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Field
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parameters. You will engage with complex, high-dimensional datasets derived from real fabrication workflows, including microscopy, spectroscopy, and electrical performance measurements. You will work closely
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and experimental systems to make energised artificial lipid bilayer membranes compatible with high resolution optical microscopy for the study of single molecular motors. The post is funded by
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the University of Michigan Medical School. The lab uses cryo-electron microscopy and biochemical approaches to investigate the regulation of mRNA translation initiation and its implications for human health and
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of cellular response to stimuli. In another direction, we are developing multicolor electron microscopy using the principle of “cathodoluminescence” – emission of light triggered by excitation with an electron
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, tissue sectioning, immunofluorescence, histology, and confocal microscopy Experience with western blotting and qRT-PCR is advantageous Strong written and oral communication skills for research work Highly
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Engineering, or related field. Additional Qualifications Expertise in immunoengineering required, including mammalian cell culture, fluorescent and confocal microscopy, immunoassays, proteomics and scRNA seq
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and experimental systems to make energised artificial lipid bilayer membranes compatible with high resolution optical microscopy for the study of single molecular motors. The post is funded by
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our lab webpage (jeeyunchunglab.org). We are seeking a highly motivated individual with a strong interest in lipid cell biology, neurobiology, and microscopy to join our team Basic Qualifications
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dedicated to technology such as state-of-the-art light microscopy, nano- and micro- fabrication, and computing. We are seeking a Research Fellow with expertise in transmission electron microscopy (TEM
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, genetics, confocal, 2P microscopy, basic programming and/or molecular biology) Ability to manage resources efficiently and coordinate work with others Understanding of and ability to contribute to broader