Volgushev M, Pernberg J, Eysel U T
Ruhr-University Bochum, Department of Neurophysiology, D-44801 Bochum, Germany.
Eur J Neurosci. 2000 Jan;12(1):257-63. doi: 10.1046/j.1460-9568.2000.00909.x.
Intracellular recordings were made from neurons in the cat visual cortex (area 17) to compare the orientation and direction selectivities of the output of a cell with those of the input the cell receives. The input to a cell was estimated from the PSPs (postsynaptic potentials) evoked by visual stimulation, and the output estimated from the number of spikes generated during the same responses. For the whole sample, selectivity of the output of cells was significantly higher than selectivity of their input. Upon PSP to spike transformation, the selectivity index was, on average, doubled. However, the degree of the selectivity improvement in individual cells was very different, varying from cases in which highly selective output was created from a poorly selective input and thus selectivity was greatly improved, to little or no improvement in other neurons. The improvement of selectivity was not correlated with resting membrane potential, threshold for action potential generation, background discharge rate or amplitude of optimal PSP response. Further, no systematic difference was found between simple and complex cells in the input-output relations, indicating that the 'tip of the iceberg' effect on shaping the response selectivity was cell specific, but not cell type specific. This supports the notion that multiple mechanisms are responsible for generation of the response selectivity, and that the contribution of any particular mechanism may vary from one cell to the other. The heterogeneity of the input-output relations in visual cortical cells could indicate different functions of cells in the cortical network; some cells are creating selectivity de novo, the function of other neurons probably being repetition and amplification of the selected signal and arrangement of the output of a whole column.
我们从猫的视觉皮层(17区)的神经元进行细胞内记录,以比较细胞输出的方向和方向选择性与细胞所接收输入的方向和方向选择性。细胞的输入是根据视觉刺激诱发的突触后电位(PSP)来估计的,而输出则是根据同一反应期间产生的动作电位数量来估计的。对于整个样本,细胞输出的选择性显著高于其输入的选择性。在从PSP到动作电位的转换过程中,选择性指数平均增加了一倍。然而,单个细胞中选择性提高的程度差异很大,从由选择性差的输入产生高度选择性输出从而使选择性大大提高的情况,到其他神经元几乎没有改善或没有改善的情况。选择性的提高与静息膜电位、动作电位产生的阈值、背景放电率或最佳PSP反应的幅度无关。此外,在简单细胞和复杂细胞的输入-输出关系中未发现系统差异,这表明在塑造反应选择性方面的“冰山一角”效应是细胞特异性的,而非细胞类型特异性的。这支持了这样一种观点,即多种机制负责反应选择性的产生,并且任何特定机制的贡献可能因细胞而异。视觉皮层细胞输入-输出关系的异质性可能表明皮层网络中细胞的不同功能;一些细胞正在重新产生选择性,其他神经元的功能可能是重复和放大所选信号以及排列整个柱的输出。