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biological approaches, in vitro cell culture systems, and novel mouse models. Optimal candidates will have experience with immunometabolism and use of these techniques and models. The overall goal is to
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Duties Develop, apply, and analyze T-cell receptor sequencing approaches for diverse clinical cohorts. Perform and optimize molecular assays, including RT-qPCR, ddPCR, and next-generation sequencing
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findings, and contribute to grant-related activities. Assist in the design of research experiments. Design, conduct, and optimize molecular biology and functional genomics experiments to investigate
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disease. Apply and optimize advanced spatial biology techniques, such as spatial transcriptomics, proteomics, and multiplexed imaging, to analyze brain tissue. Lead data analysis and interpretation
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methods, and optimizes existing ones. Keeps meticulous records of procedures and research findings. Demonstrates proficiency in troubleshooting instruments and methods to improve outcomes. Delivers
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. 2. Personalized prognostic models of time to loss of independence. 3. Identification of characteristics associated with ATT initiation to optimize referral pathways. 4. Real-world ATT outcomes
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at meetings A long-term interest in contributing to the overall mission of our research Additional qualities for this position include: Expertise with optimization, data science, and analytic techniques
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including (but not limited to): Radiochemistry of small molecule molecular imaging probes to interrogate tumor biology and predict response to therapy. Optimize and characterize imaging agents for preclinical