Jackson C G
J Morphol. 1981 Jan;167(1):65-90. doi: 10.1002/jmor.1051670107.
Prenatal development of the eye in a microphthalmic hamster strain ("anophthalmic white") is compared with established normal developmental periods. The mutant eye primordium is first distinguished at an average of ten gestational days (Period 6) by an incompletely invaginated optic cup, uniformly pseudostratified outer neuroepithelial layer and widely separated margins of the optic fissure. The outer layer of the mutant cup subsequently becomes abnormally thickened, especially posteriorly and midventrally, and, except in a few eyes with localized imperfect fusion, the optic fissure is unfused at twelve days (Period 9), by which time fusion is normally complete. At 13 to 15 days (Period 10-11) the fissure is unfused or irregularly fused in regions of variable location and extent. The occurrence of fissure fusion with concomitant loss of continuity between inner and outer epithelial layers is generally restricted to expanded anterior regions in 14-16 day (Periods 11-12) eyes. The presence of presumptive neural retina in the outer layer of the cup characterizes the mutant eye; and to varying degrees, in day 13-16 eyes, the presumptive neural retina (1) provides persistent continuity between the two cup layers, (2) forms both fused and unfused margins of the optic fissure, and (3) extends into an outer position of the optic cup. As early as 13 days (Period 10), nerve fibers are present in the outer layer of the cup, and by the last prenatal and first postnatal days (Period 12), ectopic nerve fiber bundles are widely distributed.
将一种小眼仓鼠品系(“无眼白”)眼睛的产前发育与已确定的正常发育时期进行比较。突变眼原基最初在平均妊娠10天(第6期)时被区分出来,其特征为视杯不完全内陷、外层神经上皮均匀假复层以及视裂边缘广泛分离。突变视杯的外层随后异常增厚,尤其是在后部和腹中部,并且除了少数局部融合不完全的眼睛外,在12天(第9期)时视裂未融合,而此时正常情况下融合已完成。在13至15天(第10 - 11期),视裂在不同位置和程度的区域未融合或不规则融合。视裂融合并伴有内外上皮层连续性丧失的情况通常仅限于14 - 16天(第11 - 12期)眼睛的前部扩展区域。视杯外层中存在假定的神经视网膜是突变眼的特征;在13 - 16天的眼睛中,假定的神经视网膜在不同程度上(1)在视杯两层之间提供持续的连续性,(2)形成视裂的融合和未融合边缘,(3)延伸到视杯的外部位置。早在13天(第10期),视杯外层就存在神经纤维,到产前最后一天和出生后第一天(第12期),异位神经纤维束广泛分布。