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Binocular visual responses in cells of the rat dLGN

机译:大鼠dLGN细胞中的双目视觉反应

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摘要

In the mammalian visual system the output of the retina reaches the cerebral cortex by means of a synaptic link within the thalamus, the dorsal lateral geniculate nucleus (dLGN). In higher mammals this structure is visibly laminated, such that input from the two eyes remains segregated, binocular responses in essence being seen first in the cerebral cortex. In the rat this segregation is less obvious. With only around 3–10% of retinal ganglion cells projecting axons to the ipsilateral dLGN, the dLGN may be considered basically monocular; however, these ipsilaterally projecting axons contact cells in a region described as the ‘hidden lamina’, whose physiological properties have not been well described. In the anatomical literature, there is some debate as to the possibility of cross-over between the terminations of the two eyes. Here, a population of cells physiologically receiving input from the ipsilateral eye is described – surprisingly, the majority (63%) had powerful, excitatory input from both eyes, suggesting a simple form of binocular integration at a stage earlier than previously described for other, more ‘visually developed’ species, in which thalamic binocular integration is complex.
机译:在哺乳动物的视觉系统中,视网膜的输出通过丘脑(背外侧膝状核(dLGN))内的突触连接到达大脑皮层。在较高级的哺乳动物中,这种结构明显是层叠的,因此两只眼睛的输入保持分离,本质上首先在大脑皮层中可以看到双眼反应。在大鼠中,这种分离不太明显。仅有约3–10%的视网膜神经节细胞将轴突投射到同侧dLGN,因此dLGN基本上可以被认为是单眼的。然而,这些同侧突出的轴突会接触被称为“隐层”的区域的细胞,其生理特性尚未得到很好的描述。在解剖学文献中,关于两只眼睛的末端之间交叉的可能性存在一些争论。这里描述了一组生理上从同侧眼接受输入的细胞–令人惊讶的是,大多数(63%)的双眼都具有强大的兴奋性输入,这表明双眼整合的一种简单形式早于其他描述。丘脑双眼融合复杂的“视觉发达”物种。

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