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the guidance of his/her scientific mentor to investigate how interoception circuits affect animal behavior using the zebrafish model; independently designs new analytical approaches and tools; performs
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on understanding the impact of microbiota on neurodevelopment and stress and social behaviour using zebrafish as a model system. Experience of zebrafish as a model system is desirable. The ongoing projects utilize
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-inducing drugs. Through integrated molecular, cellular and tissue analyses, including patient-derived lung adenocarcinoma tissues and zebrafish CDX models, the study aims to define ferroptosis-driven
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research project under guidance from Dr. Di Talia. Current topics of interest for the lab include early embryogenesis in insects, adult appendage regeneration, and notochord segmentation in zebrafish. You
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orofacial cleft, in zebrafish and/or in tissue culture, · testing non-coding variants associated with orofacial cleft by engineering the genotype of human IPSCs and differentiating them into oral cell
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brain at cellular and millisecond resolution. By combining advanced microscopy, genetically encoded voltage indicators, two-photon optogenetics, and zebrafish neuroscience, we aim to enable causal
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social behaviour using zebrafish as a model system. Experience of zebrafish as a model system is desirable. The ongoing projects utilize techniques such as zebrafish microbiota manipulation, molecular
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this, we use zebrafish CRISPR-generated mutants to perform high-throughput functional screens. The postdoctoral associate will also support other tasks related to the team’s research, including the following
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and cellular mechanisms underlying these disorders using cell-based assays, blood vessel organoids, and zebrafish and mouse models, working alongside neurosurgeons, computational scientists, and
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 1 hour ago
research The Chen lab at UNC studies the development, plasticity, and function of astrocytes in the nervous system. Using complementary genetic and imaging approaches in fruit flies and zebrafish model