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Vax1 Plays an Indirect Role in the Etiology of Murine Cleft Palate
F. Geoghegan
,
G.M. Xavier
,
Anahid Ahmadi Birjandi
,
M. Seppala
,
M.T. Cobourne
Centre for Craniofacial & Regenerative Biology
Research output
:
Contribution to journal
›
Article
›
peer-review
13
Citations (Scopus)
361
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Dive into the research topics of 'Vax1 Plays an Indirect Role in the Etiology of Murine Cleft Palate'. Together they form a unique fingerprint.
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Medicine and Dentistry
Basal Forebrain
33%
Cell Proliferation
33%
Cleft Lip
33%
Cleft Palate
100%
Congenital Malformation
33%
Craniofacial Morphology
33%
Epiblast
33%
Face Development
33%
Hedgehog Signaling
33%
Holoprosencephaly
66%
Homeobox
33%
Hypothalamus
33%
Mesenchyme
33%
Multiple Malformation Syndrome
33%
Nasal Cavity
33%
Neural Plate
33%
Palate
66%
Sonic Hedgehog Protein
100%
Tongue
33%
Transcription Factor
66%
Biochemistry, Genetics and Molecular Biology
Candidate Gene
33%
Cell Proliferation
33%
Craniofacial Morphology
33%
Ectoderm
33%
Epiblast
33%
Face Development
33%
Hedgehog Signaling Pathway
33%
Homeobox
33%
Mesenchyme
33%
Mouse Model
33%
Mouse Mutant
100%
Murine
33%
Neural Plate
33%
Sonic Hedgehog
100%
Transcription Factor
66%
Wild Type
33%
Neuroscience
Basal Forebrain
20%
Cell Proliferation
20%
Cleft
100%
Craniofacial Morphology
20%
Epiblast
20%
Hedgehog Signaling Pathway
20%
Holoprosencephaly
40%
Homeobox
20%
Hypothalamus
20%
Lip
20%
Mesenchyme
20%
Neural Plate
20%
Neuroectoderm
20%
Palate
100%
Sonic Hedgehog
60%
Transcription Factors
40%
Upper Lip
20%
Pharmacology, Toxicology and Pharmaceutical Science
Cleft Lip
33%
Cleft Palate
100%
Congenital Malformation
33%
Holoprosencephaly
66%
Mouse Model
33%
Mouse Mutant
100%
Murine
33%
Sonic Hedgehog Protein
100%
Transcription Factor
66%