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Stimulus-induced dissociation of neuronal firing rates and local field potential gamma power and its relationship to the blood oxygen level-dependent signal in macaque primary visual cortex

机译:猕猴原发性视皮层刺激诱发的神经元放电速率和局部场电位伽马能解离及其与血氧水平依赖性信号的关系

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摘要

The functional magnetic resonance imaging (fMRI) blood oxygenation level-dependent (BOLD) signal is regularly used to assign neuronal activity to cognitive function. Recent analyses have shown that the local field potential (LFP) gamma power is a better predictor of the fMRI BOLD signal than spiking activity. However, LFP gamma power and spiking activity are usually correlated, clouding the analysis of the neural basis of the BOLD signal. We show that changes in LFP gamma power and spiking activity in the primary visual cortex (V1) of the awake primate can be dissociated by using grating and plaid pattern stimuli, which differentially engage surround suppression and cross-orientation inhibition/facilitation within and between cortical columns. Grating presentation yielded substantial V1 LFP gamma frequency oscillations and significant multi-unit activity. Plaid pattern presentation significantly reduced the LFP gamma power while increasing population multi-unit activity. The fMRI BOLD activity followed the LFP gamma power changes, not the multi-unit activity. Inference of neuronal activity from the fMRI BOLD signal thus requires detailed a priori knowledge of how different stimuli or tasks activate the cortical network.
机译:功能性磁共振成像(fMRI)血液氧合水平依赖性(BOLD)信号通常用于将神经元活动分配给认知功能。最近的分析表明,与尖峰活动相比,局部场电势(LFP)伽马射线能更好地预测fMRI BOLD信号。但是,LFP的伽马强度和尖峰活动通常相关,从而模糊了BOLD信号的神经基础的分析。我们表明,可以通过使用光栅和格子图案刺激来分离清醒的灵长类动物的初级视觉皮层(V1)中LFP伽马强度和尖峰活动的变化,这些刺激可以区别地参与皮质内和皮质之间的环绕抑制和交叉取向抑制/促进列。光栅显示产生大量的V1 LFP伽马频率振荡和明显的多单元活动。格子图案的呈现大大降低了LFP伽玛强度,同时增加了人口多单位活动。 fMRI BOLD活动遵循LFPγ功率变化,而非多单位活动。因此,从fMRI BOLD信号推断神经元活动需要先验知识,以了解不同的刺激或任务如何激活皮层网络。

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