首页> 外文期刊>Journal of Neurophysiology >Orientation tuning of input conductance, excitation, and inhibition in cat primary visual cortex.
【24h】

Orientation tuning of input conductance, excitation, and inhibition in cat primary visual cortex.

机译:猫初级视觉皮层中输入电导,激励和抑制的方向调整。

获取原文
获取原文并翻译 | 示例
           

摘要

The input conductance of cells in the cat primary visual cortex (V1) has been shown recently to grow substantially during visual stimulation. Because increasing conductance can have a divisive effect on the synaptic input, theoretical proposals have ascribed to it specific functions. According to the veto model, conductance increases would serve to sharpen orientation tuning by increasing most at off-optimal orientations. According to the normalization model, conductance increases would control the cell's gain, by being independent of stimulus orientation and by growing with stimulus contrast. We set out to test these proposals and to determine the visual properties and possible synaptic origin of the conductance increases. We recorded the membrane potential of cat V1 cells while injecting steady currents and presenting drifting grating patterns of varying contrast and orientation. Input conductance grew with stimulus contrast by 20-300%, generally more in simple cells (40-300%) than in complex cells (20-120%), and in simple cells was strongly modulated in time. Conductance was invariably maximal for stimuli of the preferred orientation. Thus conductance changes contribute to a gain control mechanism, but the strength of this gain control does not depend uniquely on contrast. By assuming that the conductance changes are entirely synaptic, we further derived the excitatory and inhibitory synaptic conductances underlying the visual responses. In simple cells, these conductances were often arranged in push-pull: excitation increased when inhibition decreased and vice versa. Excitation and inhibition had similar preferred orientations and did not appear to differ in tuning width, suggesting that the intracortical synaptic inputs to simple cells of cat V1 originate from cells with similar orientation tuning. This finding is at odds with models where orientation tuning in simple cells is achieved by inhibition at off-optimal orientations or sharpened by inhibition that is more broadly tuned than excitation.
机译:最近显示,猫初级视觉皮层(V1)中细胞的输入电导在视觉刺激期间会显着增长。因为增加电导可以对突触输入产生分裂作用,所以理论建议将其归因于其特定功能。根据否决模型,电导的增加将通过在非最佳方向上增加最多来增强方向调整。根据归一化模型,电导率的增加将独立于刺激物的方向并通过刺激物的对比生长来控制细胞的增益。我们着手测试这些建议,并确定电导率增加的视觉特性和可能的​​突触起源。我们记录了猫V1细胞的膜电位,同时注入了稳定电流并呈现出对比度和方向不同的漂移光栅图案。输入电导率与刺激对比增加了20-300%,通常在简单细胞(40-300%)中比在复杂细胞(20-120%)中更多,并且在简单细胞中时间受到强烈调节。对于优选取向的刺激,电导始终是最大的。因此,电导的变化有助于增益控制机制,但是这种增益控制的强度并不唯一地取决于对比度。通过假设电导变化完全是突触,我们进一步得出了视觉反应背后的兴奋性和抑制性突触电导。在简单的细胞中,这些电导通常以推挽方式排列:抑制降低时,激发增加,反之亦然。兴奋和抑制具有相似的优选方向,并且在调整宽度上似乎没有差异,这表明猫V1单细胞的皮质内突触输入来自具有相似方向调整的细胞。这一发现与模型不同,在模型中,通过抑制非最佳方向来实现简单单元中的方向调整,或者通过比激发更广泛地调整的抑制来增强方向。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号