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transcriptomics, proteomics, metabolomics, or comparative genomics). Candidates must also demonstrate strong analytical, quantitative, and problem-solving skills. Required License/Registration/Certification N/A
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relationship (SAR) campaigns and scaffold development Collaborate closely with biologists to translate compounds into cell-based and proteomic assays Mentor graduate students in chemical synthesis and
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cytometry and proteomics. You can read more about the team here . Apply for the PhD position here Apply for the Postdoc position here
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resources are readily available, including biorepository and clinical biomarkers labs, biostatistics, applied bioinformatics, proteomics and metabolomics and a variety of brain and body imaging resources (MRI
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image analysis Functional phenotyping using HD-MEA electrophysiology Testing of therapeutic strategies Coordination with single-cell RNA-seq, single-cell proteomics, and proximity proteomics workflows
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, cancer biology, or a related discipline, with significant postdoctoral research experience. The ideal candidate will have expertise in functional genomics and/or proteomics, strong quantitative and
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involve leading research projects that integrate large-scale multi-omics datasets—including functional genomics and proteomics—across biological scales, from single-cell systems to population-level data
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dynamics. Additional advantageous skills involve working with patient tissue handling and culturing, surgical implantation of brain cancer, cryo-electron microscopy, transcriptome, proteome, single cell
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on the mechanisms and therapeutic targets of inherited retinal degenerations (IRDs). The successful candidate will lead interdisciplinary projects integrating single-cell transcriptomics, proteomics, retinal biology
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-resolution, confocal and electron microscopy), genomics, proteomics, metabolomics, high-performance computing and field research. We promote research at the interface with other disciplines. The Dept