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human cancer based on their cancer driver gene mutations. A new project in the lab is aimed at understanding the mechanism of natural killer mediated anti-tumor effects in LKB1-mutant lung adenocarcinoma
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, including super-resolution microscopy, and correlative light-cryo-electron microscopy (cryo-CLEM), to elucidate key steps of viral life cycle and the mechanism of virus restriction by host factors. Highly
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infection and explore strategies to enhance mucosal immunity. Using a combination of in vivo animal models and ex vivo 3D cellular systems, we study airway-specific immune mechanisms that influence
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language models (LLMs), generative AI, and cancer informatics. Projects may include training and fine-tuning domain-specific LLMs for clinical document summarization, treatment recommendation reasoning
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the fate of the population. We work with evolving systems ranging from viruses to hyperpolymorphic fungi and human cancers. Our computational projects include the evolution of mutational spectra within and
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, computational, and machine learning/AI methods, with a particular emphasis on deep learning approaches improve our understanding and prediction of infectious disease dynamics. Projects are also strongly grounded
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Emory University is a leading research university that fosters excellence and attracts world-class talent to innovate today and prepare leaders for the future. We welcome candidates who can contribute to the excellence of our academic community. Supervised by the PI, the individual will be...