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Nocturnal increase in cerebrospinal fluid secretion as a circadian regulator of intracranial pressure
Steffensen, A. B. (Ophavsmand), Edelbo, B. L. (Ophavsmand), Barbuskaite, D. (Ophavsmand), Andreassen, S. N. (Ophavsmand), Olsen, M. H. (Ophavsmand), Møller, K. (Ophavsmand) & MacAulay, N. (Ophavsmand), figshare, 2023
DOI: 10.6084/m9.figshare.c.6711905.v1, https://springernature.figshare.com/collections/Nocturnal_increase_in_cerebrospinal_fluid_secretion_as_a_circadian_regulator_of_intracranial_pressure/6711905/1
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Physical activity in pregnancy: a mixed methods process evaluation of the FitMum randomised controlled trial interventions
Knudsen, S. D. P. (Ophavsmand), Roland, C. B. (Ophavsmand), Alomairah, S. A. (Ophavsmand), Jessen, A. D. (Ophavsmand), Molsted, S. (Ophavsmand), Clausen, T. D. (Ophavsmand), Løkkegaard, E. (Ophavsmand), Stallknecht, B. (Ophavsmand), Bønnelycke, J. (Ophavsmand), Bendix, J. M. (Ophavsmand) & Maindal, H. T. (Ophavsmand), figshare, 2023
DOI: 10.6084/m9.figshare.c.6582718, https://springernature.figshare.com/collections/Physical_activity_in_pregnancy_a_mixed_methods_process_evaluation_of_the_FitMum_randomised_controlled_trial_interventions/6582718
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Lactate receptor GPR81 drives breast cancer growth and invasiveness through regulation of ECM properties and Notch ligand DLL4
Lundø, K. (Ophavsmand), Dmytriyeva, O. (Ophavsmand), Spøhr, L. (Ophavsmand), Goncalves-Alves, E. (Ophavsmand), Yao, J. (Ophavsmand), Blasco, L. P. (Ophavsmand), Trauelsen, M. (Ophavsmand), Ponniah, M. (Ophavsmand), Severin, M. (Ophavsmand), Sandelin, A. (Ophavsmand), Kveiborg, M. (Ophavsmand), Schwartz, T. W. (Ophavsmand) & Pedersen, S. H. F. (Ophavsmand), figshare, 2023
DOI: 10.6084/m9.figshare.c.6945608, https://springernature.figshare.com/collections/Lactate_receptor_GPR81_drives_breast_cancer_growth_and_invasiveness_through_regulation_of_ECM_properties_and_Notch_ligand_DLL4/6945608
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Policy Brief: Key findings and recommendations from three H2020 Projects on Tipping Points: TiPES, COMFORT, and TiPACCs
Rusiecka, D. (Ophavsmand), Martins, H. (Ophavsmand), Boers, N. (Ophavsmand), Kjær, H. A. (Ophavsmand), Langebroek, P. (Ophavsmand), Dy, C. L. (Ophavsmand), Heinze, C. (Ophavsmand), Blenckner, T. (Ophavsmand), Ditlevsen, P. (Ophavsmand) & Østerhus, S. (Ophavsmand), Zenodo, 2022
DOI: 10.5281/zenodo.6577027, https://zenodo.org/records/6577027
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meta.csv
Mankoff, K. (Ophavsmand), Løkkegaard, A. (Ophavsmand), Colgan, W. (Ophavsmand), Thomsen, H. (Ophavsmand), Clow, G. (Ophavsmand), Fisher, D. (Ophavsmand), Zdanowicz, C. (Ophavsmand), Lüthi, M. P. (Ophavsmand), Vinther, B. M. (Ophavsmand), MacGregor, J. A. (Ophavsmand), McDowell, I. (Ophavsmand), Zekollari, H. (Ophavsmand), Meierbachtol, T. (Ophavsmand), Doyle, S. (Ophavsmand), Law, R. (Ophavsmand), Hills, B. (Ophavsmand), Harper, J. (Ophavsmand), Humphrey, N. (Ophavsmand), Hubbard, B. (Ophavsmand), Christoffersen, P. (Ophavsmand), Jacquemart, M. (Ophavsmand), Seguinot, J. (Ophavsmand), Welty (Ophavsmand) & Colgan, W. (Bidrager), GEUS Dataverse, 2023
DOI: 10.22008/fk2/3bvf9v/nbchop, https://dataverse.geus.dk/file.xhtml?persistentId=doi:10.22008/FK2/3BVF9V/NBCHOP
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Supplementary material from "Social calls of the little auk (Alle alle) reflect body size and possibly partnership, but not sex"
Osiecka, A. N. (Ophavsmand), Mandel-Briefer, E. F. (Ophavsmand), Kidawa, D. (Ophavsmand) & Wojczulanis-Jakubas, K. (Ophavsmand), The Royal Society, 2023
DOI: 10.6084/m9.figshare.c.6824025, https://rs.figshare.com/collections/Supplementary_material_from_Social_calls_of_the_little_auk_i_Alle_alle_i_reflect_body_size_and_possibly_partnership_but_not_sex_/6824025
