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Field
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Responsibilities: Conduct in vitro and in vivo experiments related to CNS angiogenesis, blood-brain barrier, and other neurovascular signaling, with a focus on mouse genetic approaches, imaging, and transcriptomics
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, Alzheimer's disease and ALS. The lab uses computational approaches to analyze genomic, transcriptomic, and clinical data from blood and brain tissue samples to identify disease biomarkers and cell-type-specific
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, and close collaboration with experimental and clinical teams. Primary Responsibilities · Lead computational analysis of large-scale multi-omics datasets, including transcriptomic, epigenomic (DNA
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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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host-microbe-pathogen interactions • Analyze microbiome and transcriptomic datasets • Maintain detailed laboratory records and contribute to scientific publications • Work closely with other researchers
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sequencing, and spatial transcriptomics. Be Bold. Qualifications: A PhD, MD, or MD/PhD in a biomedical sciences-related field is required, along with a peer-reviewed publication record. Experience in RNA
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leaves durable epigenetic and transcriptional scars that shape long term immunity, inflammation, and lung repair. This position is ideal for scientists excited to combine single cell transcriptomics and
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in thermodynamics and reaction kinetics. • Background in engineering non-conventional host organisms [e.g., Yarrowia lipolytica]. • Experience with bioinformatics, transcriptomics (RNA-seq
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transcriptomics; and 2) characterize the dimer-specific interacting proteins that mediate differential internalization and trafficking of the various PDGFR dimers in vitro and in vivo . These studies will provide
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, proteomic, transcriptomic, imaging, biochemical and/or physiological experiments to elucidate factors critical for important insect traits (digestion, feeding, development, reproduction, DNA repair, etc