Felsen Gidon, Shen Yao-song, Yao Haishan, Spor Gareth, Li Chaoyi, Dan Yang
Division of Neurobiology, Department of Molecular and Cell Biology, University of California, Berkeley, 94720, USA.
Neuron. 2002 Dec 5;36(5):945-54. doi: 10.1016/s0896-6273(02)01011-5.
Receptive field properties of visual cortical neurons depend on the spatiotemporal context within which the stimuli are presented. We have examined the temporal context dependence of cortical orientation tuning using dynamic visual stimuli with rapidly changing orientations. We found that tuning to the orientation of the test stimulus depended on a briefly presented preceding stimulus, with the preferred orientation shifting away from the preceding orientation. Analyses of the spatial-phase dependence of the shift showed that the effect cannot be explained by purely feedforward mechanisms, but can be accounted for by activity-dependent changes in the recurrent interactions between different orientation columns. Thus, short-term plasticity of the intracortical circuit can mediate dynamic modification of orientation tuning, which may be important for efficient visual coding.
视觉皮层神经元的感受野特性取决于呈现刺激的时空背景。我们使用具有快速变化方向的动态视觉刺激,研究了皮层方向调谐的时间背景依赖性。我们发现,对测试刺激方向的调谐取决于之前短暂呈现的刺激,其偏好方向会偏离之前的方向。对该偏移的空间相位依赖性分析表明,这种效应不能用纯粹的前馈机制来解释,而可以由不同方向柱之间循环相互作用中与活动相关的变化来解释。因此,皮层内回路的短期可塑性可以介导方向调谐的动态改变,这可能对高效视觉编码很重要。