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Additional file 2 of A comprehensive map of human glucokinase variant activity
Gersing, S. (Ophavsmand), Cagiada, M. (Ophavsmand), Gebbia, M. (Ophavsmand), Gjesing, A. P. (Ophavsmand), Coté, A. G. (Ophavsmand), Seesankar, G. (Ophavsmand), Li, R. (Ophavsmand), Tabet, D. (Ophavsmand), Weile, J. (Ophavsmand), Stein, A. (Ophavsmand), Gloyn, A. L. (Ophavsmand), Hansen, T. (Ophavsmand), Roth, F. P. (Ophavsmand), Lindorff-Larsen, K. (Ophavsmand) & Hartmann-Petersen, R. (Ophavsmand), figshare, 2023
DOI: 10.6084/m9.figshare.22705955, https://springernature.figshare.com/articles/dataset/Additional_file_2_of_A_comprehensive_map_of_human_glucokinase_variant_activity/22705955
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temperature.csv
Mankoff, K. (Ophavsmand), Løkkegaard, A. (Ophavsmand), Colgan, W. (Ophavsmand), Thomsen, H. (Ophavsmand), Clow, G. (Ophavsmand), Fisher, D. (Ophavsmand), Zdanowicz, C. (Ophavsmand), Lüthi, M. P. (Ophavsmand), Vinther, B. M. (Ophavsmand), MacGregor, J. A. (Ophavsmand), McDowell, I. (Ophavsmand), Zekollari, H. (Ophavsmand), Meierbachtol, T. (Ophavsmand), Doyle, S. (Ophavsmand), Law, R. (Ophavsmand), Hills, B. (Ophavsmand), Harper, J. (Ophavsmand), Humphrey, N. (Ophavsmand), Hubbard, B. (Ophavsmand), Christoffersen, P. (Ophavsmand), Jacquemart, M. (Ophavsmand), Seguinot, J. (Ophavsmand), Welty (Ophavsmand) & Colgan, W. (Bidrager), GEUS Dataverse, 2023
DOI: 10.22008/fk2/3bvf9v/xla1kk, https://dataverse.geus.dk/file.xhtml?persistentId=doi:10.22008/FK2/3BVF9V/XLA1KK
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Cross-species discrimination of vocal expression of emotional valence by Equidae and Suidae
Maigrot, A. (Ophavsmand), Hillmann, E. (Ophavsmand) & Mandel-Briefer, E. F. (Ophavsmand), figshare, 2022
DOI: 10.6084/m9.figshare.c.6011140.v1, https://springernature.figshare.com/collections/Cross-species_discrimination_of_vocal_expression_of_emotional_valence_by_Equidae_and_Suidae/6011140/1
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Phylogenomic analysis of Syngnathidae reveals novel relationships, origins of endemic diversity and variable diversification rates
Stiller, J. (Ophavsmand), Short, G. (Ophavsmand), Hamilton, H. (Ophavsmand), Saarman, N. (Ophavsmand), Longo, S. (Ophavsmand), Wainwright, P. (Ophavsmand), Rouse, G. W. (Ophavsmand) & Simison, W. B. (Ophavsmand), figshare, 2022
DOI: 10.6084/m9.figshare.c.5919140.v1, https://springernature.figshare.com/collections/Phylogenomic_analysis_of_Syngnathidae_reveals_novel_relationships_origins_of_endemic_diversity_and_variable_diversification_rates/5919140/1
Datasæt
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Additional file 1 of Context dependency of nucleotide probabilities and variants in human DNA
Liang, Y. (Ophavsmand), Grønbæk, C. (Ophavsmand), Fariselli, P. (Ophavsmand) & Krogh, A. (Ophavsmand), figshare, 2022
DOI: 10.6084/m9.figshare.19101791, https://springernature.figshare.com/articles/dataset/Additional_file_1_of_Context_dependency_of_nucleotide_probabilities_and_variants_in_human_DNA/19101791
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Interventions supporting cancer patients in making decisions regarding participation in clinical trials - a systematic review
Hillersdal, L. (Ophavsmand), Nielsen, Z. E. (Ophavsmand), Nørmark, A. T. (Ophavsmand), Knoop, A. (Ophavsmand) & Piil, K. (Ophavsmand), figshare, 2022
DOI: 10.6084/m9.figshare.c.6268414.v1, https://springernature.figshare.com/collections/Interventions_supporting_cancer_patients_in_making_decisions_regarding_participation_in_clinical_trials_-_a_systematic_review/6268414/1
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Development of a 64Cu-labeled CD4+ T cell targeting PET tracer: evaluation of CD4 specificity and its potential use in collagen-induced arthritis
