首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >The receptive-field organization of simple cells in primary visual cortex of ferrets under natural scene stimulation.
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The receptive-field organization of simple cells in primary visual cortex of ferrets under natural scene stimulation.

机译:自然场景刺激下白鼬初级视觉皮层中简单细胞的感受野组织。

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The responses of simple cells in primary visual cortex to sinusoidal gratings can primarily be predicted from their spatial receptive fields, as mapped using spots or bars. Although this quasilinearity is well documented, it is not clear whether it holds for complex natural stimuli. We recorded from simple cells in the primary visual cortex of anesthetized ferrets while stimulating with flashed digitized photographs of natural scenes. We applied standard reverse-correlation methods to quantify the average natural stimulus that invokes a neuronal response. Although these maps cannot be the receptive fields, we find that they still predict the preferred orientation of grating for each cell very well (r = 0.91); they do not predict the spatial-frequency tuning. Using a novel application of the linear reconstruction method called regularized pseudoinverse, we were able to recover high-resolution receptive-field maps from the responses to a relatively small number of natural scenes. These receptive-field maps not only predict the optimum orientation of each cell (r = 0.96) but also the spatial-frequency optimum (r = 0.89); the maps also predict the tuning bandwidths of many cells. Therefore, our first conclusion is that the tuning preferences of the cells are primarily linear and constant across stimulus type. However, when we used these maps to predict the actual responses of the cells to natural scenes, we did find evidence of expansive output nonlinearity and nonlinear influences from outside the classical receptive fields, orientation tuning, and spatial-frequency tuning.
机译:初级视觉皮层中的简单细胞对正弦光栅的响应主要可以通过使用斑点或条形图绘制的空间感受野来预测。尽管这种准线性有充分的文献记载,但尚不清楚它是否适用于复杂的自然刺激。我们用麻醉的雪貂的初级视觉皮层中的简单细胞进行记录,同时用自然场景的闪烁数字化照片进行刺激。我们应用标准的反向相关方法来量化调用神经元反应的平均自然刺激。尽管这些图不能成为接受场,但我们发现它们仍然很好地预测了每个单元的光栅首选取向(r = 0.91);他们无法预测空间频率调谐。使用称为正则化伪逆的线性重构方法的一种新颖应用,我们能够从对相对较少数量的自然场景的响应中恢复高分辨率的接收场图。这些接收场图不仅预测每个单元的最佳方向(r = 0.96),而且还预测空间频率最佳(r = 0.89)。这些图还预测了许多小区的调谐带宽。因此,我们的第一个结论是,细胞的调节偏好主要是线性的,并且在刺激类型上是恒定的。但是,当我们使用这些贴图预测单元格对自然场景的实际响应时,我们确实发现了来自经典接收场,方向调整和空间频率调整之外的广泛输出非线性和非线性影响的证据。

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