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兔视网膜中视锥外节和突触的发育

Development of outer segments and synapses in the rabbit retina.

作者信息

McArdle C B, Dowling J E, Masland R H

出版信息

J Comp Neurol. 1977 Oct 1;175(3):253-74. doi: 10.1002/cne.901750302.

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 (1,500 micrometer 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 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.

摘要

利用电子显微镜对0至60日龄家兔的周边视网膜进行了研究。通过连续切片研究了带状突触和传统突触的形成过程,并在大面积(1500平方微米)的图像上测量了内网状层突触的密度。光感受器和双极带状突触的发育似乎相似,即预期的二联体或三联体的突起一次与含有突触前带状物的终末接触。在11天和30天时,带状薄片的长度没有发现统计学上的显著差异。传统突触似乎是由突触小泡在连接一侧的聚集形成的,这些连接最初是以没有小泡的对称膜密度存在的。突触膜特化的长度在0至30天之间变化。内网状层传统突触的密度在0至9天保持在低水平且大致恒定,之后在约20天突然增加至平稳状态。9天后,带状突触的密度也增加,其最初的陡峭时间进程与传统突触相似。所研究的所有突触亚类(无长突细胞间、无长突细胞与双极细胞间、串联和交互)都参与了9至20天之间的总体增加。因此,内网状层的功能回路似乎主要在生命的第二和第三周形成。

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