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--> Frontier Research Institute for Interdisciplinary SciencesTohoku University Directions 日本語 English CONTACT 日本語 English About FRISGreetingsOverviewMissionsOrganizationTenure track system in FRISMaps & DirectionsPublicationAnnual MeetingAbstract for Annual MeetingConsultation DeskResearcherAdvanced Interdisciplinary Research DivisionHiroshi MasumotoTakehito ShimatsuTakashi ItohKenji TomaShinsuke NiwaTakaaki TomaiCreative Interdisciplinary Research DivisionYuanyuan GuoMasaki OkumuraNguyen Tuan HungHiroshi UenoToshiharu IchinoseYuta KudoHiroya AbeYuta NakayasuNaoya KitajimaDaniel Pastor-GalanYasunori OkamotoTakuro IshiiMasaki YamadaYuta YamaneKexin XiongKohei ShimokawaShinichi SatoKotaro YasuiSUN SaiYuji SaitoAtsushi TaharaKyoko ChibaYuka HatanoHakuto SuzukiKaoru HiramotoHideaki T. MatsubayashiAseel Mahmoud Suleiman MarahlehSakura KiuchiShigeo S. 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The vertebrate brain is a highly complex structure. Many people, including researchers, have been interested in the brain development, possibly because they believe the complexity of the brain’s neural circuits generates emotion and behavior in animals and humans. As with other organs, the brain differentiates from just only one cell, a fertilized egg. Morphogenesis of the developing brain is fascinating to observe. Our research goal is to elucidate the molecular mechanisms of the morphogenesis of the brain and neurons. We use techniques of molecular biology, such as production of genetically engineered mice and in vivo electroporation. Recently, we developed a new technique, in vivo electroporation-based tetracycline system, which makes it possible to control gene expression in postmitotic neurons in mice (Fig.1). We would like to elucidate the mechanisms of the brain development by this new method. Also, we are interested in the development of the prefrontal cortex (PFC) of the cerebral cortex. The PFC is thought to be responsible for thinking and creativity in humans. Uncovering the molecular mechanisms of the development and evolution of this area of the brain will lead to new treatments for mental disorders such as schizophrenia. Fig.1 Doxycycline-dependent expression in cerebellar Purkinje cells Sagittal sections of the postnatal day (P) 9 cerebellum 5 days after the injection without doxycycline (A-C) and with doxycycline (D-F). In vivo electroporation was performed at embryonic day (E) 11. mCherry expression was induced only after doxycycline administration. Related Posts PAGE TOP Frontier Research Institute for Interdisciplinary Sciences About FRIS GreetingsOverviewMissionsOrganizationTenure track system in FRISMaps & DirectionsPublicationAnnual MeetingConsultation Desk Researcher Advanced Interdisciplinary Research DivisionCreative Interdisciplinary Research DivisionManaging & Planning DivisionEndowed Research DivisionsSenior-advisorVisiting Professors / Collaborative ResearchersSpecially-appointedOne-time members Feature TopicsFRIS InterviewsFRIS Hub Meeting Research Programs Open Research ProposalResearch Projects Recruit Open Staff PositionsHandbook for International Researchers FRIS CoRE FRIS CoRE FRIS Fund FRIS Fund for Early-Career Independent Researchers External Links for Early Career Researcher Support Division for Interdisciplinary Advanced Research and Education (DIARE) Ensemble Project for Early Career Researchers Support Program for the Article Processing Charge webmail LINK Copyrights © Frontier Research Institute for Interdisciplinary Sciences, Tohoku University All rights reserved. no cache

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