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Author Details
Full Name
Christopher R R Bjornson
Affiliation
Stanford University School of Medicine
ORCID
Career Start Year
1999
Papers
11
H Index
10
Expertise
CM4AI Collaborator
PMID
Paper Title
Journal Title
Published Year
24781921
Recombinase-mediated reprogramming and dystrophin gene addition in mdx mouse induced pluripotent stem cells.
PLoS One
2014
25030697
Lineage of origin in rhabdomyosarcoma informs pharmacological response.
Genes Dev
2014
24781921
Recombinase-mediated reprogramming and dystrophin gene addition in mdx mouse induced pluripotent stem cells.
PLoS One
2014
25030697
Lineage of origin in rhabdomyosarcoma informs pharmacological response.
Genes Dev
2014
23639729
Myf5 expression during fetal myogenesis defines the developmental progenitors of adult satellite cells.
Dev Biol
2013
23639729
Myf5 expression during fetal myogenesis defines the developmental progenitors of adult satellite cells.
Dev Biol
2013
22045613
Notch signaling is necessary to maintain quiescence in adult muscle stem cells.
Stem Cells
2012
22045613
Notch signaling is necessary to maintain quiescence in adult muscle stem cells.
Stem Cells
2012
19332644
Biomarker system for studying muscle, stem cells, and cancer in vivo.
FASEB J
2009
19332644
Biomarker system for studying muscle, stem cells, and cancer in vivo.
FASEB J
2009
17507958
Ground-breaking stem-cell work has been reproduced.
Nature
2007
17507958
Ground-breaking stem-cell work has been reproduced.
Nature
2007
16198294
Eomesodermin is a localized maternal determinant required for endoderm induction in zebrafish.
Dev Cell
2005
16198294
Eomesodermin is a localized maternal determinant required for endoderm induction in zebrafish.
Dev Cell
2005
12042779
Hematopoietic potential of neural stem cells.
Nat Med
2002
12042779
Hematopoietic potential of neural stem cells.
Nat Med
2002
11017170
Skeletal myogenic potential of human and mouse neural stem cells.
Nat Neurosci
2000
11017170
Skeletal myogenic potential of human and mouse neural stem cells.
Nat Neurosci
2000
9915700
Turning brain into blood: a hematopoietic fate adopted by adult neural stem cells in vivo.
Science
1999
10212288
Epidermal and fibroblast growth factors behave as mitogenic regulators for a single multipotent stem cell-like population from the subventricular region of the adult mouse forebrain.
J Neurosci
1999
10212288
Epidermal and fibroblast growth factors behave as mitogenic regulators for a single multipotent stem cell-like population from the subventricular region of the adult mouse forebrain.
J Neurosci
1999
9915700
Turning brain into blood: a hematopoietic fate adopted by adult neural stem cells in vivo.
Science
1999
1 - 22 of 22
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