Anderson J S, Lampl I, Gillespie D C, Ferster D
Department of Neurobiology and Physiology, Northwestern University, Evanston, Illinois 60208, USA.
J Neurosci. 2001 Mar 15;21(6):2104-12. doi: 10.1523/JNEUROSCI.21-06-02104.2001.
Spike responses for many cells of cat primary visual cortex are optimized for the length of a drifting grating stimulus. Stimuli that are longer or shorter than this optimal length elicit submaximal spike responses. To investigate the mechanisms responsible for this length tuning, we have recorded intracellularly from visual cortical neurons in the cat while presenting drifting grating stimuli of varying lengths. We have found that the membrane potential responses of the cells also exhibit length tuning, but that the suppression of spike responses at lengths longer than the preferred is 30-50% stronger than the corresponding suppression of the membrane potential responses. This difference may be attributed to the effects of spike threshold. Furthermore, using steady injected currents, we have measured changes in the excitatory and inhibitory components of input conductance evoked by stimuli of different lengths. We find that, compared with optimal stimuli, long stimuli evoke both an increase in inhibitory conductance and a decrease in excitatory conductance. These two mechanisms differ in their contrast sensitivity, resulting in stronger end stopping and shorter optimal lengths for high-contrast stimuli. These patterns suggest that response suppression for long stimuli is generated by a combination of active inhibition from stimuli outside the excitatory receptive field, as well as decreased excitation from other cortical cells that are themselves end-inhibited.
猫初级视觉皮层中许多细胞的锋电位响应针对漂移光栅刺激的时长进行了优化。长于或短于该最佳时长的刺激会引发次最大锋电位响应。为了研究造成这种时长调谐的机制,我们在给猫呈现不同时长的漂移光栅刺激时,对其视觉皮层神经元进行了细胞内记录。我们发现,细胞的膜电位响应也呈现出时长调谐,但在时长超过偏好时长时,锋电位响应的抑制比膜电位响应的相应抑制强30%至50%。这种差异可能归因于锋电位阈值的影响。此外,我们使用稳定注入电流,测量了不同时长刺激诱发的输入电导的兴奋性和抑制性成分的变化。我们发现,与最佳刺激相比,长刺激会同时引起抑制性电导增加和兴奋性电导降低。这两种机制在对比度敏感性方面存在差异,导致高对比度刺激的终端抑制更强且最佳时长更短。这些模式表明,长刺激的响应抑制是由兴奋性感受野之外的刺激的主动抑制以及自身受到终端抑制的其他皮层细胞的兴奋性降低共同产生的。