Centre for Theoretical and Computational Neuroscience, University of Plymouth, Plymouth, Devon, United Kingdom.
Neural Netw. 2009 Oct;22(8):1079-92. doi: 10.1016/j.neunet.2009.07.017. Epub 2009 Jul 21.
The plexus of long and short range lateral connections is a prominent feature of the layer 2/3 microcircuit in the primary visual cortex. Despite the scope for possible functionality, the interdependence of local and long range circuits is still unclear. Spatiotemporal patterns of activity appear to be shaped by the underlying connectivity architecture and strong inhibition. A modelling study has been conducted to capture population activity that has been observed in vitro using voltage sensitive dyes. The model demonstrates that the precise spatiotemporal spread of activity seen in the cortical slice results from long range connections that target specific orientation domains whilst distinct regions of suppressed activity are shown to arise from local isotropic axonal projections. Distal excitatory activity resulting from long range axons is shaped by local interneurons similarly targeted by such connections. It is shown that response latencies of distal excitation are strongly influenced by frequency dependent facilitation and low threshold characteristics of interneurons. Together, these results support hypotheses made following experimental observations in vitro and clearly illustrate the underlying mechanisms. However, predictions by the model suggest that in vivo conditions give rise to markedly different spatiotemporal activity. Furthermore, opposing data in the literature regarding inter-laminar connectivity give rise to profoundly different spatiotemporal patterns of activity in the cortex.
长程和短程侧向连接丛是初级视觉皮层第 2/3 层微电路的一个显著特征。尽管具有潜在的功能,但局部和长程电路的相互依赖性仍不清楚。活动的时空模式似乎受到基础连接结构和强抑制的影响。已经进行了一项建模研究,以捕获使用电压敏感染料在体外观察到的群体活动。该模型表明,在皮质切片中观察到的精确时空活动扩展来自于靶向特定方向域的长程连接,而显示出的抑制活动的不同区域则来自于局部各向同性轴突投射。长程轴突产生的远端兴奋活动受到同样由这些连接靶向的局部中间神经元的影响。结果表明,远端兴奋的反应潜伏期受频率依赖性易化和中间神经元的低阈值特性的强烈影响。这些结果共同支持了在体外实验观察后提出的假设,并清楚地说明了潜在的机制。然而,模型的预测表明,体内条件会导致明显不同的时空活动。此外,文献中关于层间连接的相反数据导致皮层中活动的时空模式存在明显差异。