Developmental loss of NMDA receptors results in supernumerary forebrain neurons through delayed maturation of transit-amplifying neuroblasts
Napoli, Amalia J, Laderwager, Stephanie, Zoodsma, Josiah D, Biju, Bismi, Mucollari, Olgerta, Schubel, Sarah K, Aprea, Christieann, Sayed, Aaliya, Morgan, Kiele, Napoli, Annelysia, Flanagan, Stephanie, Wollmuth, Lonnie P, Sirotkin, Howard I
Published in Scientific reports (09.02.2024)
Published in Scientific reports (09.02.2024)
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Disruption of grin2B, an ASD-associated gene, produces social deficits in zebrafish
Zoodsma, Josiah D, Keegan, Emma J, Moody, Gabrielle R, Bhandiwad, Ashwin A, Napoli, Amalia J, Burgess, Harold A, Wollmuth, Lonnie P, Sirotkin, Howard I
Published in Molecular autism (22.09.2022)
Published in Molecular autism (22.09.2022)
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A Model to Study NMDA Receptors in Early Nervous System Development
Zoodsma, Josiah D, Chan, Kelvin, Bhandiwad, Ashwin A, Golann, David R, Liu, Guangmei, Syed, Shoaib A, Napoli, Amalia J, Burgess, Harold A, Sirotkin, Howard I, Wollmuth, Lonnie P
Published in The Journal of neuroscience (29.04.2020)
Published in The Journal of neuroscience (29.04.2020)
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Journal Article
Loss of NMDA receptor function during development results in decreased KCC2 expression and increased neurons in the zebrafish forebrain
Napoli, Amalia J, Laderwager, Stephanie, Zoodsma, Josiah D, Biju, Bismi, Mucollari, Olgerta, Schubel, Sarah K, Aprea, Christieann, Sayed, Aaliya, Morgan, Kiele, Napoli, Annelysia, Flanagan, Stephanie, Wollmuth, Lonnie P, Sirotkin, Howard I
Published in bioRxiv : the preprint server for biology (20.09.2023)
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Published in bioRxiv : the preprint server for biology (20.09.2023)
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