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Molecular Psychiatry
|
December 3, 2014
Molecular underpinnings of prefrontal cortex development in rodents provide insights into the etiology of neurodevelopmental disorders
D Schubert, G J M Martens, S M Kolk
Current Genomics
|
May 5, 2009
Genetic and environmental factors in complex neurodevelopmental disorders
K M J van Loo, G J M Martens
Translational Psychiatry
|
September 22, 2017
Oxidative stress, prefrontal cortex hypomyelination and cognitive symptoms in schizophrenia
D A Maas, A Vallès, G J M Martens
Annals of the New York Academy of Sciences
|
May 22, 2009
Using transgenic animal models in neuroendocrine research: lessons from Xenopus laevis
W J J M Scheenen, E J R Jansen, E W Roubos, et al.
Journal of Microscopy
|
April 9, 2005
A fast method to study the secretory activity of neuroendocrine cells at the ultrastructural level
F Van Herp, T Coenen, H P M Geurts, et al.
Cell and Tissue Research
|
July 8, 2003
NPY-mRNA expressions in the nucleus accumbens, caudate putamen and cerebral cortex of apomorphine-susceptible and apomorphine-unsusceptible rats
E W Roubos, W P J M Spooren, G J M Martens, et al.
Brain Pathology (Zurich, Switzerland)
|
December 31, 2016
Integrated molecular landscape of amyotrophic lateral sclerosis provides insights into disease etiology
C J H M Klemann, J E Visser, L Van Den Bosch, et al.
Cytogenetic and Genome Research
|
June 26, 2004
Isolation and characterization of the Xenopus laevis orthologs of the human papillary renal cell carcinoma-associated genes PRCC and MAD2L2 (MAD2B)
W H van den Hurk, G J M Martens, A Geurts van Kessel, et al.
Endocrinology
|
October 25, 2008
Identification of proSAAS homologs in lower vertebrates: conservation of hydrophobic helices and convertase-inhibiting sequences
H Kudo, J Liu, E J R Jansen, et al.
Journal of Chromatography. A
|
December 5, 2002
Automated nanoflow liquid chromatography-tandem mass spectrometry for a differential display proteomic study on Xenopus laevis neuroendocrine cells
B Devreese, K P C Janssen, F Vanrobaeys, et al.
Page
of 3
Search research articles
Search
Showing results (1-10 of 21) with videos related to
Sort By:
Page
of 3
Molecular Psychiatry
|
December 3, 2014
Molecular underpinnings of prefrontal cortex development in rodents provide insights into the etiology of neurodevelopmental disorders
D Schubert, G J M Martens, S M Kolk
Current Genomics
|
May 5, 2009
Genetic and environmental factors in complex neurodevelopmental disorders
K M J van Loo, G J M Martens
Translational Psychiatry
|
September 22, 2017
Oxidative stress, prefrontal cortex hypomyelination and cognitive symptoms in schizophrenia
D A Maas, A Vallès, G J M Martens
Annals of the New York Academy of Sciences
|
May 22, 2009
Using transgenic animal models in neuroendocrine research: lessons from Xenopus laevis
W J J M Scheenen, E J R Jansen, E W Roubos, et al.
Journal of Microscopy
|
April 9, 2005
A fast method to study the secretory activity of neuroendocrine cells at the ultrastructural level
F Van Herp, T Coenen, H P M Geurts, et al.
Cell and Tissue Research
|
July 8, 2003
NPY-mRNA expressions in the nucleus accumbens, caudate putamen and cerebral cortex of apomorphine-susceptible and apomorphine-unsusceptible rats
E W Roubos, W P J M Spooren, G J M Martens, et al.
Brain Pathology (Zurich, Switzerland)
|
December 31, 2016
Integrated molecular landscape of amyotrophic lateral sclerosis provides insights into disease etiology
C J H M Klemann, J E Visser, L Van Den Bosch, et al.
Cytogenetic and Genome Research
|
June 26, 2004
Isolation and characterization of the Xenopus laevis orthologs of the human papillary renal cell carcinoma-associated genes PRCC and MAD2L2 (MAD2B)
W H van den Hurk, G J M Martens, A Geurts van Kessel, et al.
Endocrinology
|
October 25, 2008
Identification of proSAAS homologs in lower vertebrates: conservation of hydrophobic helices and convertase-inhibiting sequences
H Kudo, J Liu, E J R Jansen, et al.
Journal of Chromatography. A
|
December 5, 2002
Automated nanoflow liquid chromatography-tandem mass spectrometry for a differential display proteomic study on Xenopus laevis neuroendocrine cells
B Devreese, K P C Janssen, F Vanrobaeys, et al.
Page
of 3