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projects that characterize the toxicological effects of emerging environmental pollutants using advanced cellular and animal models. Rutgers NAMC is known for its transdisciplinary research on particle
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using specific laboratory techniques that involve flow cytometry analysis, animal models of airway and brain disorders, single-cell RNA-seq, multiplex cytokine assays, and immunofluorescence imaging
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Posting Number 25FA1195 Posting Open Date 11/25/2025 Posting Close Date 12/05/2025 Qualifications Minimum Education and Experience PhD in Materials Science and Engineering or related fields. Certifications
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: Designs, performs and analyzes experiments using specific laboratory techniques that involve flow cytometry analysis, animal models of airway and brain disorders, single-cell RNA-seq, multiplex cytokine
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-learning loops and QC. Productionize models with PyTorch, Docker/Kubernetes, and AWS/SageMaker Prepares manuscripts for publications. Ensure all members of the lab are in compliance with the necessary
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writing protocols for IRB and IACUC. Genotypes distinct knockin and knockout animal model systems. Records, quantifies and analyzes data from experiments. FLSA Exempt Grade Salary Details A minimum of
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dependent educational benefits Life insurance coverage Employee discounts programs For detailed information on benefits and eligibility, please visit: http://uhr.rutgers.edu/benefits/benefits-overview
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candidate would bring expertise in one or more of the following areas: surgical approaches to model brain disorders in rodents; expertise with TBI, Epilepsy, Alzheimer’s, or Parkinson’s models; EEG recordings
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using specific laboratory techniques that involve flow cytometry analysis, animal models of airway and brain disorders, single-cell RNA-seq, multiplex cytokine assays, and immunofluorescence imaging
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. This role offers an exciting opportunity to work on developing and validating models for wearable sensors aimed at improving human movement, rehabilitation, and fitness engagement. An important component of