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timely research question: How can Large Language Models (LLMs) and intelligent agents support transparent, scalable, and auditable clinical data harmonization? We are particularly interested in: LLM-driven
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scattering theory, heavy-ion collisions and the properties of hot QCD matter, hadronic probes of beyond-the-Standard-Model physics, and formal developments in lattice QCD. IU Physics Department also maintains
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(AD), mouse models, cell culture or imaging is highly desirable. The postdoctoral fellow will join a multidisciplinary and dynamic research team focused on understanding the role of microglia in
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experimental disease models to identify disease mechanisms, discover therapeutic targets, and improve disease prediction, prevention, and treatment. Our research focuses primarily on substance use disorders and
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fellow to join the 3D Stem Cell Biology Research Lab (https://www.hashinolab.com ) and study normal and pathological development of the human inner ear using stem cell-derived organoids as a model system
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Postdoctoral Fellow Position in Quantum Optical Physics: Theoretical, Simulation, Modeling for Experimental Design Title: Postdoctoral Fellow, physics Appointment Status: Non-tenure track Department: Department
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for science and a strong understanding of immunology. Proficiency in multicolor / spectral flow cytometry is required. Experience with mouse handling and infection models is preferred, but not required
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differences between DsbA proteins of two model organisms, E. coli and M. smegmatis (4) Establishing termini restraining for inhibitor-protein crystallography in collaboration with Prof. Weikai Li. Other general
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seizure models and cell cultures, primarily utilizing molecular and cell biology techniques. The Obeid lab investigates the mechanisms of seizure emergence and their effects on cognitive and behavioral
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the genetic and developmental basis of pediatric heart disease. We analyze genetic variation in samples from patients with congenital heart defects and utilize mouse, Xenopus and cell-based models to assess