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Noboru Hiroi

Showing results (11-20 of 48) with videos related to

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Human Molecular Genetics|May 1, 2007
Pleiotropic impact of constitutive fosB inactivation on nicotine-induced behavioral alterations and stress-related traits in miceHongwen Zhu, MoonSook Lee, Soh Agatsuma, et al.
Biological Psychiatry|February 13, 2010
N-methyl-D-aspartic acid receptors on striatal neurons are essential for cocaine cue reactivity in miceSoh Agatsuma, Mai T Dang, Yuqing Li, et al.
Autism-Open Access|August 5, 2014
Mouse Models of 22q11.2-Associated Autism Spectrum DisorderNoboru Hiroi, Takeshi Hiramoto, Kathryn M Harper, et al.
Genomic Psychiatry : Advancing Science From Genes to Society|March 19, 2026
Prepartum bumetanide treatment reverses altered neonatal social communication but nonspecifically reduces postpubertal social behavior in a mouse model of fragile X syndromeYui Sakamoto, Takeshi Takano, Shuji Shimoyama, et al.
Journal of Chemical Neuroanatomy|June 6, 2002
Molecular dissection of dopamine receptor signalingNoboru Hiroi, Ana B Martín, Cristina Grande, et al.
Human Molecular Genetics|September 13, 2011
Tbx1: identification of a 22q11.2 gene as a risk factor for autism spectrum disorder in a mouse modelTakeshi Hiramoto, Gina Kang, Go Suzuki, et al.
Human Molecular Genetics|August 9, 2006
Monoamine oxidase A knockout mice exhibit impaired nicotine preference but normal responses to novel stimuliSoh Agatsuma, Moonsook Lee, Hongwen Zhu, et al.
Human Molecular Genetics|May 17, 2012
Alterations of social interaction through genetic and environmental manipulation of the 22q11.2 gene Sept5 in the mouse brainKathryn M Harper, Takeshi Hiramoto, Kenji Tanigaki, et al.
Biological Psychiatry|March 17, 2004
Chronic treatment with atypical neuroleptics induces striosomal FosB/DeltaFosB expression in ratsCristina Grande, Hongwen Zhu, Ana B Martin, et al.
Biological Psychiatry|August 17, 2014
Neonatal maternal separation alters the capacity of adult neural precursor cells to differentiate into neurons via methylation of retinoic acid receptor gene promoterShuken Boku, Hiroyuki Toda, Shin Nakagawa, et al.
Pageof 5

Showing results (11-20 of 48) with videos related to

Sort By:
Pageof 5
Human Molecular Genetics|May 1, 2007
Pleiotropic impact of constitutive fosB inactivation on nicotine-induced behavioral alterations and stress-related traits in miceHongwen Zhu, MoonSook Lee, Soh Agatsuma, et al.
Biological Psychiatry|February 13, 2010
N-methyl-D-aspartic acid receptors on striatal neurons are essential for cocaine cue reactivity in miceSoh Agatsuma, Mai T Dang, Yuqing Li, et al.
Autism-Open Access|August 5, 2014
Mouse Models of 22q11.2-Associated Autism Spectrum DisorderNoboru Hiroi, Takeshi Hiramoto, Kathryn M Harper, et al.
Genomic Psychiatry : Advancing Science From Genes to Society|March 19, 2026
Prepartum bumetanide treatment reverses altered neonatal social communication but nonspecifically reduces postpubertal social behavior in a mouse model of fragile X syndromeYui Sakamoto, Takeshi Takano, Shuji Shimoyama, et al.
Journal of Chemical Neuroanatomy|June 6, 2002
Molecular dissection of dopamine receptor signalingNoboru Hiroi, Ana B Martín, Cristina Grande, et al.
Human Molecular Genetics|September 13, 2011
Tbx1: identification of a 22q11.2 gene as a risk factor for autism spectrum disorder in a mouse modelTakeshi Hiramoto, Gina Kang, Go Suzuki, et al.
Human Molecular Genetics|August 9, 2006
Monoamine oxidase A knockout mice exhibit impaired nicotine preference but normal responses to novel stimuliSoh Agatsuma, Moonsook Lee, Hongwen Zhu, et al.
Human Molecular Genetics|May 17, 2012
Alterations of social interaction through genetic and environmental manipulation of the 22q11.2 gene Sept5 in the mouse brainKathryn M Harper, Takeshi Hiramoto, Kenji Tanigaki, et al.
Biological Psychiatry|March 17, 2004
Chronic treatment with atypical neuroleptics induces striosomal FosB/DeltaFosB expression in ratsCristina Grande, Hongwen Zhu, Ana B Martin, et al.
Biological Psychiatry|August 17, 2014
Neonatal maternal separation alters the capacity of adult neural precursor cells to differentiate into neurons via methylation of retinoic acid receptor gene promoterShuken Boku, Hiroyuki Toda, Shin Nakagawa, et al.
Pageof 5