Arevian Armen C, Kapoor Vikrant, Urban Nathaniel N
Center for Neuroscience, University of Pittsburgh, Pittsburgh, PA 15260, USA.
Nat Neurosci. 2008 Jan;11(1):80-7. doi: 10.1038/nn2030. Epub 2007 Dec 16.
Lateral inhibition is a circuit motif found throughout the nervous system that often generates contrast enhancement and center-surround receptive fields. We investigated the functional properties of the circuits mediating lateral inhibition between olfactory bulb principal neurons (mitral cells) in vitro. We found that the lateral inhibition received by mitral cells is gated by postsynaptic firing, such that a minimum threshold of postsynaptic activity is required before effective lateral inhibition is recruited. This dynamic regulation allows the strength of lateral inhibition to be enhanced between cells with correlated activity. Simulations show that this regulation of lateral inhibition causes decorrelation of mitral cell activity that is evoked by similar stimuli, even when stimuli have no clear spatial structure. These results show that this previously unknown mechanism for specifying lateral inhibitory connections allows functional inhibitory connectivity to be dynamically remapped to relevant populations of neurons.
侧向抑制是一种在整个神经系统中都能发现的回路模式,它常常产生对比度增强和中心-外周感受野。我们在体外研究了介导嗅球主神经元(僧帽细胞)之间侧向抑制的回路的功能特性。我们发现,僧帽细胞所接受的侧向抑制受突触后放电的门控,即有效侧向抑制被激活之前需要突触后活动的最低阈值。这种动态调节使得在具有相关活动的细胞之间侧向抑制的强度得以增强。模拟结果表明,这种对侧向抑制的调节会导致由相似刺激诱发的僧帽细胞活动去相关,即使刺激没有清晰的空间结构。这些结果表明,这种此前未知的用于确定侧向抑制连接的机制使得功能性抑制连接能够动态地重新映射到相关的神经元群体。