Datasets
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Appendix A. Supplementary figures showing trajectories of individual transects at Santa Rita Experimental Range through time over ordination space.
Bagchi, S. (Contributor), Briske, D. D. (Creator), Wu, X. B. (Contributor), McClaran, M. P. (Creator), Bestelmeyer, B. T. (Creator) & Fernández-Giménez, M. E. (Creator), Wiley, 2016
DOI: 10.6084/m9.figshare.3517097.v1, https://wiley.figshare.com/articles/dataset/Appendix_A_Supplementary_figures_showing_trajectories_of_individual_transects_at_Santa_Rita_Experimental_Range_through_time_over_ordination_space_/3517097/1
Dataset
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Appendix D. Sample design for partitioning shrub clusters into nested, fixed-area sampling units to measure species occurrence.
Stokes, C. J. (Contributor) & Archer, S. R. (Contributor), Wiley, 2016
DOI: 10.6084/m9.figshare.3544628.v1, https://wiley.figshare.com/articles/dataset/Appendix_D_Sample_design_for_partitioning_shrub_clusters_into_nested_fixed-area_sampling_units_to_measure_species_occurrence_/3544628/1
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Appendix A. A table showing plant species eaten by Estigmene acrea caterpillars during field collections to assess parasitism, and during behavioral observations.
Singer, M. S. (Creator), Rodrigues, D. (Creator), Stireman III, J. O. (Contributor) & Carrière, Y. (Creator), Wiley, 2016
DOI: 10.6084/m9.figshare.3523772.v1, https://wiley.figshare.com/articles/dataset/Appendix_A_A_table_showing_plant_species_eaten_by_Estigmene_acrea_caterpillars_during_field_collections_to_assess_parasitism_and_during_behavioral_observations_/3523772/1
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Appendix A. Fossil records documenting late Pleistocene Joshua tree distribution and Holocene migration rates.
Cole, K. L. (Creator), Ironside, K. (Creator), Eischeid, J. (Creator), Garfin, G. (Creator), Duffy, P. B. (Creator) & Toney, C. (Creator), Wiley, 2016
DOI: 10.6084/m9.figshare.3515660.v1, https://wiley.figshare.com/articles/dataset/Appendix_A_Fossil_records_documenting_late_Pleistocene_Joshua_tree_distribution_and_Holocene_migration_rates_/3515660/1
Dataset
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Data from: No evidence for the melanin desiccation hypothesis in a larval Lepidopteran
Britton, S. E. (Contributor) & Davidowitz, G. (Contributor), ZENODO, Oct 21 2024
DOI: 10.5281/zenodo.13761078, https://zenodo.org/records/13761078
Dataset
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Data for EMSL Project 60045 from September 2023
Gorman, B. L. (Creator), Bougoure, J. J. (Creator), Roscioli, J. R. (Creator), Arnold, A. E. (Creator) & Meredith, L. K. (Creator), Environmental Molecular Sciences Laboratory, 2023
DOI: 10.25582/data.2023-09.2888496/2462063, https://www.osti.gov/servlets/purl/2462063/
Dataset
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Characterization of essential eggshell proteins from Aedes aegypti mosquitoes
Miesfeld, R. L. (Creator), Isoe, J. (Creator), Peterson, A. J. (Creator), Massani, B. B. (Creator) & Riehle, M. A. (Creator), figshare, 2024
DOI: 10.6084/m9.figshare.c.6880595, https://springernature.figshare.com/collections/Characterization_of_essential_eggshell_proteins_from_Aedes_aegypti_mosquitoes/6880595
Dataset
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UArizona Campus Living Lab Green Stormwater Infrastructure Data
Scott, E. R. (Contributor), Buzzard, V. (Contributor), Liang, H. (Contributor), Riemer, K. (Contributor), Dimond, K. (Contributor), Meixner, T. (Contributor), Gerlak, A. K. (Contributor) & Meredith, L. K. (Contributor), ZENODO, Oct 1 2024
DOI: 10.5281/zenodo.13876435, https://zenodo.org/records/13876435
Dataset
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Supplementary Material for: Harnessing Speech-Derived Digital Biomarkers to Detect and Quantify Cognitive Decline Severity in Older Adults
Cay, G. (Contributor), Pfeifer, V. A. (Contributor), Lee, M. (Contributor), Nunes, A. S. (Contributor), El-Refaei, N. (Contributor), Mehl, M. R. (Contributor), Vaziri, A. (Contributor) & Najafi, B. (Contributor), Karger Publishers, 2024
DOI: 10.6084/m9.figshare.24989022, https://karger.figshare.com/articles/dataset/Supplementary_Material_for_Harnessing_Speech-Derived_Digital_Biomarkers_to_Detect_and_Quantify_Cognitive_Decline_Severity_in_Older_Adults/24989022
Dataset
