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new skills in biochemistry and molecular and cellular biology, including fluorescence microscopy, live-cell imaging, ratiometric calcium imaging, transcriptomics, proteomics, mammalian cell culture
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plasticity. We study questions at a variety of levels, Ranging from synaptic and cellular studies using patch-clamp electrophysiology, large-scale population recordings using 2-photon Ca2+ imaging in awake
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targeting neuroreceptors and neuroimmune pathways. The successful candidate will employ a combination of in vitro tissue assays and in vivo imaging techniques to characterize the pharmacological properties
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-the-loop simulations, prototype development, and bench-level testing to validate design concepts and control implementations. Review and analyze relevant literature, industry standards, and emerging
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, including gene therapy and imaging technologies. Central to our studies is the lethal pediatric brain tumor, Diffuse Intrinsic Pontine Glioma (DIPG), particularly targeting cancer stem cells to address
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protocols. Perform photoacoustic imaging of the mouse brain. Maintain accurate and detailed records of experimental procedures and results. Collaborate with and assist other lab members on related projects
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diffraction (EBSD), energy dispersive microscopy (EDS), image quantification, correlative microscopy, and electron probe microanalysis (EPMA). Prior experience is desirable but not required given a strong
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models, bioluminescence Imaging, and animal necropsy. Other wet-lab techniques or assays maybe involved depending on how the project progresses. Required Qualifications* PhD (or equivalent) in Biomedical
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cryo-EM and/or cryo-ET workflows Experience in image processing and/or biostatics Modes of Work Positions that are eligible for hybrid or mobile/remote work mode are at the discretion of the hiring
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interpersonal skills and ability to work with others in a collaborative environment. Desired Qualifications* Experience in in vivo-imaging or -recording, patch-clamp recording, and live cell imaging. Modes