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首页> 外文期刊>Visual Neuroscience: An International Journal for Empirical and Theoretical Research >Spatial summation and center-surround antagonism in the receptive field of single units in the dorsal lateral geniculate nucleus of cat: comparison with retinal input.
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Spatial summation and center-surround antagonism in the receptive field of single units in the dorsal lateral geniculate nucleus of cat: comparison with retinal input.

机译:猫背外侧膝状核单个单元的感受野中的空间总和和中心-周围拮抗作用:与视网膜输入的比较。

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Spatial summation and degree of center-surround antagonism were examined in the receptive field of nonlagged cells in the dorsal lateral geniculate nucleus (dLGN). We recorded responses to stationary light or dark circular spots that were stepwise varied in width. The spots were centered on the receptive field. For a sample of nonlagged X-cells, we made simultaneous recordings of action potentials and S-potentials, and could thereby compare spatial summation in the dLGN cell and in the retinal input to the cell. Plots of response versus spot diameter showed that the response for a dLGN cell was consistently below the response in the retinal input at all spot sizes. There was a marked increase of antagonism at the retinogeniculate relay. The difference between the retinal input and dLGN cell response suggested that the direct retinal input to a relay cell is counteracted in dLGN by an inhibitory field that has an antagonistic center-surround organization. The inhibitory field seems to have the same center sign (ON- or OFF-center), but a wider receptive-field center than the direct retinal input to the relay cell. The broader center of the inhibitory field can explain the increased center-surround antagonism at the retinogeniculate relay. The ratio between the response of a dLGN cell and its retinal input (transfer ratio) varied with spot width. This variation did not necessarily reflect a nonlinearity at the retinogeniculate relay. Plots of dLGN cell response against retinal input were piecewise linear, suggesting that both excitatory and inhibitory transmission in dLGN are close to linear. The variation in transfer ratio could be explained by sustained suppression evoked by the background stimulation, because such suppression has relatively stronger effect on the response to a spot evoking weak response than to a spot evoking a strong response. A simple model for the spatial receptive-field organization of nonlagged X-cells, that is consistent with our findings, is presented.
机译:在背外侧膝状核(dLGN)的非滞后细胞的接受领域中检查了空间总和和中心-环绕拮抗程度。我们记录了在宽度上逐步变化的固定的浅色或深色圆形斑点的响应。斑点集中在感受野上。对于非滞后X细胞样本,我们同时记录了动作电位和S电位,从而可以比较dLGN细胞和该细胞视网膜输入中的空间总和。响应与斑点直径的关系图表明,在所有斑点尺寸下,dLGN细胞的响应始终低于视网膜输入中的响应。在维甲酸中继处的拮抗作用明显增加。视网膜输入和dLGN细胞反应之间的差异表明,中继细胞的直接视网膜输入在dLGN中被具有拮抗中心周围组织的抑制场所抵消。抑制场似乎具有相同的中心符号(ON中心或OFF中心),但感受野中心比中继细胞直接输入视网膜要宽。抑制域的更宽中心可以解释视黄酸中继处中心-周围拮抗作用的增加。 dLGN细胞的反应与其视网膜输入之间的比率(转移比率)随斑点宽度而变化。这种变化并不一定反映了成视网膜继电器的非线性。针对视网膜输入的dLGN细胞反应图呈分段线性关系,表明dLGN中的兴奋性传递和抑制性传递均接近线性。转移率的变化可以通过背景刺激引起的持续抑制来解释,因为这种抑制对引起弱反应的斑点的反应比引起强反应的斑点的反应具有相对更强的影响。提出了一个非滞后X细胞的空间感受野组织的简单模型,与我们的发现一致。

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