A major challenge in biotechnology and biomanufacturing is the identification of a set of biomarkers for perturbations and metabolites of interest. Here, we develop a data-driven, transcriptome-wide approach to rank perturbation-inducible genes from time-series RNA sequencing data for the discovery...
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HDF5 file containing 10,000 hydraulic transmissivity inputs and the corresponding hydraulic pressure field outputs for a two-dimensional saturated flow model of the Hanford Site. The inputs are generated by sampling a 1,000-dimensional Kosambi-Karhunen-Loève (KKL) model of the transmissivity field...
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Machine learning is a core technology that is rapidly advancing within type 1 diabetes (T1D) research. Our Human Islet Research Network (HIRN) grant is studying early cellular response initiating β cell stress in T1D through the generation of heterogenous low- and high-throughput molecular...
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The Environmental Determinants of Diabetes in the Young (TEDDY) study is searching for factors influencing the development of type 1 diabetes (T1D) in children. Research has shown that there are certain genes that correlate to higher risk of developing T1D, but not all children with these genes...
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The Diabetes Autoimmunity Study in the Young (DAISY) seeks to find environmental factors that can trigger the development of type 1 diabetes (T1D) in children. DAISY follows children with high-risk of developing T1D based on family history or genetic markers. Genes, diets, infections, and...
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Short Biography Caroline (Carrie) Harwood received her Ph.D. in microbiology from the University of Massachusetts and completed postdoctoral work at Yale University. She held academic appointments at Cornell University and the University of Iowa before moving to the University of Washington in 2005...
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PerCon SFA, Co-Investigator Vivian Lin earned her PhD in organic chemistry from the University of California, Berkeley with Professor Chris Chang, developing fluorescent probes for imaging redox active small molecules. Afterward, she traveled to Switzerland for a postdoctoral fellowship in the...
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Systems Virology Lethal Human Virus, SARS-CoV Experiment SCL008 New uploads pending The purpose of this SARS experiment was to obtain samples for transcriptome and proteome analysis in human lung 2B4 cells (clonal derivative of Calu-3 cells) infected with either icSARS CoV, icSARS-deltaNSP16 or...
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Systems Virology Lethal Human Virus, SARS-CoV Experiment SCL009 New uploads pending The purpose of this SARS experiment was to obtain samples for metabolome and lipidome analysis comparing wild type virus (icSARS) infected Human lung tissue 2B4 (Calu-3 clonal derivative) cells to mock infected cells...
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Systems Virology Lethal Human Virus, SARS-CoV Experiment SCL012 New uploads pending The purpose of this SARS experiment was to obtain samples for metabolome and lipidome analysis comparing wild type virus (icSARS) vs icSARS CoV deltaORF6 infected Human lung tissue 2B4 (Calu-3 clonal derivative)...
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Systems Virology Lethal Human Virus, SARS-CoV Experiment SHAE004 New uploads pending The purpose of this SARS experiment was to obtain samples for transcriptome analysis in Human Airway Epithelial (HAE) cells infected with SARS-CoV, SARS deltaORF6, SARS BatSRBD mutants in a longitudinal study...
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Systems Virology Lethal Human Virus, SARS-CoV Experiment SCL005 New uploads pending The purpose of this experiment was to evaluate the human host response to wild type virus icSARS-CoV Urbani and mutant virus icSARS deltaORF6 (DORF6) infection for subsequent transcriptional and proteomic analysis in...
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Systems Virology Lethal Human Virus, SARS-CoV Experiment SCL006 New uploads pending The purpose of this SARS experiment was to obtain samples for transcriptome and proteome analysis in human lung 2B4 cells (clonal derivative of Calu-3 cells) infected with wild type icSARS CoV Urbani and icSARS Bat...