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Supplementary Material for: Harnessing Speech-Derived Digital Biomarkers to Detect and Quantify Cognitive Decline Severity in Older Adults
Cay, G. (Contributor), Pfeifer, V. A. (Contributor), Lee, M. (Contributor), Nunes, A. S. (Contributor), El-Refaei, N. (Contributor), Mehl, M. R. (Contributor), Vaziri, A. (Contributor) & Najafi, B. (Contributor), Karger Publishers, 2024
DOI: 10.6084/m9.figshare.24989022.v1, https://karger.figshare.com/articles/dataset/Supplementary_Material_for_Harnessing_Speech-Derived_Digital_Biomarkers_to_Detect_and_Quantify_Cognitive_Decline_Severity_in_Older_Adults/24989022/1
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Amazon forest biogeography predicts resilience and vulnerability to drought
Chen, S. (Contributor), Stark, S. C. (Creator), Nobre, A. D. (Creator), Cuartas, L. A. (Creator), de Jesus Amore, D. (Contributor), Restrepo-Coupe, N. (Creator), Smith, M. N. (Creator), Chitra-Tarak, R. (Contributor), Ko, H. (Contributor), Nelson, B. W. (Creator) & Saleska, S. R. (Creator), Code Ocean, 2024
DOI: 10.24433/co.2432086.v1, https://codeocean.com/capsule/5610160/tree/v1
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Ability of aquatic Stratiomyidae (Diptera) larvae to survive stream drying using dormancy
Washko, S. (Creator) & Bogan, M. (Creator), Taylor & Francis, 2024
DOI: 10.6084/m9.figshare.25498290.v1, https://tandf.figshare.com/articles/dataset/Ability_of_aquatic_Stratiomyidae_Diptera_larvae_to_survive_stream_drying_using_dormancy/25498290/1
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Figure S2. from Evaluating a transfer gradient assumption in a fomite-mediated microbial transmission model using an experimental and Bayesian approach
Wilson, A. M. (Creator), King, M.-F. (Contributor), Lopez-Garciá, M. (Contributor), Weir, M. H. (Creator), Sexton, J. D. (Creator), Canales, R. A. (Creator), Kostov, G. E. (Creator), Julian, T. R. (Creator), Noakes, C. J. (Creator) & Reynolds, K. A. (Creator), The Royal Society, 2020
DOI: 10.6084/m9.figshare.12452453, https://rs.figshare.com/articles/Figure_S2_from_Evaluating_a_transfer_gradient_assumption_in_a_fomite-mediated_microbial_transmission_model_using_an_experimental_and_Bayesian_approach/12452453
Dataset
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Data from: No evidence for the melanin desiccation hypothesis in a larval Lepidopteran
Britton, S. E. (Creator) & Davidowitz, G. (Creator), Dryad, Oct 21 2024
DOI: 10.5061/dryad.v41ns1s5k, https://datadryad.org/stash/dataset/doi:10.5061/dryad.v41ns1s5k
Dataset
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Transcription profiling by array of Arabidopsis pollen and pollen tubes grown in vitro and in vivo
Qin, Y. (Contributor), Manziello, A. (Contributor), Pandey, R. (Contributor), Mount, D. (Contributor), Denic, S. (Contributor), Vasic, B. (Contributor) & Palanivelu, R. (Contributor), ArrayExpress, 2009
https://www.ebi.ac.uk/arrayexpress/experiments/E-GEOD-17343
Dataset
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The Association Between Duration of School Garden Exposure and Self-Reported Learning and School Connectedness
Lohr, A. M. (Creator), Bell, M. L. (Creator), Coulter, K. (Creator), Marston, S. (Creator), Thompson, M. (Creator), Carvajal, S. C. (Creator), Wilkinson-Lee, A. M. (Creator), Gerald, L. B. (Creator) & Korchmaros, J. (Creator), SAGE Journals, 2022
DOI: 10.25384/sage.c.5907751, https://sage.figshare.com/collections/The_Association_Between_Duration_of_School_Garden_Exposure_and_Self-Reported_Learning_and_School_Connectedness/5907751
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Transcription profiling by high throughput sequencing of whole kernels at 0, 3, and 5 days after pollination and endosperms at 7, 10, and 15 days after pollination, using maize B73 x Mo17 reciprocal crosses
Xin, M. (Contributor), Yang, R. (Contributor), Li, G. (Contributor), Chen, H. (Contributor), Laurie, J. (Contributor), Ma, C. (Contributor), Wang, D. (Contributor), Yao, Y. (Contributor), Sun, Q. (Contributor), Yadegari, R. (Contributor), Wang, X. (Contributor) & Ni, Z. (Contributor), ArrayExpress, 2013
https://www.ebi.ac.uk/arrayexpress/experiments/E-GEOD-48425
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Supplemental Material, Figure_S1 - Islet Harvest in Carbon Monoxide-Saturated Medium for Chronic Pancreatitis Patients Undergoing Islet Autotransplantation
