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Effects of monocular deprivation on the structure-function relationship of individual neurons in the cats lateral geniculate nucleus

机译:单眼剥夺对猫外侧膝状核单个神经元结构-功能关系的影响

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摘要

The retino-geniculo-cortical pathways of the cat composed of at least three parallel channels. The neurons in these channels (W-, X-, and Y- cells) have different physiological properties. In earlier studies, we used a direct structure-function for analysis for individual geniculate neurons in normal cats. This was accomplished by electrophysiological characterization of the neuron followed by intracellular iontophoresis of horseradish peroxidase into the same neuron. By this technique, we demonstrated that W-, X-, and Y-cells have distinctive morphological features in the lateral geniculate nucleus of the act. We have extended this analysis in cats reared with monocular eyelid suture to 24 geniculate neurons innervated by the sutured eye in lamina A or A1. Ten of the 24 neurons (42%) had abnormal structure-function relationships. All but 1 of the normal cells were X-cells. Abnormalities included: (1) Y-cells with normal physiology but abnormally small somata; (2) Y-cells with abnormal physiology and morphology, including poor responsiveness and unusually thin, tortuous, and beaded dendrites; (3) visually unresponsive cells with morphology similar to that of the physiologically abnormal Y-cells; and (4) cells with the physiology of normal X-cells but the morphology of normal Y-cells. Furthermore, soma size measurements indicate that the abnormally small somata found in deprived geniculate laminae result from a selective effect on Y-cells.
机译:猫的视网膜-成纤维-皮层通路由至少三个平行通道组成。这些通道(W,X和Y细胞)中的神经元具有不同的生理特性。在较早的研究中,我们使用直接结构功能来分析正常猫中单个膝状神经元。这是通过神经元的电生理学表征,然后将辣根过氧化物酶进行胞内离子电渗入同一神经元来完成的。通过这项技术,我们证明了W,X和Y细胞在该行为的外侧膝状体核中具有独特的形态特征。我们将单眼皮缝合的猫的这一分析扩展到了由A或A1层的缝合眼支配的24个膝状神经元。 24个神经元中有10个(42%)具有异常的结构-功能关系。除1个正常细胞外,所有其他细胞均为X细胞。异常包括:(1)生理正常但胞体小异常的Y细胞; (2)Y细胞具有异常的生理学和形态,包括反应性差和异常稀薄,曲折和串珠的树突; (3)视觉上无反应的细胞,其形态类似于生理异常的Y细胞; (4)具有正常X细胞生理性但正常Y细胞形态的细胞。此外,体细胞大小的测量结果表明,在被剥夺的膝状薄片中发现的异常小的躯体是由对Y细胞的选择性作用导致的。

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