-
of high-throughput imaging and molecular data (i.e., genome, transcriptome, epigenome, and more). The methods would be able to systematically integrate biomedical/biological knowledge to improve
-
pain and sensory processing differ between females and males, how physiological states such as pregnancy remodel neural circuits, and how maternal experiences can shape sensory function across
-
(Midavaine et al., Science, 2025). Building on this foundation, the lab combines mouse genetics, single-cell and spatial transcriptomics, in vivo calcium imaging, sensory behavioral assays, and molecular
-
at the Center for Magnetic Resonance Research (CMRR), including ultra- high resolution 7T imaging. Our group is strongly committed to professional development and personalizing the postdoc experience. We
-
related field, and experience in one or more of the following areas: multiphoton imaging, optogenetics, calcium imaging, and / or in vivo electrophysiology. Applicants without prior experience in
-
or senior postdocs. One position will be focused on candidates with expertise in child language development, one position will focus on candidates with expertise in processing and analyzing structural and/or