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-generation Microphysiological Systems (MPS)/Organ-on-a-Chip (OoC) with integrated sensors. In our project, we engineer and fabricate custom MPS/OoC devices with integrated sensors to enable real-time
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of metabolic pathways essential for biosynthesis and redox balance. We investigate how p53 integrates metabolic cues by functioning as both a sensor and regulator of cellular metabolism. In parallel, we seek
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computational algorithm(s), perform data analysis, collaborate with biologists and physicians. He or she will lead multiple projects, work in a multidisciplinary environment and present/publish the results in
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to evaluate algorithms on those benchmarks. Contributing to writing papers and review of the current literature. Other duties as assigned. Qualifications MINIMUM QUALIFICATIONS: A PhD in biomedical sciences
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conduct field and laboratory experiments and to handle large, multi-sensor, high-frequency, long-term datasets Ability to work in the field, including extended walking and carrying of heavy loads Training
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redox balance. Our studies explore how p53 integrates metabolic cues by acting as both a sensor and regulator of cellular metabolism. In parallel, we are identifying metabolic changes that promote tumor