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, mucosal and epithelial biology, host–pathogen interactions, aging, and related areas. Take responsibility for advancing assigned projects from experimental planning through data generation, analysis
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culture, fluorescence microscopy, quantitative image analysis, biochemical assays, and molecular biology techniques is strongly preferred. Experience with advanced light microscopy, automated imaging, drug
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molecular approaches, genetically modified animal models, advanced confocal imaging, flow cytometry, innovative culture models such as organoids, and working with clinical samples. The main responsibility
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isolated cardiomyocytes Knowledge of cardiac electrophysiology and arrhythmia mechanisms Experience with calcium imaging, optical mapping, or cardiac physiology techniques Familiarity with molecular biology
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independent research while contributing effectively in a multidisciplinary team environment. Strong proficiency in MATLAB for modeling and analysis is required. Experience in experimental vibration testing is
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analysis is essential. If you also bring experience in cell culture, tissue micro-dissection, or fluorescence imaging, these skills would be valuable additions to our team. We're particularly interested in
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models Strong quantitative, imaging, or computational analysis skills BACKGROUND CHECKS/CLEARANCES Employment with the University will require successful completion of background check(s) in accordance
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, data analysis, and engagement with international partners. This Postdoctoral Scholar position is an initial appointment for one year, renewable upon satisfactory performance and continued funding
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cardiac dysfunction during heart failure. Our research spans from human to animal studies, employing novel imaging and electrophysiologic techniques such as flow cytometry, vesicular analysis, and
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molecular biology techniques, 2D and 3D cell culture models (hydrogels), imaging techniques (TEM, SEM, confocal), protein analysis (immunohistochemistry/immunofluorescence), and handling of rodents. Specific