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- B2d948c22476d0f2b8442a9f46781d18f date_retrieved "2012-09-17" @default.
- B2d948c22476d0f2b8442a9f46781d18f external_class "VHOG:0000070" @default.
- B2d948c22476d0f2b8442a9f46781d18f ontology "VHOG" @default.
- B2d948c22476d0f2b8442a9f46781d18f source "DOI:10.1016/S0959-4388(99)00003-3 Holland LZ and Holland ND, Chordate origins of the vertebrate central nervous system. Current Opinion in Neurobiology (1999)" @default.
- B2d948c22476d0f2b8442a9f46781d18f source "http://bgee.unil.ch/" @default.
- B2d948c22476d0f2b8442a9f46781d18f type Axiom @default.
- B2d948c22476d0f2b8442a9f46781d18f annotatedProperty UBPROP_0000003 @default.
- B2d948c22476d0f2b8442a9f46781d18f annotatedSource UBERON_0002028 @default.
- B2d948c22476d0f2b8442a9f46781d18f annotatedTarget "Fine structural, computerized three-dimensional (3D) mapping of cell connectivity in the amphioxus nervous system and comparative molecular genetic studies of amphioxus and tunicates have provided recent insights into the phylogenetic origin of the vertebrate nervous system. The results suggest that several of the genetic mechanisms for establishing and patterning the vertebrate nervous system already operated in the ancestral chordate and that the nerve cord of the proximate invertebrate ancestor of the vertebrates included a diencephalon, midbrain, hindbrain, and spinal cord.[well established][VHOG]" @default.