Chen Ke, Song Xue-Mei, Dai Zheng-Qiang, Yin Jiao-Jiao, Xu Xing-Zhen, Li Chao-Yi
Key Laboratory for Neuroinformation of Ministry of Education, School of Life Science and Technology, University of Electronic Science and Technology of China, Chengdu 610054, China.
Shanghai Institutes of Biological Sciences, Chinese Academy of Sciences, Shanghai 200031, China.
Vision Res. 2014 Mar;96:87-95. doi: 10.1016/j.visres.2014.01.011. Epub 2014 Feb 5.
The spatial summation of excitation and inhibition determines the final output of neurons in the cat V1. To characterize the spatial extent of the excitatory classical receptive field (CRF) and inhibitory non-classical receptive field (nCRF) areas, we examined the spatial summation properties of 169 neurons in cat V1 at high (20-90%) and low (5-15%) stimulus contrasts. Three categories were classified based on the difference in the contrast dependency of the surround suppression. We discovered that the three categories significantly differed in CRF size, peak firing rate, and the proportion of simple/complex cell number. The classification of simple and complex cells was determined at both high and low contrasts. While the majority of V1 neurons had stable modulation ratios in their responses, 10 cells (6.2%) in our sample crossed the classification boundary under different stimulus contrasts. No significant difference was found in the size of the CRF between simple and complex cells. Further comparisons in each category determined that the CRFs for complex cells were significantly larger than those for simple cells in category type I neurons, with no significant differences between simple and complex cells in category type II and type III neurons. In addition, complex cells have higher peak firing rates than simple cells.
兴奋与抑制的空间总和决定了猫V1区神经元的最终输出。为了表征兴奋性经典感受野(CRF)和抑制性非经典感受野(nCRF)区域的空间范围,我们在高(20 - 90%)和低(5 - 15%)刺激对比度下,研究了猫V1区169个神经元的空间总和特性。根据周边抑制的对比度依赖性差异,将其分为三类。我们发现,这三类在CRF大小、峰值放电率以及简单/复杂细胞数量比例方面存在显著差异。简单细胞和复杂细胞的分类是在高对比度和低对比度下确定的。虽然大多数V1神经元的反应具有稳定的调制率,但我们样本中的10个细胞(6.2%)在不同的刺激对比度下跨越了分类边界。简单细胞和复杂细胞的CRF大小没有显著差异。在每一类中的进一步比较确定,在I类神经元中,复杂细胞的CRF明显大于简单细胞,而在II类和III类神经元中,简单细胞和复杂细胞之间没有显著差异。此外,复杂细胞的峰值放电率高于简单细胞。