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Development (Cambridge, England)
|
November 21, 1997
Role of Hoxa-2 in axon pathfinding and rostral hindbrain patterning
A Gavalas, M Davenne, A Lumsden, et al.
Development (Cambridge, England)
|
May 9, 1998
Hoxa1 and Hoxb1 synergize in patterning the hindbrain, cranial nerves and second pharyngeal arch
A Gavalas, M Studer, A Lumsden, et al.
Cell
|
December 31, 1993
A homeotic transformation is generated in the rostral branchial region of the head by disruption of Hoxa-2, which acts as a selector gene
F M Rijli, M Mark, S Lakkaraju, et al.
Chromosoma
|
February 1, 1991
Two dispersed highly repeated DNA families of Triturus vulgaris meridionalis (Amphibia, Urodela) are widely conserved among Salamandridae
R Vignali, F M Rijli, R Batistoni, et al.
Development (Cambridge, England)
|
February 1, 1996
Functional cooperation between the non-paralogous genes Hoxa-10 and Hoxd-11 in the developing forelimb and axial skeleton
B Favier, F M Rijli, C Fromental-Ramain, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience
|
July 24, 2001
Generation of a novel functional neuronal circuit in Hoxa1 mutant mice
E D del Toro, V Borday, M Davenne, et al.
Developmental Biology
|
August 1, 1996
The expression pattern of the mouse receptor tyrosine kinase gene MDK1 is conserved through evolution and requires Hoxa-2 for rhombomere-specific expression in mouse embryos
R Taneja, B Thisse, F M Rijli, et al.
Development (Cambridge, England)
|
November 10, 1998
Hoxa1 and Krox-20 synergize to control the development of rhombomere 3
F Helmbacher, C Pujades, C Desmarquet, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
August 29, 1995
Cryptorchidism and homeotic transformations of spinal nerves and vertebrae in Hoxa-10 mutant mice
F M Rijli, R Matyas, M Pellegrini, et al.
Neuron
|
May 7, 1999
Hoxa2 and Hoxb2 control dorsoventral patterns of neuronal development in the rostral hindbrain
M Davenne, M K Maconochie, R Neun, et al.
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of 3
Search research articles
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Showing results (11-20 of 22) with videos related to
Sort By:
Page
of 3
Development (Cambridge, England)
|
November 21, 1997
Role of Hoxa-2 in axon pathfinding and rostral hindbrain patterning
A Gavalas, M Davenne, A Lumsden, et al.
Development (Cambridge, England)
|
May 9, 1998
Hoxa1 and Hoxb1 synergize in patterning the hindbrain, cranial nerves and second pharyngeal arch
A Gavalas, M Studer, A Lumsden, et al.
Cell
|
December 31, 1993
A homeotic transformation is generated in the rostral branchial region of the head by disruption of Hoxa-2, which acts as a selector gene
F M Rijli, M Mark, S Lakkaraju, et al.
Chromosoma
|
February 1, 1991
Two dispersed highly repeated DNA families of Triturus vulgaris meridionalis (Amphibia, Urodela) are widely conserved among Salamandridae
R Vignali, F M Rijli, R Batistoni, et al.
Development (Cambridge, England)
|
February 1, 1996
Functional cooperation between the non-paralogous genes Hoxa-10 and Hoxd-11 in the developing forelimb and axial skeleton
B Favier, F M Rijli, C Fromental-Ramain, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience
|
July 24, 2001
Generation of a novel functional neuronal circuit in Hoxa1 mutant mice
E D del Toro, V Borday, M Davenne, et al.
Developmental Biology
|
August 1, 1996
The expression pattern of the mouse receptor tyrosine kinase gene MDK1 is conserved through evolution and requires Hoxa-2 for rhombomere-specific expression in mouse embryos
R Taneja, B Thisse, F M Rijli, et al.
Development (Cambridge, England)
|
November 10, 1998
Hoxa1 and Krox-20 synergize to control the development of rhombomere 3
F Helmbacher, C Pujades, C Desmarquet, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
August 29, 1995
Cryptorchidism and homeotic transformations of spinal nerves and vertebrae in Hoxa-10 mutant mice
F M Rijli, R Matyas, M Pellegrini, et al.
Neuron
|
May 7, 1999
Hoxa2 and Hoxb2 control dorsoventral patterns of neuronal development in the rostral hindbrain
M Davenne, M K Maconochie, R Neun, et al.
Page
of 3