[1] Peng Q, Liu ShY, Ren PX. A histological observation on the retinas from neonatal mice of different day-ages[J].Chinese Journal of Ocular Fundus Diseaes,1999,15(3):174-176.(in Chinese)
彭清,刘舒娅,任佩贤.不同日龄新生小鼠视网膜组织学观察[J]. 中华眼底病杂志,1999,15(3):174-176.
[2] Cai ZhM, Chen RH, Chen XM. The light and electron microscopy observation of the retina in human fetus[J].Chinese Journal of Anatomy, 1991,14(3):212-215.(in Chinese)
蔡兆明,陈瑞华,陈小铭. 人胎视网膜发生的光镜和电镜观察[J]. 解剖学杂志,1991,14(3):212-215.
[3]Le RD, Rayner K, Rex M, et al. The transcription factor cSox2 and neuropeptide Y define a novel subgroup of amacrine cells in the retina[J]. J Anat, 2002,200(1):51-56.
[4] Yin YY, Hua Q. Retinal mosaics related to eye development and formation[J]. Progress in Biochemistry and Biophysics, 2001,28(2):137-39.(in Chinese)
殷咏仪,华茜. 视网膜发育与形成的“镶嵌模型”[J]. 生物化学与生物物理进展,2001,28(2):137-139.
[5]Liang SY, Lee GA, Shields D. Self-tonometry in glaucoma management——past,present and future[J]. Surv Ophthalmol, 2009,54(4):450-462.
[6]Avilion AA, Nicolis SK, Pevny LH, et al. Multipotent cell lineages in early mouse development depend on Sox2 function[J]. Genes Dev, 2003, 17(1):126-140.
[7]Moriarty P,Dickson AJ,Erichsen JT,et al. Protein kinase C isoenzyme expression in retinal cells[J].Ophthalmic Res,2000,32(2-3):57-60.
[8] Huang XY, Yin ZhQ, Wang ShJ, et al. Distribution of stem cells of optic cup in rat embryos[J]. Acta Academiae Medicinae Mlitaris Tertiae, 2005,27(6):504-506.(in Chinese)
黄小勇,阴正勤,王仕军,等.大鼠胚胎视杯视网膜干细胞的分布研究[J].第三军医大学学报,2005,27(6):504-506.
[9]Sun X, Jiang R, Zhang Y, et al. Gene expression and differentiation characteristics in mice E13.5 and E17.5 neural retinal progenitors[J]. Mol Vis, 2009, 2(15):2503-2514.
[10]Suzuki S, KaneKo A. Identification of bipolar cell subtypes by protein kinase c-like immunoreactivity in the goldfish retina[J]. Vis Neurosci,1990,5(3):223-230.[11]Meyer JS, Katz ML, Maruniak JA, et al. Embryonic stem cell-derived neural progenitors incorporate into degenerating retina and enhance survival of host photoreceptors[J]. Stem Cells, 2006,24(2):274-283.
[12]Agathocleous M, Iordanova I, Willardsen MI, et al. A directional Wnt/beta-catenin-Sox2-proneural pathway regulates the transition from proliferation to differentiation in the Xenopus retina[J].Development, 2009, 136(19):3289-3299.
[13]Domyan ET, Ferretti E, Throckmorton K, et al. Signaling through BMP receptors promotes respiratory identity in the foregut via repression of Sox2[J]. Development, 2011, 138(5):971-981.
[14]Cavallaro M, Mariani J, Lancini C, et al. Impaired generation of mature neurons by neural stem cells from hypomorphic Sox2 mutants[J]. Development, 2008, 135(3):541-557.
[15]Ferri AL, Cavallaro M, Braida D, et al. Sox2 deficiency causes neurodegeneration and impaired neurogenesis in the adult mouse brain[J].Development, 2004, 131(15):3805-3819.
[16]Lin YP, Ouchi Y, Satoh S, et al. Sox2 plays a role in the induction of amacrine and Müller glial cells in mouse retinal progenitor cells[J]. Invest Ophthalmol Vis Sci, 2009, 50(1):68-74.
[17]Taranova OV, Magness ST, Fagan BM, et al. SOX2 is a dose-dependent regulator of retinal neural progenitor competence[J]. Genes Dev, 2006, 20(9):1187-1202.[18]Jeon CJ, Strettoi E, Masland RH. The major cell populations of the mouse retina[J]. Neurosci, 1998,18(21):8936-8946.
[19]Wässle H, Puller C, Müller F, et al. Cone contacts, mosaics, and territories of bipolar cells in the mouse retina[J]. Neurosci, 2009, 29(1):106-117. |