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鲤鱼视网膜中双极-双极耦合的特征

Characteristics of bipolar-bipolar coupling in the carp retina.

作者信息

Saito T, Kujiraoka T

机构信息

University of Tsukuba, Institute of Biological Sciences, Ibaraki, Japan.

出版信息

J Gen Physiol. 1988 Feb;91(2):275-87. doi: 10.1085/jgp.91.2.275.

Abstract

ON and OFF bipolar cells were identified in the light-adapted carp retina by means of intracellular recording and Lucifer yellow dye injection. The receptive field centers, determined by measuring the response amplitudes obtained by centered spots of different diameters, were 0.3-1.0 mm for ON bipolar cells and 0.3-0.4 mm for OFF bipolar cells. These central receptive field values were much larger than the dendritic field diameters measured by histological methods. Simultaneous intracellular recordings were made from pairs of neighboring bipolar cells. Current of either polarity injected into one member of a bipolar cell pair elicited a sign-conserving, sustained potential change in the other bipolar cell. The coupling efficiency was nearly identical for both depolarizing and hyperpolarizing currents. The maximum separation of coupled bipolar cells was approximately 130 microns. This electrical coupling was reciprocal and summative, and it was observed in cell types of similar function and morphology. Dye coupling was observed in 4 out of 34 stained cells. These results strongly suggest that there is a spatial summation of signals at the level of bipolar cells, which makes their central receptive fields much larger than their dendritic fields.

摘要

通过细胞内记录和荧光黄染料注射,在明适应的鲤鱼视网膜中识别出了ON型和OFF型双极细胞。通过测量不同直径的中心光斑所获得的反应幅度来确定感受野中心,ON型双极细胞的感受野中心为0.3 - 1.0毫米,OFF型双极细胞的为0.3 - 0.4毫米。这些中心感受野值比通过组织学方法测量的树突野直径大得多。对相邻的双极细胞对进行了同步细胞内记录。向双极细胞对中的一个细胞注入任何一种极性的电流,都会在另一个双极细胞中引起符号保持的持续电位变化。去极化电流和超极化电流的耦合效率几乎相同。耦合双极细胞的最大间距约为130微米。这种电耦合是相互的且具有总和性,并且在功能和形态相似的细胞类型中观察到。在34个染色细胞中有4个观察到了染料耦合。这些结果强烈表明,在双极细胞水平存在信号的空间总和,这使得它们的中心感受野比树突野大得多。

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本文引用的文献

1
Electrical coupling between bipolar cells in carp retina.鲤鱼视网膜双极细胞的电耦合。
Proc Natl Acad Sci U S A. 1986 Jun;83(11):4063-6. doi: 10.1073/pnas.83.11.4063.
3
Spatial organization of catfish retinal neurons. I. Single- and random-bar stimulation.
J Neurophysiol. 1980 Mar;43(3):807-31. doi: 10.1152/jn.1980.43.3.807.
6
Interbipolar contacts in the dorsal inner plexiform layer in the retina of Callionymus lyra L.
J Ultrastruct Res. 1983 Jun;83(3):303-11. doi: 10.1016/s0022-5320(83)90137-5.
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Dye coupling between amacrine cells in carp retina.
Neurosci Lett. 1984 Sep 28;51(1):73-8. doi: 10.1016/0304-3940(84)90265-9.
10
Receptive fields of cones in the retina of the turtle.海龟视网膜中视锥细胞的感受野。
J Physiol. 1971 Apr;214(2):265-94. doi: 10.1113/jphysiol.1971.sp009432.

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