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Temporal dynamics of attention-modulated neuronal synchronization in macaque V4

机译:猕猴V4中注意调节神经元同步的时间动态。

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It was recently observed that neurons in area V4 exhibited enhanced gamma band (35-90 Hz) synchronization when monkeys attended to a visual stimulus as compared to when they were not attending to the same stimulus (Science 291 (2001) 1560). Spike-triggered averaging of local field potentials (LFPs) was used to show attentional modulation in an early period from 50 to 150 ms after stimulus onset (Science 291 (2001) 1560). In this work we further studied the fine temporal structure in the same data by focusing only on the LFPs without reference to the concurrent spike trains. With the method of adaptive multivariate autoregressive (AMVAR) modeling, we discovered that attentional modulation of gamma power (~65 Hz) in V4 can be as brief as about 25 ms. Gamma coherence between two V4 recording sites revealed similar attention effects, as well as a second peak around 45 Hz. Directional influences between two V4 populations revealed that one can play a more dominant role than another. These results implicate gamma oscillation as a possible agent in carrying out attention-biased competition among visual stimuli in favor of those that are behaviorally relevant. The AMVAR method was instrumental in revealing the dynamics of gamma frequency synchronization with high temporal and frequency resolution.
机译:最近观察到,与不进行相同刺激的猴子相比,当猴子进行视觉刺激时,V4区域的神经元显示出增强的伽马带(35-90 Hz)同步(Science 291(2001)1560)。刺激发生后,在50到150 ms的早期阶段,使用峰值触发的局部场电势(LFP)平均值显示注意力调制(Science 291(2001)1560)。在这项工作中,我们通过仅关注LFP而不参考并发峰值序列,进一步研究了相同数据中的精细时间结构。使用自适应多元自回归(AMVAR)建模方法,我们发现V4中的伽马功率(〜65 Hz)的注意调制可以短至约25 ms。两个V4录制位置之间的伽马相关性显示出相似的注意力效应,以及45 Hz附近的第二个峰值。两个V4人口之间的方向性影响表明,一个人口可以比另一个人口发挥更大的主导作用。这些结果暗示伽玛振荡可能是在视觉刺激之间进行注意力偏向的竞争中的一种可能的因素,从而有利于那些与行为相关的刺激。 AMVAR方法有助于揭示具有高时间和频率分辨率的伽马频率同步的动力学。

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