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-cancer compounds, defining mechanisms-of-action for cytotoxic small molecules, discovering genotype-specific cancer dependencies, and characterizing vulnerabilities associated with aneuploidy, genomic
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-disciplinary approach spanning human genetics, computational biology, genomics, genetics, pharmacology, and biochemistry. By integrating human population-scale data with experimentally tractable model systems
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disorders, particularly autism, using novel computational approaches, neuroimaging-derived brain circuit fingerprints and transcriptomic signatures. A second project focuses on developing multimodal
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distribution. Both projects will develop the Fontan emulator to be patient-specific, MRI compatible, computer controlled, and quantitatively evaluated using advanced bench-top, CFD/FSI simulation, and MRI-based
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precursors of breast neoplasia progress to invasive breast cancer. They will be part of an interdisciplinary team of pathologists, immunologists, and computer scientists. The project builds on our previous
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a creative, collaborative, and highly motivated Postdoctoral Fellow to join the Colman Lab. Embedded in the fabric of a thriving scientific community at Stanford, our research program focuses
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of the transformation science and sustainability transitions literatures to help advance the intellectual core of the Transformation Science Program. About the Transformation Science Program The Transformation Science
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to continue for a second year; any reappointment is contingent on satisfactory progress, program need, continued funding, and Stanford University approval. The appointment includes eligible medical, dental
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., Dan Jurafsky, Ph.D. We are recruiting a postdoctoral scholar to join a collaborative, interdisciplinary team across Education, Linguistics, and Computer Science. The postdoc will lead a project that
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Intelligence (HAI) Medicine, Biomedical Informatics Research (BMIR) Postdoc Appointment Term: 1 year with potential to renew Appointment Start Date: June 2026 Group or Departmental Website: https