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FEF 微刺激导致枕叶 fMRI 活动的任务依赖性调节。

FEF-microstimulation causes task-dependent modulation of occipital fMRI activity.

机构信息

Lab. voor Neuro- & Psychofysiologie, KU Leuven, Leuven, Belgium.

出版信息

Neuroimage. 2013 Feb 15;67:42-50. doi: 10.1016/j.neuroimage.2012.11.017. Epub 2012 Nov 24.

Abstract

Electrical microstimulation of FEF (FEF-EM) modulates neuronal activity in area V4 (Moore and Armstrong, 2003) and elicits functional magnetic resonance imaging (fMRI) activations in visual cortex in a bottom-up dependent manner (Ekstrom et al., 2008). Here we test the hypothesis that FEF-EM-induced modulations of fMRI activity are also function of task demands, which would suggest top-down dependent gating of FEF signals in early visual cortex. We scanned two monkeys performing a visually guided saccade task; a passive fixation task with a very similar visual display; and a passive fixation task without peripheral dots. We found increased effects of FEF-EM on fMRI-activity in visual cortex during saccades compared to fixation, indicating that the FEF-EM induced modulation is task-dependent. Finally, the effect of FEF-EM is mainly present in voxels which were less activated by visual stimuli in the absence of electrical stimulation. Our results show that the FEF-EM-induced pattern of activation in early visual cortex is topographically specific and more pronounced during increased task demands. These results fit with models suggesting that FEF is an important source modulating activity in early sensory cortex and that these influences can be enhanced by coincident bottom-up or top-down signals.

摘要

经额眶回皮层电刺激(FEF-EM)调节 V4 区(Moore 和 Armstrong,2003)神经元的活动,并以自下而上的依赖方式诱发视觉皮层的功能性磁共振成像(fMRI)激活(Ekstrom 等人,2008)。在这里,我们检验了这样一个假设,即 FEF-EM 诱导的 fMRI 活动的调制也是任务需求的函数,这表明 FEF 信号在早期视觉皮层中受到自上而下的门控。我们扫描了两只猴子执行视觉引导的扫视任务;具有非常相似视觉显示的被动固定任务;以及没有外围点的被动固定任务。我们发现,与固定相比,在扫视时,FEF-EM 对 fMRI 活动的影响增加,这表明 FEF-EM 诱导的调制是任务依赖性的。最后,FEF-EM 的作用主要存在于在没有电刺激的情况下,视觉刺激激活程度较低的体素中。我们的结果表明,FEF-EM 在早期视觉皮层中诱导的激活模式具有地形特异性,并且在任务需求增加时更为明显。这些结果符合这样一种模型,即 FEF 是调节早期感觉皮层活动的重要来源,并且这些影响可以通过同时存在的自上而下或自下而上的信号得到增强。

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