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A Cooperation and Competition Based Simple Cell Receptive Field Model and Study of Feed-Forward Linear and Nonlinear Contributions to Orientation Selectivity

机译:基于合作和竞争的简单细胞感受野模型及前馈线性和非线性对方向选择性的贡献研究

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摘要

We present a model for development of orientation selectivity in layer IV simple cells. Receptive field (RF) development in the model, is determined by diffusive cooperation and resource limited competition guided axonal growth and retraction in geniculocortical pathway. The simulated cortical RFs resemble experimental RFs. The receptive field model is incorporated in a three-layer visual pathway model consisting of retina, LGN and cortex. We have studied the effect of activity dependent synaptic scaling on orientation tuning of cortical cells. The mean value of hwhh (half width at half the height of maximum response) in simulated cortical cells is 58° when we consider only the linear excitatory contribution from LGN. We observe a mean improvement of 22.8° in tuning response due to the non-linear spiking mechanisms that include effects of threshold voltage and synaptic scaling factor.
机译:我们提出了第四层简单单元格中方向选择性发展的模型。该模型中的感受野(RF)的发展是由扩散合作和资源有限的竞争指导的基因球通路中的轴突生长和收缩决定的。模拟的皮质RF类似于实验RF。感受野模型被纳入由视网膜,LGN和皮质组成的三层视觉通路模型中。我们已经研究了依赖于活性的突触缩放对皮层细胞定向调节的影响。当我们仅考虑LGN的线性兴奋性贡献时,模拟皮层细胞的hwhh(一半宽度为最大响应高度的一半)的平均值为58°。由于非线性尖峰机制(包括阈值电压和突触缩放因子的影响),我们观察到调谐响应平均提高22.8°。

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