具有平衡兴奋和抑制的局部皮质网络中的不变计算。
Invariant computations in local cortical networks with balanced excitation and inhibition.
作者信息
Mariño Jorge, Schummers James, Lyon David C, Schwabe Lars, Beck Oliver, Wiesing Peter, Obermayer Klaus, Sur Mriganka
机构信息
Department of Brain and Cognitive Sciences and Picower Center for Learning and Memory, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.
出版信息
Nat Neurosci. 2005 Feb;8(2):194-201. doi: 10.1038/nn1391. Epub 2005 Jan 23.
Cortical computations critically involve local neuronal circuits. The computations are often invariant across a cortical area yet are carried out by networks that can vary widely within an area according to its functional architecture. Here we demonstrate a mechanism by which orientation selectivity is computed invariantly in cat primary visual cortex across an orientation preference map that provides a wide diversity of local circuits. Visually evoked excitatory and inhibitory synaptic conductances are balanced exquisitely in cortical neurons and thus keep the spike response sharply tuned at all map locations. This functional balance derives from spatially isotropic local connectivity of both excitatory and inhibitory cells. Modeling results demonstrate that such covariation is a signature of recurrent rather than purely feed-forward processing and that the observed isotropic local circuit is sufficient to generate invariant spike tuning.
皮层计算关键涉及局部神经元回路。这些计算在整个皮层区域通常是不变的,但却是由根据其功能结构在一个区域内可以有很大差异的网络来执行的。在这里,我们展示了一种机制,通过该机制,在猫的初级视觉皮层中,跨一个提供多种局部回路的方向偏好图,方向选择性以不变的方式进行计算。视觉诱发的兴奋性和抑制性突触电导在皮层神经元中精确平衡,从而在所有图位置将尖峰反应保持在尖锐调谐状态。这种功能平衡源于兴奋性和抑制性细胞在空间上各向同性的局部连接。建模结果表明,这种共变是循环而非纯粹前馈处理的特征,并且观察到的各向同性局部回路足以产生不变的尖峰调谐。