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- B090c1f2a7949d13788dd45b1a2ac70a7 date_retrieved "2012-09-17" @default.
- B090c1f2a7949d13788dd45b1a2ac70a7 external_class "VHOG:0001170" @default.
- B090c1f2a7949d13788dd45b1a2ac70a7 ontology "VHOG" @default.
- B090c1f2a7949d13788dd45b1a2ac70a7 source "ISBN:978-0030223693 Liem KF, Bemis WE, Walker WF, Grande L, Functional Anatomy of the Vertebrates: An Evolutionary Perspective (2001) p.429" @default.
- B090c1f2a7949d13788dd45b1a2ac70a7 source "http://bgee.unil.ch/" @default.
- B090c1f2a7949d13788dd45b1a2ac70a7 type Axiom @default.
- B090c1f2a7949d13788dd45b1a2ac70a7 annotatedProperty UBPROP_0000003 @default.
- B090c1f2a7949d13788dd45b1a2ac70a7 annotatedSource UBERON_0001789 @default.
- B090c1f2a7949d13788dd45b1a2ac70a7 annotatedTarget "(...) an essentially similar sequence of events occurs during the embryonic development of the vertebrate eye. The eye initially develops as a single median evagination of the diencephalon that soon bifurcates to form the paired optic vesicles. As each optic vesicle grows towards the body surface, its proximal part narrows as the optic stalk, and its distal part invaginates to form a two-layered optic cup. (...) The outer layer of the optic cup becomes the pigment layer of the retina, whereas the inner layer differentiates into the photoreceptive cells and neuronal layers of the retina.[well established][VHOG]" @default.