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Pathways

CROSS-SPECIES ANATOMY - ANNOTATIONS

The Basic subset of the UBERON integrated, cross-species anatomy ontology is downloaded weekly from http://berkeleybop.org/ontologies/uberon/basic.obo. For more information about this ontology see the "About" page on the UBERON website at http://uberon.github.io/about.html.

Term:cardiogenic splanchnic mesoderm
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Accession:UBERON:0007005 term browser browse the term
Definition:The splanchnic mesoderm in the cardiogenic region where the heart develops; it gives rise to endocardial heart tubes that fuse to form the primordial cardiac tube, the heart primordium[web]. Two migratory heart primordia that move ventrally during the course of neurulation, and then fuse[XAO].
Synonyms:exact_synonym: cardiogenic splanchnopleure
 related_synonym: cardiac mesoderm;   cardiogenic mesoderm;   cardiogenic region;   heart primordia
 xref: AAO:0011021;   BILA:0000051;   EFO:0000315;   EHDAA2:0000214;   EHDAA:385;   FMA:293143;   SCTID:360387000;   VHOG:0001641;   XAO:0000235



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Term paths to the root
Path 1
Term Annotations click to browse term
  UBERON ontology 0
    anatomical entity 0
      material anatomical entity 0
        anatomical structure 0
          mesoderm-derived structure 0
            cardiogenic splanchnic mesoderm 0
              heart primordium + 0
Path 2
Term Annotations click to browse term
  UBERON ontology 0
    anatomical entity 0
      material anatomical entity 0
        anatomical structure 0
          multicellular anatomical structure 0
            multicellular organism 0
              embryo 0
                embryonic structure 0
                  epiblast (generic) 0
                    germ layer / neural crest 0
                      germ layer 0
                        mesoderm 0
                          mesoderm-derived structure 0
                            lateral plate mesoderm 0
                              primary heart field 0
                                cardiogenic splanchnic mesoderm 0
                                  heart primordium + 0
paths to the root