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非洲爪蟾中顶盖间神经元可塑性:尽管儿茶酚胺耗竭仍持续存在

Intertectal neuronal plasticity in Xenopus laevis: persistence despite catecholamine depletion.

作者信息

Udin S B, Keating M J, Dawes E A, Grant S, Deakin J F

出版信息

Brain Res. 1985 Mar;351(1):81-8. doi: 10.1016/0165-3806(85)90233-0.

Abstract

In normal Xenopus, the tectum receives a direct projection from the contralateral retina and an indirect projection, via the intertectal system, from the ipsilateral eye. The two maps of binocular visual space, at each tectum, are in register. If one eye is rotated during larval development, the ipsilateral visuotectal projection compensates by changing its orientation. Rearrangement of the intertectal system brings the ipsilateral map back into register with the contralateral map. We sought to determine whether this intertectal plasticity required normal levels of brain monoamines. Animals received an eye rotation between stages 55-63 of larval life and were then placed in one of 3 groups. A first control group received no further treatment. A second control group was given intraventricular injections of ascorbate vehicle. The experimental group was given intraventricular injections of 6-hydroxydopamine in ascorbate vehicle. Two to 3 months after metamorphosis, visuotectal projections were mapped electrophysiologically and the brains were assayed for monoamines. Intertectal plasticity occurred in all 3 groups of animals, including animals in which brain catecholamine levels were severely reduced. We conclude that normal levels of brain catecholamines are not required for this form of neural plasticity.

摘要

在正常的非洲爪蟾中,视顶盖接受来自对侧视网膜的直接投射以及经由顶盖间系统来自同侧眼的间接投射。在每个视顶盖上,双眼视觉空间的这两个图谱是对齐的。如果在幼体发育期间一只眼睛发生旋转,同侧的视顶盖投射会通过改变其方向来进行补偿。顶盖间系统的重新排列会使同侧图谱与对侧图谱重新对齐。我们试图确定这种顶盖间可塑性是否需要正常水平的脑单胺。动物在幼体期第55 - 63阶段接受了眼睛旋转,然后被分为3组之一。第一个对照组不再接受进一步处理。第二个对照组经脑室注射抗坏血酸载体。实验组经脑室注射溶解于抗坏血酸载体中的6 - 羟基多巴胺。变态发育后两到三个月,用电生理学方法绘制视顶盖投射图谱,并对大脑进行单胺含量测定。在所有3组动物中都出现了顶盖间可塑性,包括脑儿茶酚胺水平严重降低的动物。我们得出结论,这种形式的神经可塑性不需要正常水平的脑儿茶酚胺。

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