Bharmauria Vishal, Bachatene Lyes, Cattan Sarah, Brodeur Simon, Chanauria Nayan, Rouat Jean, Molotchnikoff Stéphane
Neurophysiology of Visual System, Département de Sciences Biologiques, Université de Montréal, CP 6128 Succursale Centre-Ville, Montréal, QC, Canada, H3C 3J7.
Neurosciences Computationnelles et Traitement Intelligent des Signaux (NECOTIS), Sherbrooke, QC, Canada.
Eur J Neurosci. 2016 Jan;43(2):204-19. doi: 10.1111/ejn.13101. Epub 2015 Nov 19.
Visual neurons coordinate their responses in relation to the stimulus; however, the complex interplay between a stimulus and the functional dynamics of an assembly still eludes neuroscientists. To this aim, we recorded cell assemblies from multi-electrodes in the primary visual cortex of anaesthetized cats in response to randomly presented sine-wave drifting gratings whose orientation tilted in 22.5° steps. Cross-correlograms revealed the functional connections at all the tested orientations. We show that a cell-assembly discriminates between orientations by recruiting a 'salient' functional network at every presented orientation, wherein the connections and their strengths (peak-probabilities in the cross-correlogram) change from one orientation to another. Within these assemblies, closely tuned neurons exhibited increased connectivity and connection-strengths compared with differently tuned neurons. Minimal connectivity between untuned neurons suggests the significance of neuronal selectivity in assemblies. This study reflects upon the dynamics of functional connectivity, and brings to the fore the importance of a 'signature' functional network in an assembly that is strictly related to a specific stimulus. It appears that an assembly is the major 'functional unit' of information processing in cortical circuits, rather than the individual neurons.
视觉神经元会根据刺激来协调它们的反应;然而,刺激与神经元集群功能动力学之间复杂的相互作用仍然让神经科学家们捉摸不透。为了实现这一目标,我们在麻醉猫的初级视觉皮层中,通过多电极记录神经元集群对随机呈现的正弦波漂移光栅的反应,这些光栅的方向以22.5°步长倾斜。互相关图揭示了所有测试方向上的功能连接。我们发现,神经元集群通过在每个呈现的方向上招募一个“显著的”功能网络来区分不同的方向,其中连接及其强度(互相关图中的峰值概率)会从一个方向到另一个方向发生变化。在这些集群中,与调谐不同的神经元相比,调谐紧密的神经元表现出更强的连通性和连接强度。未调谐神经元之间的最小连通性表明了神经元选择性在集群中的重要性。这项研究反映了功能连接的动态变化,并凸显了与特定刺激严格相关的集群中“特征”功能网络的重要性。看来,神经元集群是皮层回路中信息处理的主要“功能单元”,而不是单个神经元。