doi: 10.1523/JNEUROSCI.2967-11.2012.

Abstract

Recent studies suggest that trial-to-trial variability of neuronal spiking responses may provide important information about behavioral state. Observed changes in variability during sensory stimulation, attention, motor preparation, and visual discrimination suggest that variability may reflect the engagement of neurons in a behavioral task. We examined changes in spiking variability of frontal eye field (FEF) neurons in a change detection task requiring monkeys to remember a visually cued location and direct attention to that location while ignoring distracters elsewhere. In this task, the firing rates (FRs) of FEF neurons not only continuously reflect the location of the remembered cue and select targets, but also predict detection performance on a trial-by-trial basis. Changes in FEF response variability, as measured by the Fano factor (FF), showed clear dissociations from changes in FR. The FF declined in response to visual stimulation at all tested locations, even in the opposite hemifield, indicating much broader spatial tuning of the FF compared with the FR. Furthermore, despite robust spatial modulation of the FR throughout all epochs of the task, spatial tuning of the FF did not persist throughout the delay period, nor did it show attentional modulation. These results indicate that changes in variability, at least in the FEF, are most effectively driven by visual stimulation, while behavioral engagement is not sufficient. Instead, changes in variability may reflect shifts in the balance between feedforward and recurrent sources of excitatory drive.

摘要

最近的研究表明,神经元发放反应的trial-to-trial 可变性可能提供关于行为状态的重要信息。在感觉刺激、注意力、运动准备和视觉辨别过程中观察到的可变性变化表明,可变性可能反映了神经元在行为任务中的参与程度。我们在一项需要猴子记住视觉提示位置并将注意力集中在该位置上而忽略其他地方干扰物的变化检测任务中,检查了额叶眼区(FEF)神经元的发放可变性变化。在这个任务中,FEF 神经元的发放率(FR)不仅连续反映了被记住的提示位置并选择目标,而且还可以逐trial 预测检测性能。通过 Fano 因子(FF)测量的 FEF 反应可变性的变化与 FR 的变化明显不同。FF 在所有测试位置的视觉刺激下下降,即使在对侧视野也是如此,这表明与 FR 相比,FF 的空间调谐更广泛。此外,尽管 FR 在整个任务的所有时期都表现出强烈的空间调制,但 FF 的空间调谐在延迟期间并不持续,也没有表现出注意力调制。这些结果表明,至少在 FEF 中,可变性的变化主要由视觉刺激驱动,而行为参与并不足以驱动。相反,可变性的变化可能反映了兴奋性驱动的前馈和递归源之间平衡的变化。

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