首页> 外文期刊>Visual Neuroscience: An International Journal for Empirical and Theoretical Research >Do magnocellular and parvocellular ganglion cells avoid short-wavelength cone input?
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Do magnocellular and parvocellular ganglion cells avoid short-wavelength cone input?

机译:巨细胞和小细胞神经节细胞是否避免短波长视锥细胞输入?

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摘要

We recently developed a new technique to measure cone inputs to visual neurons and used this technique to seek short-wavelength-sensitive (S) cone inputs to parasol, magnocellular (MC) and midget, parvocellular (PC) ganglion cells. Here, we compare our physiological measurements of S-cone weights to those predicted by a random wiring model that assumes cells' receptive fields receive input from mixed cone types. The random wiring model predicts the average weights of S-cone input to be similar to the total percentage of S-cones but with considerable scatter, and the S-cone input polarity to be consistent with that of PC cells' surround and of MC cells' center. This is not consistent with our physiological measurements. We suggest that the ganglion cells' receptive fields may have a mechanism to avoid S-cone inputs, as is the case in the H1 horizontal cells. Previous reports of S-cone inputs, in particular substantial input to MC cells, are likely to reflect variation in prereceptoral filtering and/or the failure to correct for variation in macular pigment.
机译:我们最近开发了一种新技术来测量视觉神经元的视锥细胞输入,并使用该技术来寻找对阳伞,大细胞(MC)和小型,小细胞(PC)神经节细胞的短波敏感(S)视锥细胞输入。在这里,我们将S-锥体权重的生理测量结果与通过随机布线模型预测的那些测量结果进行比较,该模型假设细胞的感受野从混合锥体类型接收输入。随机布线模型预测S-cone输入的平均权重与S-cones的总百分比相似但具有相当大的分散性,并且S-cone输入的极性与PC单元周围和MC单元的极性一致' 中央。这与我们的生理测量结果不一致。我们建议神经节细胞的感受野可能具有避免S-cone输入的机制,就像H1水平细胞中的情况一样。 S-锥体输入的先前报告,特别是MC细胞的大量输入,很可能反映了感受器过滤的变化和/或黄斑色素的变化校正失败。

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