Development of outer segments and synapses in the rabbit retina

带状突触 突触发生 内丛状层 生物 突触 突触小泡 视网膜 外丛状层 生物物理学 树突棘 解剖 神经科学 小泡 海马结构 遗传学
作者
Craig B. McArdle,John E. Dowling,Richard H. Masland
出处
期刊:Journal of comparative neurology [Wiley]
卷期号:175 (3): 253-273 被引量:187
标识
DOI:10.1002/cne.901750302
摘要

Abstract The peripheral retina of rabbits aged 0 to 60 days was studied by electron microscopy. Ribbon and conventional synaptogenesis was studied with serial sections, and the density of synapses of the inner plexiform layer was measured on large (1,500μm 2 ) montages. Photoreceptor and bipolar ribbon synapses seem to develop similarly in that processes of the prospective dyad or triad contact the presynaptic ribbon‐containing terminal one at a time. No statistically significant difference in the lengths of ribbon lamellae was found at 11 and 30 days. Conventional synapses appear to result from the aggregation of synaptic vesicles on one side of junctions that first existed as symmetrical membrane densities without vesicles. The length of the synaptic membrane specialization remains constant between 0 and 30 days. The density of inner plexiform layer conventional synapses remains at a low and roughly constant level from 0 to 9 days, after which there is an abrupt increase to a plateau at about 20 days. After nine days the density of ribbon synapses also increases, with an initially steep time course similar to that of conventional synapses. All subcategories of synapse studied (amacrine‐to‐amacrine, amacrine‐to‐bipolar, serial, and reciprocal) participate in the general increase between 9 and 20 days. Functional circuits of the inner plexiform layer thus seem to be assembled primarily during the second and third weeks of life.
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