Clausen, A. S. (Ophavsmand), Christensen, C. (Ophavsmand), Christensen, E. (Ophavsmand), Cold, S. (Ophavsmand), Kristensen, L. K. (Ophavsmand), Hansen, A. E. (Ophavsmand) & Kjær, A. (Ophavsmand), figshare, 2022
DOI: 10.6084/m9.figshare.c.6203524.v1, https://springernature.figshare.com/collections/Development_of_a_64Cu-labeled_CD4_T_cell_targeting_PET_tracer_evaluation_of_CD4_specificity_and_its_potential_use_in_collagen-induced_arthritis/6203524/1
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Human integrin α10β1-selected mesenchymal stem cells home to cartilage defects in the rabbit knee and assume a chondrocyte-like phenotype
Andersen, C. (Ophavsmand), Uvebrant, K. (Ophavsmand), Mori, Y. (Ophavsmand), Aarsvold, S. (Ophavsmand), Jacobsen, S. (Ophavsmand), Berg, L. C. (Ophavsmand), Lundgren-Åkerlund, E. (Ophavsmand) & Lindegaard, C. (Ophavsmand), figshare, 2022
DOI: 10.6084/m9.figshare.c.5999752.v1, https://springernature.figshare.com/collections/Human_integrin_10_1-selected_mesenchymal_stem_cells_home_to_cartilage_defects_in_the_rabbit_knee_and_assume_a_chondrocyte-like_phenotype/5999752/1
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An assessment of implementation and effectiveness of mass drug administration for prevention and control of schistosomiasis and soil-transmitted helminths in selected southern Malawi districts
Makaula, P. (Ophavsmand), Kayuni, S. A. (Ophavsmand), Mamba, K. C. (Ophavsmand), Bongololo, G. (Ophavsmand), Funsanani, M. (Ophavsmand), Musaya, J. (Ophavsmand), Juziwelo, L. T. (Ophavsmand) & Furu, P. (Ophavsmand), figshare, 2022
DOI: 10.6084/m9.figshare.c.5955092.v1, https://springernature.figshare.com/collections/An_assessment_of_implementation_and_effectiveness_of_mass_drug_administration_for_prevention_and_control_of_schistosomiasis_and_soil-transmitted_helminths_in_selected_southern_Malawi_districts/5955092/1
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Additional file 1 of Resilience of breadfruit agro-ecosystems in Hawaiʻi during the COVID-19 pandemic
Berning, E. H. (Ophavsmand), Andersen, C. V. H. (Ophavsmand), Mertz, O. (Ophavsmand), Dickinson, N. (Ophavsmand), Opgenorth, M. (Ophavsmand), Lincoln, N. K. (Ophavsmand), Rashford, J. H. (Ophavsmand) & Rønsted, N. (Ophavsmand), figshare, 2022
DOI: 10.6084/m9.figshare.20933512.v1, https://springernature.figshare.com/articles/dataset/Additional_file_1_of_Resilience_of_breadfruit_agro-ecosystems_in_Hawai_i_during_the_COVID-19_pandemic/20933512/1
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Resilience of breadfruit agro-ecosystems in Hawaiʻi during the COVID-19 pandemic
Berning, E. H. (Ophavsmand), Andersen, C. V. H. (Ophavsmand), Mertz, O. (Ophavsmand), Dickinson, N. (Ophavsmand), Opgenorth, M. (Ophavsmand), Lincoln, N. K. (Ophavsmand), Rashford, J. H. (Ophavsmand) & Rønsted, N. (Ophavsmand), figshare, 2022
DOI: 10.6084/m9.figshare.c.6181552.v1, https://springernature.figshare.com/collections/Resilience_of_breadfruit_agro-ecosystems_in_Hawai_i_during_the_COVID-19_pandemic/6181552/1
Datasæt
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Phylogenomic analysis of Syngnathidae reveals novel relationships, origins of endemic diversity and variable diversification rates
Stiller, J. (Ophavsmand), Short, G. (Ophavsmand), Hamilton, H. (Ophavsmand), Saarman, N. (Ophavsmand), Longo, S. (Ophavsmand), Wainwright, P. (Ophavsmand), Rouse, G. W. (Ophavsmand) & Simison, W. B. (Ophavsmand), figshare, 2022
DOI: 10.6084/m9.figshare.c.5919140, https://springernature.figshare.com/collections/Phylogenomic_analysis_of_Syngnathidae_reveals_novel_relationships_origins_of_endemic_diversity_and_variable_diversification_rates/5919140
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Birthweight, childhood body size, and timing of puberty and risks of breast cancer by menopausal status and tumor receptor subtypes
