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and applying tools to understand how implicated genes act in neurons and circuits. We use large-scale, unbiased, systematic approaches in collaborative multidisciplinary research teams
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implicated genes act in neurons and circuits. We use large scale, unbiased, systematic approaches in collaborative multidisciplinary research teams. This postdoctoral fellowship in the Arlotta lab involves
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bases of behavior modification of fruit flies (Drosophila melanogaster) by the fungal pathogen Entomophthora muscae from molecules to circuits. There are open opportunities to work in project areas
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bases of behavior modification of fruit flies (Drosophila melanogaster) by the fungal pathogen Entomophthora muscae from molecules to circuits. There are open opportunities to work in project areas
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position in the Goodrich lab at Harvard Medical School in Boston, Massachusetts. The work of the Goodrich lab is focused on the development and function of auditory circuits in mice. We welcome applications
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strong relevant background. The Postdoctoral Fellow should have working knowledge of in vivo mouse molecular-genetic approaches, mouse cortical immunocytochemical analyses, circuit concepts, transcriptomic
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of social recognition, identified the cues that trigger distinct social behaviors, and identified specific genes, cell types and circuits involved in the control and modulation of social and sickness behavior
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synthetic biology, gene circuit engineering, phenotyping and in vivo models. The Duraisingh Laboratory studies host-pathogen interactions, focused on malaria, babesiosis, and red blood cells. The laboratory
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of neural circuits controlling various aspects of natural behavior. See our lab web page (https://www.engertlab.org/research ) for more information about our publications and research interests. Basic
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and imaging to understand how neural circuits are modified during learning Basic Qualifications Successful candidates will have recently obtained a Ph.D. in a relevant field, demonstrated productivity