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laboratory studies human brain development and neurodevelopmental disorders using human pluripotent stem cells, induced pluripotent stem cells (iPSCs), brain organoids, genetics, genomics, and molecular and
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GENERAL SUMMARY/ OVERVIEW STATEMENT The Falcone Lab (www.FalconeLab.org ) integrates genomic, multiomics and neuroimaging data to study the pathophysiology of acute brain injury (ischemic stroke
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treatment alongside converging preclinical evidence. Most recently, we have compared gabapentin and pregabalin head-to-head on reduction in alcohol use, and a preregistered study across two independent health
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applications, including diabetes, obesity and metabolism. The primary funded project examines changes in the dopaminergic system in the pancreas and brain during diabetes using PET/CT and MRI. Several additional
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Research focus Brain-body neuroscience is a rapidly growing field, and this position offers the chance to help define a new frontier in brain-body neuroimmunology, using systems neuroscience tools
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will have direct access to all of the expertise needed for the research to be successful, and can be embedded within museums or more technical parts of the University for periods of time to learn about
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ASDs in humans to determine how disruption of these genes alters brain development and the neural circuits underlying simple behaviors. Our long-term goal is to use this gene-based approach to identify
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studies how the infant brain learns about the social world and how early-life experience shapes neural circuits with long-term consequences for learning, attachment, and mental health. Our work focuses on
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development from virology, single-cell genomics, bioinformatics, immunology, to translational research. Our lab has a track record of training postdoctoral researchers: our postdocs have international
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, if they deposit their datasets at all, frequently do not have the time nor information management expertise to describe the data sufficiently well for discovery. The research datasets are typically found by reading