Somers D C, Nelson S B, Sur M
Department of Brain and Cognitive Sciences, Massachusetts Institute of Technology, Cambridge 02139, USA.
J Neurosci. 1995 Aug;15(8):5448-65. doi: 10.1523/JNEUROSCI.15-08-05448.1995.
It is well known that visual cortical neurons respond vigorously to a limited range of stimulus orientations, while their primary afferent inputs, neurons in the lateral geniculate nucleus (LGN), respond well to all orientations. Mechanisms based on intracortical inhibition and/or converging thalamocortical afferents have previously been suggested to underlie the generation of cortical orientation selectivity; however, these models conflict with experimental data. Here, a 1:4 scale model of a 1700 microns by 200 microms region of layer IV of cat primary visual cortex (area 17) is presented to demonstrate that local intracortical excitation may provide the dominant source of orientation-selective input. In agreement with experiment, model cortical cells exhibit sharp orientation selectivity despite receiving strong iso-orientation inhibition, weak cross-orientation inhibition, no shunting inhibition, and weakly tuned thalamocortical excitation. Sharp tuning is provided by recurrent cortical excitation. As this tuning signal arises from the same pool of neurons that it excites, orientation selectivity in the model is shown to be an emergent property of the cortical feedback circuitry. In the model, as in experiment, sharpness of orientation tuning is independent of stimulus contrast and persists with silencing of ON-type subfields. The model also provides a unified account of intracellular and extracellular inhibitory blockade experiments that had previously appeared to conflict over the role of inhibition. It is suggested that intracortical inhibition acts nonspecifically and indirectly to maintain the selectivity of individual neurons by balancing strong intracortical excitation at the columnar level.
众所周知,视觉皮层神经元对有限范围的刺激方向有强烈反应,而它们的主要传入输入,即外侧膝状体核(LGN)中的神经元,对所有方向都有良好反应。先前有人提出基于皮层内抑制和/或汇聚的丘脑皮层传入纤维的机制是皮层方向选择性产生的基础;然而,这些模型与实验数据相冲突。在此,展示了一个1700微米×200微米的猫初级视觉皮层(17区)第IV层区域的1:4比例模型,以证明局部皮层内兴奋可能提供方向选择性输入的主要来源。与实验一致,模型皮层细胞尽管受到强烈的同方向抑制、较弱的交叉方向抑制、没有分流抑制以及丘脑皮层兴奋的弱调谐,但仍表现出尖锐的方向选择性。尖锐的调谐由皮层的递归兴奋提供。由于这个调谐信号来自它所兴奋的同一组神经元,模型中的方向选择性被证明是皮层反馈回路的一种涌现特性。在模型中,如同在实验中一样,方向调谐的尖锐度与刺激对比度无关,并且在ON型子场沉默时依然存在。该模型还对细胞内和细胞外抑制阻断实验提供了一个统一的解释,这些实验之前在抑制作用方面似乎存在冲突。有人提出,皮层内抑制通过在柱状水平平衡强烈的皮层内兴奋,以非特异性和间接的方式维持单个神经元的选择性。