데이터셋 상세
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Episodic Eucalyptus Lung
Data from Repeated exposure to eucalyptus wood smoke alters pulmonary gene and metabolic profiles in male Long-Evans rats. This dataset is associated with the following publication: Cochran, S., K. Dunigan Russell, G. Hutton, H. Nguyen, M. Schladweiler, D. Jones, W. Williams, A. Astriab Fisher, M. Gilmour, J. Dye, R. Smith, C. Miller, and K. Gowdy. Repeated exposure to eucalyptus wood smoke alters pulmonary gene and metabolic profiles in Male Long-Evans rats. TOXICOLOGICAL SCIENCES. Society of Toxicology, RESTON, VA, 199(2): 332-348, (2024).
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Field emission image of wood smoke
공공데이터포털
Electron microscope image of wood smoke. This dataset is associated with the following publication: Abzhanova, A., J. Berntsen, E. Pennington, L. Dailey, S. Masood, I. George, N. Warren, J. Martin, M. Hays, A. Ghio, J. Weinstein, Y.H. Kim, E. Puckett, and J. Samet. Monitoring Redox Stress in Human Airway Epithelial Cells Exposed to Woodsmoke at an Air-Liquid Interface. Particle and Fibre Toxicology. BioMed Central Ltd, London, UK, 21: 14, (2024).
LT3 Peat Smoke Extract Aspiration - All data
공공데이터포털
Raw data for all figures and supplementary figures. This dataset is associated with the following publication: Thompson, L., Y. Kim, B. Martin, A. Ledbetter, J. Dye, M. Hazari, I. Gilmour, and A. Farraj. Pulmonary Exposure to Peat Smoke Extracts in Rats Decreases Expiratory Time and Increases Left Heart End Systolic Volume. INHALATION TOXICOLOGY. Taylor & Francis, Inc., Philadelphia, PA, USA, 30(11-12): 439-447, (2019).
LT3 Peat Smoke Extract Aspiration - All data
공공데이터포털
Raw data for all figures and supplementary figures. This dataset is associated with the following publication: Thompson, L., Y. Kim, B. Martin, A. Ledbetter, J. Dye, M. Hazari, I. Gilmour, and A. Farraj. Pulmonary Exposure to Peat Smoke Extracts in Rats Decreases Expiratory Time and Increases Left Heart End Systolic Volume. INHALATION TOXICOLOGY. Taylor & Francis, Inc., Philadelphia, PA, USA, 30(11-12): 439-447, (2019).
Dataset: Smoldering and Flaming Biomass Wood Smoke Inhibit Respiratory Responses in Mice
공공데이터포털
The dataset consists of 2 revised files. The excel file shows all of the individual data used in calculation of the tables and figures. Each table and figure has data stored on a separate tab of the file. The zip file consists of 5 GraphPad Prism files which show the statistics and graphs used in the paper. The names of the 5 files indicate which figures and tables are analyzed statistically and the graphs generated from the data. This dataset is associated with the following publication: Hargrove, M., Y.H. Kim, C. King, C. Wood, M. Gilmour, J. Dye, and S. Gavett. Smoldering and Flaming Biomass Wood Smoke Inhibit Respiratory Responses in Mice. INHALATION TOXICOLOGY. Taylor & Francis, Inc., Philadelphia, PA, USA, 31(6): 236-247, (2019).
Dataset: Smoldering and Flaming Biomass Wood Smoke Inhibit Respiratory Responses in Mice
공공데이터포털
The dataset consists of 2 revised files. The excel file shows all of the individual data used in calculation of the tables and figures. Each table and figure has data stored on a separate tab of the file. The zip file consists of 5 GraphPad Prism files which show the statistics and graphs used in the paper. The names of the 5 files indicate which figures and tables are analyzed statistically and the graphs generated from the data. This dataset is associated with the following publication: Hargrove, M., Y.H. Kim, C. King, C. Wood, M. Gilmour, J. Dye, and S. Gavett. Smoldering and Flaming Biomass Wood Smoke Inhibit Respiratory Responses in Mice. INHALATION TOXICOLOGY. Taylor & Francis, Inc., Philadelphia, PA, USA, 31(6): 236-247, (2019).
