Hu Qiyi, Hu Wenjuan, Liu Keyi, Bu Xiangdong, Hu Lisha, Li Liming, Chai Xinyu, Chen Yao
School of Biomedical Engineering, Shanghai Jiao Tong University, Shanghai, 200240, China.
Neurosci Bull. 2022 May;38(5):489-504. doi: 10.1007/s12264-021-00790-w. Epub 2021 Nov 16.
Studies have shown that spatial attention remarkably affects the trial-to-trial response variability shared between neurons. Difficulty in the attentional task adjusts how much concentration we maintain on what is currently important and what is filtered as irrelevant sensory information. However, how task difficulty mediates the interactions between neurons with separated receptive fields (RFs) that are attended to or attended away is still not clear. We examined spike count correlations between single-unit activities recorded simultaneously in the primary visual cortex (V1) while monkeys performed a spatial attention task with two levels of difficulty. Moreover, the RFs of the two neurons recorded were non-overlapping to allow us to study fluctuations in the correlated responses between competing visual inputs when the focus of attention was allocated to the RF of one neuron. While increasing difficulty in the spatial attention task, spike count correlations were either decreased to become negative between neuronal pairs, implying competition among them, with one neuron (or none) exhibiting attentional enhancement of firing rate, or increased to become positive, suggesting inter-neuronal cooperation, with one of the pair showing attentional suppression of spiking responses. Besides, the modulation of spike count correlations by task difficulty was independent of the attended locations. These findings provide evidence that task difficulty affects the functional interactions between different neuronal pools in V1 when selective attention resolves the spatial competition.
研究表明,空间注意力显著影响神经元之间逐次试验的反应变异性。注意力任务的难度会调整我们对当前重要信息以及被过滤为无关感官信息的关注程度。然而,任务难度如何介导对被关注或未被关注的具有分离感受野(RFs)的神经元之间的相互作用仍不清楚。我们在猴子执行具有两种难度水平的空间注意力任务时,检查了在初级视觉皮层(V1)中同时记录的单个神经元活动之间的峰计数相关性。此外,所记录的两个神经元的感受野不重叠,以便我们研究当注意力焦点分配到一个神经元的感受野时,竞争性视觉输入之间相关反应的波动情况。在增加空间注意力任务难度时,峰计数相关性在神经元对之间要么降低为负,这意味着它们之间存在竞争,其中一个神经元(或没有)表现出放电率的注意力增强,要么增加为正,这表明神经元之间存在合作,其中一对中的一个表现出对尖峰反应的注意力抑制。此外,任务难度对峰计数相关性的调制与被关注位置无关。这些发现提供了证据,表明当选择性注意力解决空间竞争时,任务难度会影响V1中不同神经元池之间的功能相互作用。