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to: Understand basic principles of brain functioning across development (i.e. figure out how the brain works). Learn about how neuropsychiatric and other brain-based disorders develop and progress over time
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-tuning DNA sequence/genomic/omic large language models (gLLMs) with their applications to genetics, e.g. in identifying causal genes for Alzheimer’s disease (AD). You will have access to state-of-the-art
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the neurorehabilitation industry to understand current standards of practices. Qualifications Required Qualifications: ● PhD degree in Mechanical Engineering, Biomedical Engineering or related fields. ● Competence in
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tissue culture, experimental virology, transcriptome analyses, and immunologic assays. Prior experience conducting relevant experiments using in vitro and in vivo models of infection, such as flow
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and their application in animal models. There will be opportunities to lead a team of students, contribute to grant writing, engage in professional development, and disseminate results at conferences
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Dr. Shen Cheng and his internal/external collaborators. The research will primarily focus on implementing and developing innovative pharmacometric modeling approaches for pharmacokinetic
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Regular/Temporary Regular Job Code 9546 Employee Class Acad Prof and Admin Add to My Favorite Jobs Email this Job About the Job A PhD to work in Dr. Selmecki's lab in the Department of Microbiology and
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neuroplasticity using rodent models. Concurrent research lines exploring the intersection of sex hormone signaling and respiratory neuroplasticity in aging, spinal cord injury, and stress models offer multiple
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familiarity with cryoem data processing using both Relion and cryoSPARC. Qualifications Required Qualifications: PhD in Biochemistry or related field. Extensive experience with cryoelectron microscopy sample
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induced pluripotent stem cells derived cardiac organoids for disease modeling and gene editing. This research aims to deepen our understanding of dystrophic cardiomyopathy and develop novel therapeutic