Peat Smoke High Fat All data Feb2018.xlsx
공공데이터포털
The data set is an excel spreadsheet containing all the raw data used to generate the tables and figures in the manuscript. This dataset is associated with the following publication: Martin, B., L. Thompson, Y. Kim, W. Williams, S. Snow, M. Schladweiler, P. Phillips, C. King, J. Richards, N. Coates, M. Higuchi, I. Gilmour, U. Kodavanti, M. Hazari, and A. Farraj. Acute Peat Smoke Inhalation Sensitizes Rats to the Postprandial Cardiometabolic Effects of a High Fat Oral Load. SCIENCE OF THE TOTAL ENVIRONMENT. Elsevier BV, AMSTERDAM, NETHERLANDS, 643: 378-391, (2018).
Peat Smoke High Fat All data Feb2018.xlsx
공공데이터포털
The data set is an excel spreadsheet containing all the raw data used to generate the tables and figures in the manuscript. This dataset is associated with the following publication: Martin, B., L. Thompson, Y. Kim, W. Williams, S. Snow, M. Schladweiler, P. Phillips, C. King, J. Richards, N. Coates, M. Higuchi, I. Gilmour, U. Kodavanti, M. Hazari, and A. Farraj. Acute Peat Smoke Inhalation Sensitizes Rats to the Postprandial Cardiometabolic Effects of a High Fat Oral Load. SCIENCE OF THE TOTAL ENVIRONMENT. Elsevier BV, AMSTERDAM, NETHERLANDS, 643: 378-391, (2018).
Martin et al Sleep x Eucalyptus Meta Data Science Hub
공공데이터포털
Meta data for all figures and tables that appear in manuscript including Supplementary section. This dataset is associated with the following publication: Martin, W.K., M. Schladweiler, W. Oshiro, J. Smoot, A. Fisher, W. Williams, M. Valdez, C. Miller, T. Jackson, D. Freeborn, Y.H. Kim, D. Davies, M. Gilmour, U. Kodavanti, P. Kodavanti, M. Hazari, and A. Farraj. Wildfire-related smoke inhalation worsens cardiovascular risk in sleep disrupted rats. Frontiers in Environmental Health. Frontiers, Lausanne, SWITZERLAND, 2: 1166918, (2023).
Martin et al Sleep x Eucalyptus Meta Data Science Hub
공공데이터포털
Meta data for all figures and tables that appear in manuscript including Supplementary section. This dataset is associated with the following publication: Martin, W.K., M. Schladweiler, W. Oshiro, J. Smoot, A. Fisher, W. Williams, M. Valdez, C. Miller, T. Jackson, D. Freeborn, Y.H. Kim, D. Davies, M. Gilmour, U. Kodavanti, P. Kodavanti, M. Hazari, and A. Farraj. Wildfire-related smoke inhalation worsens cardiovascular risk in sleep disrupted rats. Frontiers in Environmental Health. Frontiers, Lausanne, SWITZERLAND, 2: 1166918, (2023).
Wildland Fire Smoke Alters the Composition, Diversity, and Potential Atmospheric Function of Microbial Life in the Aerobiome
공공데이터포털
Raw FASTQ data representing wildland fire smoke plume microbiome. This dataset is associated with the following publication: Kobziar, L., D. Vuono, R. Moore, B. Christner, T. Dean, D. Betancourt, A. Watts, J. Aurell, and B. Gullett. Wildland Fire Smoke Alters the Composition, Diversity, and Potential Atmospheric Function of Microbial Life in the Aerobiome. International Society for Microbial Ecology. Nature Publishing Group, London, UK, na, (2022).