Pedersen, D. C. (Ophavsmand), Jensen, B. W. (Ophavsmand), Tjønneland, A. (Ophavsmand), Andersen, Z. J. (Ophavsmand), Mellemkjaer, L. (Ophavsmand), Bjerregaard, L. G. (Ophavsmand), Aarestrup, J. (Ophavsmand) & Baker, J. L. (Ophavsmand), figshare, 2022
DOI: 10.6084/m9.figshare.c.6295731, https://springernature.figshare.com/collections/Birthweight_childhood_body_size_and_timing_of_puberty_and_risks_of_breast_cancer_by_menopausal_status_and_tumor_receptor_subtypes/6295731
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A tipping-point in carbon storage when forest expands into tundra is related to mycorrhizal recycling of nitrogen
Clemmensen, K. E. (Ophavsmand), Durling, M. B. (Ophavsmand), Michelsen, A. (Ophavsmand), Hallin, S. (Ophavsmand), Finlay, R. D. (Ophavsmand) & Lindahl, B. D. (Ophavsmand), Dryad, 2021
DOI: 10.5061/dryad.79cnp5htw, https://datadryad.org/stash/dataset/doi:10.5061/dryad.79cnp5htw
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Severe α1-antitrypsin deficiency associated with lower blood pressure and reduced risk of ischemic heart disease: a cohort study of 91,540 individuals and a meta-analysis
Winther, S. V. (Ophavsmand), Ahmed, D. (Ophavsmand), Al-Shuweli, S. (Ophavsmand), Landt, E. M. (Ophavsmand), Nordestgaard, B. G. (Ophavsmand), Seersholm, N. (Ophavsmand) & Dahl, M. (Ophavsmand), figshare, 2022
DOI: 10.6084/m9.figshare.c.5886891.v1, https://springernature.figshare.com/collections/Severe_1-antitrypsin_deficiency_associated_with_lower_blood_pressure_and_reduced_risk_of_ischemic_heart_disease_a_cohort_study_of_91_540_individuals_and_a_meta-analysis/5886891/1
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Additional file 1 of Context dependency of nucleotide probabilities and variants in human DNA
Liang, Y. (Ophavsmand), Grønbæk, C. (Ophavsmand), Fariselli, P. (Ophavsmand) & Krogh, A. (Ophavsmand), figshare, 2022
DOI: 10.6084/m9.figshare.19101791.v1, https://springernature.figshare.com/articles/dataset/Additional_file_1_of_Context_dependency_of_nucleotide_probabilities_and_variants_in_human_DNA/19101791/1
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A convolutional neural network for total tumor segmentation in [64Cu]Cu-DOTATATE PET/CT of patients with neuroendocrine neoplasms
Carlsen, E. A. (Ophavsmand), Lindholm, K. (Ophavsmand), Hindsholm, A. (Ophavsmand), Gæde, M. (Ophavsmand), Ladefoged, C. N. (Ophavsmand), Loft, M. (Ophavsmand), Johnbeck, C. B. (Ophavsmand), Langer, S. W. (Ophavsmand), Oturai, P. (Ophavsmand), Knigge, U. (Ophavsmand), Kjær, A. (Ophavsmand) & Andersen, F. L. (Ophavsmand), figshare, 2022
DOI: 10.6084/m9.figshare.c.6019711.v1, https://springernature.figshare.com/collections/A_convolutional_neural_network_for_total_tumor_segmentation_in_64Cu_Cu-DOTATATE_PET_CT_of_patients_with_neuroendocrine_neoplasms/6019711/1
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Ancient proteins resolve controversy over the identity of Genyornis eggshell
Demarchi, B. (Ophavsmand), Stiller, J. (Ophavsmand), Grealy, A. (Ophavsmand), Mackie, M. (Ophavsmand), Deng, Y. (Ophavsmand), Gilbert, T. (Ophavsmand), Clarke, J. (Ophavsmand), Legendre, L. J. (Ophavsmand), Boano, R. (Ophavsmand), Sicheritz-Pontén, T. (Ophavsmand), Magee, J. (Ophavsmand), Zhang, G. (Ophavsmand), Bunce, M. (Ophavsmand), Collins, M. J. (Ophavsmand) & Miller, G. (Ophavsmand), figshare, 2022
DOI: 10.6084/m9.figshare.15084879.v1, https://figshare.com/articles/dataset/Ancient_proteins_resolve_controversy_over_the_identity_of_Genyornis_eggshell/15084879/1
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Atlas of infant gut DNA virus diversity
Shah, S. (Ophavsmand), Stokholm, J. (Ophavsmand), Bisgaard, H. (Ophavsmand) & Nielsen, D. S. (Ophavsmand), figshare, 2022
DOI: 10.6084/m9.figshare.21102805.v1, https://figshare.com/articles/figure/Atlas_of_infant_gut_DNA_virus_diversity/21102805/1
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