Wang, H. (Creator), Gou, W. (Creator), Strange, C. (Creator), Wang, J. (Creator), Nietert, P. J. (Creator), Cloud, C. (Creator), Owzarski, S. (Creator), Shuford, B. (Creator), Duke, T. (Creator), Luttrell, L. (Creator), Lesher, A. (Creator), Papas, K. K. (Creator), Herold, K. C. (Creator), Clark, P. (Creator), Usmani-Brown, S. (Creator), Kitzmann, J. (Creator), Crosson, C. (Creator), Adams, D. B. (Creator) & Morgan, K. A. (Creator), SAGE Journals, 2019
DOI: 10.25384/sage.11482122, https://sage.figshare.com/articles/figure/Supplemental_Material_Figure_S1_-_Islet_Harvest_in_Carbon_Monoxide-Saturated_Medium_for_Chronic_Pancreatitis_Patients_Undergoing_Islet_Autotransplantation/11482122
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Comparative genomic hybridization by array of Arabidopsis thaliana, Arabidopsis suecica, Arabidopsis arenosa and frankenfurter shows homeolog-specific retention in allotetraploid Arabidopsis suecica
McMahon, M. (Contributor) & Comai, L. (Contributor), ArrayExpress, 2011
https://www.ebi.ac.uk/arrayexpress/experiments/E-MEXP-2969
Dataset
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Low-Toxin <i>Clostridioides difficile</i> RT027 Strains Exhibit Robust Virulence
Anwar, F. (Creator), Roxas, B. A. P. (Creator), Shehab, K. W. (Creator), Ampel, N. M. (Creator), Viswanathan, V. K. (Creator) & Vedantam, G. (Creator), Taylor & Francis, 2022
DOI: 10.6084/m9.figshare.20375314.v1, https://tandf.figshare.com/articles/online_resource/Low-Toxin_i_Clostridioides_difficile_i_RT027_Strains_Exhibit_Robust_Virulence/20375314/1
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Data from: Native lagomorphs suppress grass establishment in a shrub‐encroached, semiarid grassland
Abercrombie, S. T. (Creator), Koprowski, J. L. (Creator), Nichols, M. H. (Creator) & Fehmi, J. S. (Creator), Dryad, Dec 21 2018
DOI: 10.5061/dryad.0f8p4c5, https://datadryad.org/stash/dataset/doi:10.5061/dryad.0f8p4c5
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Data from: Direct effects dominate responses to climate perturbations in grassland plant communities
Chu, C. (Creator), Kleinhesselink, A. R. (Creator), Havstad, K. M. (Creator), McClaran, M. P. (Creator), Peters, D. P. (Creator), Vermeire, L. T. (Creator), Wei, H. (Creator) & Adler, P. B. (Creator), Dryad, May 10 2017
DOI: 10.5061/dryad.f1860, https://datadryad.org/stash/dataset/doi:10.5061/dryad.f1860
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MOESM8 of Transcriptome analysis reveals key genes involved in the regulation of nicotine biosynthesis at early time points after topping in tobacco (Nicotiana tabacum L.)
Qin, Y. (Creator), Bai, S. (Creator), Li, W. (Creator), Sun, T. (Creator), Galbraith, D. W. (Creator), Yang, Z. (Creator), Zhou, Y. (Creator), Sun, G. (Creator) & Wang, B. (Creator), figshare, 2020
DOI: 10.6084/m9.figshare.11665305.v1, https://springernature.figshare.com/articles/dataset/MOESM8_of_Transcriptome_analysis_reveals_key_genes_involved_in_the_regulation_of_nicotine_biosynthesis_at_early_time_points_after_topping_in_tobacco_Nicotiana_tabacum_L_/11665305/1
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MOESM11 of Transcriptome analysis reveals key genes involved in the regulation of nicotine biosynthesis at early time points after topping in tobacco (Nicotiana tabacum L.)
Qin, Y. (Creator), Bai, S. (Creator), Li, W. (Creator), Sun, T. (Creator), Galbraith, D. W. (Creator), Yang, Z. (Creator), Zhou, Y. (Creator), Sun, G. (Creator) & Wang, B. (Creator), figshare, 2020
DOI: 10.6084/m9.figshare.11665233.v1, https://springernature.figshare.com/articles/dataset/MOESM11_of_Transcriptome_analysis_reveals_key_genes_involved_in_the_regulation_of_nicotine_biosynthesis_at_early_time_points_after_topping_in_tobacco_Nicotiana_tabacum_L_/11665233/1
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MOESM7 of Transcriptome analysis reveals key genes involved in the regulation of nicotine biosynthesis at early time points after topping in tobacco (Nicotiana tabacum L.)
Qin, Y. (Creator), Bai, S. (Creator), Li, W. (Creator), Sun, T. (Creator), Galbraith, D. W. (Creator), Yang, Z. (Creator), Zhou, Y. (Creator), Sun, G. (Creator), Wang, B. (Creator), Zefeng, Y. (Contributor) & Bingwu, W. (Contributor), figshare, 2020
DOI: 10.6084/m9.figshare.11665293, https://springernature.figshare.com/articles/dataset/MOESM7_of_Transcriptome_analysis_reveals_key_genes_involved_in_the_regulation_of_nicotine_biosynthesis_at_early_time_points_after_topping_in_tobacco_Nicotiana_tabacum_L_/11665293
Dataset