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haploinsufficiency—impacts the maturation of innate visual behaviors, such as escape and prey pursuit. These behaviors are highly conserved, rely on early-developing visual circuits, and offer a powerful window into
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neurodevelopmental conditions, by bridging disciplines, from artificial intelligence, microelectronics, neuroengineering and nanoscience, to single-cell, imaging and molecular analysis, functional genomics and cell
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to visualize sensory signaling in the bladder wall and dorsal root ganglion (DRG) neurons. In addition, we explore these pathways in human bladder tissue samples. The LICR lab is looking to recruit 1 highly
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