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Stefan Bagheri-Fam

Showing results (1-10 of 36) with videos related to

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Brain Research. Developmental Brain Research|May 18, 2005
SOX13 is up-regulated in the developing mouse neuroepithelium and identifies a sub-population of differentiating neuronsYi Wang, Stefan Bagheri-Fam, Vincent R Harley
Data in Brief|September 23, 2016
Dataset of differentially expressed genes from SOX9 over-expressing NT2/D1 cellsLouisa Ludbrook, Dimuthu Alankarage, Stefan Bagheri-Fam, et al.
Cellular and Molecular Life Sciences : CMLS|September 17, 2022
SOX9 in organogenesis: shared and unique transcriptional functionsZhenhua Ming, Brittany Vining, Stefan Bagheri-Fam, et al.
Genes|April 3, 2021
Diverse Regulation but Conserved Function: SOX9 in Vertebrate Sex DeterminationBrittany Vining, Zhenhua Ming, Stefan Bagheri-Fam, et al.
The International Journal of Biochemistry & Cell Biology|July 21, 2009
Conserved regulatory modules in the Sox9 testis-specific enhancer predict roles for SOX, TCF/LEF, Forkhead, DMRT, and GATA proteins in vertebrate sex determinationStefan Bagheri-Fam, Andrew H Sinclair, Peter Koopman, et al.
Data in Brief|May 20, 2022
Dataset of differentially expressed genes in mouse P12 testes in response to the loss of ATRX in Sertoli cellsStefan Bagheri-Fam, Dimuthu Alankarage, Emily R Frost, et al.
Human Molecular Genetics|December 11, 2020
Heterozygous deletion of Sox9 in mouse mimics the gonadal sex reversal phenotype associated with campomelic dysplasia in humansStefan Bagheri-Fam, Alexander N Combes, Cheuk K Ling, et al.
Frontiers in Cell and Developmental Biology|March 1, 2024
A role for TRPC3 in mammalian testis developmentZhenhua Ming, Stefan Bagheri-Fam, Emily R Frost, et al.
Developmental Biology|April 2, 2008
Sox9 is required for invagination of the otic placode in miceFrancisco Barrionuevo, Angela Naumann, Stefan Bagheri-Fam, et al.
Frontiers in Cell and Developmental Biology|October 30, 2024
Corrigendum: A role for TRPC3 in mammalian testis developmentZhenhua Ming, Stefan Bagheri-Fam, Emily R Frost, et al.
Pageof 4

Showing results (1-10 of 36) with videos related to

Sort By:
Pageof 4
Brain Research. Developmental Brain Research|May 18, 2005
SOX13 is up-regulated in the developing mouse neuroepithelium and identifies a sub-population of differentiating neuronsYi Wang, Stefan Bagheri-Fam, Vincent R Harley
Data in Brief|September 23, 2016
Dataset of differentially expressed genes from SOX9 over-expressing NT2/D1 cellsLouisa Ludbrook, Dimuthu Alankarage, Stefan Bagheri-Fam, et al.
Cellular and Molecular Life Sciences : CMLS|September 17, 2022
SOX9 in organogenesis: shared and unique transcriptional functionsZhenhua Ming, Brittany Vining, Stefan Bagheri-Fam, et al.
Genes|April 3, 2021
Diverse Regulation but Conserved Function: SOX9 in Vertebrate Sex DeterminationBrittany Vining, Zhenhua Ming, Stefan Bagheri-Fam, et al.
The International Journal of Biochemistry & Cell Biology|July 21, 2009
Conserved regulatory modules in the Sox9 testis-specific enhancer predict roles for SOX, TCF/LEF, Forkhead, DMRT, and GATA proteins in vertebrate sex determinationStefan Bagheri-Fam, Andrew H Sinclair, Peter Koopman, et al.
Data in Brief|May 20, 2022
Dataset of differentially expressed genes in mouse P12 testes in response to the loss of ATRX in Sertoli cellsStefan Bagheri-Fam, Dimuthu Alankarage, Emily R Frost, et al.
Human Molecular Genetics|December 11, 2020
Heterozygous deletion of Sox9 in mouse mimics the gonadal sex reversal phenotype associated with campomelic dysplasia in humansStefan Bagheri-Fam, Alexander N Combes, Cheuk K Ling, et al.
Frontiers in Cell and Developmental Biology|March 1, 2024
A role for TRPC3 in mammalian testis developmentZhenhua Ming, Stefan Bagheri-Fam, Emily R Frost, et al.
Developmental Biology|April 2, 2008
Sox9 is required for invagination of the otic placode in miceFrancisco Barrionuevo, Angela Naumann, Stefan Bagheri-Fam, et al.
Frontiers in Cell and Developmental Biology|October 30, 2024
Corrigendum: A role for TRPC3 in mammalian testis developmentZhenhua Ming, Stefan Bagheri-Fam, Emily R Frost, et al.
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