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The distribution of the preferred directions of the ON–OFF direction selective ganglion cells in the rabbit retina requires refinement after eye opening

机译:睁眼后需要细化兔视网膜中开-关方向选择性神经节细胞的优选方向分布

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摘要

The ON–OFF direction selective ganglion cells (DSGCs) in the mammalian retina respond differentially for an object moving in different directions. DSGCs can be further segregated into four functional subtypes, namely those responsible for the detection of motion in the superior, inferior, anterior, and posterior directions of the visual field. Although it has been known that the basic neural circuit of direction selectivity is established at around the time of eye opening, it is less known if the four DSGC subtypes can be unambiguously distinguished at this time and whether their preferred directions are aligned with four canonical axes at this developmental stage. By examining the preferred directions of DSGCs in P10-12 rabbit retinas and characterizing their distribution pattern, we have shown that the preferred directions of DSGCs at around the time of eye opening are not distinctly segregated but rather are diffusely distributed along the four canonical axes. Similar results were found in the mouse retina by reanalyzing previously published data. Furthermore, taking into account the fact that the direction tuning strength of DSGCs at P10-12 is weaker than that in adults, this was found not to be correlated with their preferred directions, which suggests that the maturations of direction selectivity and preferred direction are independent processes. In addition, we also found that the subtypes of DSGCs, which do not display tracer coupling pattern in the adult, show extensive coupling at P10-12. Taken together, the present study supports that the significant refinement after eye opening is required for the development of the four functional DSGC subtypes in the rabbit retina.
机译:哺乳动物视网膜中的ON-OFF方向选择性神经节细胞(DSGC)对沿不同方向移动的对象有不同的响应。 DSGC可以进一步分为四个功能亚型,即负责检测视野上,下,前和后方向运动的功能亚型。尽管众所周知,方向选择性的基本神经回路是在睁眼时建立的,但鲜为人知的是,此时是否可以清楚地区分四种DSGC亚型,以及它们的首选方向是否与四个规范轴对齐在这个发展阶段。通过检查P10-12兔视网膜中DSGC的优选方向并表征其分布模式,我们发现,在睁眼时,DSGC的优选方向没有明显分离,而是沿四个规范轴分散分布。通过重新分析以前发布的数据,在小鼠视网膜中发现了相似的结果。此外,考虑到DSGCs在P10-12的方向调节强度比成人弱,因此发现这与它们的优选方向无关,这表明方向选择性和优选方向的成熟是独立的流程。此外,我们还发现,在成年人中不显示示踪剂偶联模式的DSGC亚型在P10-12处显示出广泛的偶联。综上所述,本研究支持兔眼中四种功能性DSGC亚型的发育需要睁眼后的显着改善。

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