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1,091 results for “hemisphere”
Fig. 3 in First Northern Hemisphere Record of a Poorly Known Armored Searobin Peristedion richardsi (Actinopterygii: Teleostei: Peristediidae) from Taiwan
Fig. 3. Distributional records of Peristedion richardsi. Open and closed symbols indicate previously published and new records, respectively.
Figure 3 in Beetles (Coleoptera) in cones of cycads (Cycadales) of the northern hemisphere: diversity and evolution
Figure 3. Phylogenetic tree for northern hemisphere Pharaxonothinae beetles associated with cycads based on maximum likelihood analysis of 16S rRNA mitochondrial gene sequences, scale bar indicates base pair substitution per nucleotides position, numbers on branches are bootstrap values.
Figure 2 in Beetles (Coleoptera) in cones of cycads (Cycadales) of the northern hemisphere: diversity and evolution
Figure 2. Phylogenetic tree for Asian weevils of the Nanoplaxes group based on maximum likelihood analysis of 16S rRNA mitochondrial gene sequences, scale bar indicates base pair substitution per nucleotides position, numbers on branches are bootstrap values.
Figure 1 in Beetles (Coleoptera) in cones of cycads (Cycadales) of the northern hemisphere: diversity and evolution
Figure 1. Phylogenetic tree for New World Allocorynina weevils based on maximum likelihood analysis of 16S rRNA mitochondrial gene sequences, scale bar indicates base pair substitution per nucleotides position, numbers on branches are bootstrap values.
Figure 4 in Beetles (Coleoptera) in cones of cycads (Cycadales) of the northern hemisphere: diversity and evolution
Figure 4. Photomicrographs of male genitalia of three Pharaxonothinae genera. A) Cycadophila debonica, dorsal view, intact in the abdomen, showing lateral orientation with apex of aedeagus pointing toward the left side of the body. B) Ceratophila sp., lateral view, removed from the abdomen, tegmen is ventrad of the aedeagus instead of the typical dorsad position. C) Pharaxonotha kirschii, lateral view, displaying pronounced dorsoventral compression compared to the other two genera; tegmen is located ventrad of the aedeagus. a = aedeagus; gc = genital capsule; t = tegmen; scale = 1 mm.
Supporting data for ``Summer-Winter Contrast in the Response of Precipitation Extremes to Climate Change over Northern Hemisphere Land'"
<p>Here we have the processed data used in the preprint ``'Summer-Winter Contrast in the Response of Precipitation Extremes to Climate Change over Northern Hemisphere Land''</p> <p>The README.md file includes explanations about the data in the repository.</p>
Figures 9–16. Pompilid wasps and host spiders. 9 in Additional new and unusual host records for Western Hemisphere spider wasps (Hymenoptera: Pompilidae)
Figures 9–16. Pompilid wasps and host spiders. 9) Pepsis martini Vardy, female, with immobilized Diplura nigra (F. O. Pickard- Cambridge) (Dipluridae), adult or subadult female, Cristalino Lodge, Alto Floresta, Mato Grosso State, Brazil. Photograph © Sidnei Dantas. 10) Pepsis plutus Erichson, female, with immobilized Phoneutria fera Perty (Ctenidae), adult or subadult female, Saül, French Guiana. Photograph © Wouter Knaepen. 11) Priocnessus hurdi Dreisbach, female, with immobilized Euagrus?mexicanus (Ausserer) (Euagridae), adult or subadult female, Jantetelco, Morelas State, Mexico. Photograph © Paula Montserrat Crespo Barrera. 12) Priocnemella hexagona (Fox), female, with immobilized Phoneutria?fera Perty (Ctenidae), juvenile, National Forest of Jamari, Rondônia State, Brazil. Photograph © Pedro Paulo Machado Nascimento. 13) Sphictostethus striatulus Roig-Alsina, female, with immobilized?Grammostola sp. (Theraphosidae), juvenile, Altos de Cantillana Reserve, 12 km W Paine, Santiago Metropolitan Region, Chile. Photograph © Bernardo Segura. 14) Herbstellus pachylopus (Kohl), female, with immobilized Lycinus sp. (Nemesiidae), adult or subadult female, La Serena, Elqui Province, Coquimbo Region, Chile. Photograph © Simon Torres. 15) Caliadurgus maculatellus (Taschenberg), female, with immobilized Larinia sp. (Araneidae), adult or subadult female, Punilla, Córdoba Province, Argentina. Photograph © Andrea A. Coccuci. 16) Entypus magnus (Cresson), female, with immobilized Tigrosa georgicola (Walckenaer) (Lycosidae), adult or subadult female, Princeton, Collin County, Texas, USA. Photograph © Manda Bell.
Lightning Assimilation in the Weather Research and Forecasting (WRF) Model: Technique Updates and Assessment of the Applications from Regional to Hemispheric Scales
<p>Figure 1. The data is proprietary, but it can be purchased from Vaisala Inc. (https:// <a href="http://www.vaisala.com/en/products/systems/lightning-detection">www.vaisala.com/en/products/systems/lightning-detection</a>), and the WWLLN raw data are also available for purchase at <a href="http://wwlln.net">http://wwlln.net</a>.</p> <p>Figure 2. Maps, data is not applicable.</p> <p>Figure 3. Data file: NLDN_WWLLN_Prism_Rainfall_Analysis.xlsx</p> <p>Figure 4. Data file: NLDN_WWLLN_METVARS_T2_Jul_2016.xlsx</p> <p>Figure 5. Data file: CONUSall_METOBS_q_Jul_2016.xlsx</p> <p>Figure 6. Data file: CONUSall_METOBS_ws_Jul_2016.xlsx</p> <p>Figure 7. Created using the R script: Hemi_Rain_ModelOnlyWGPM.R based on the R object files: AnnualRainFall_CFC_WRF_Hemi_BASE_*.rds, AnnualRainFall_CFC_WRF_Hemi_LTA_*.rds, and GPM_WRF_Paired_rain2Hemispheric_July2016.rds.</p> <p>Figure 8. Created using the R script: Hemi_Rain_Aanlysis.R based on the R object files: AnnualRainFall_CFC_WRF_Hemi_BASE_*.rds and AnnualRainFall_CFC_WRF_Hemi_LTA_*.rds.</p> <p>Figure 9. Data file: CPC_Model_Monthly_Prep_Hemi_Stats.xlsx</p> <p>Figure 10. Data file: CPC_Model_Monthly_Prep_Hemi_Stats.xlsx</p> <p>Figure 11. Data file: CPC_Model_Monthly_Prep_Hemi_Stats.xlsx</p> <p>Figure 12. Created using the R script: CreateCPCdataforUSdomain_vs_Prism.R based on the R oject files: Prism_CFC_WRF*.rds</p> <p>Figure 13. Data file: Hemi_lta_METOBS_T2_Jul_2016.xlsx</p> <p>Figure 14. Data file: Hemi_lta_METOBS_q_Jul_2016.xlsx</p> <p> </p>
A temporally consistent 8-day 0.05° gap-free snow cover extent dataset over the Northern Hemisphere for the period 1981–2019
<p>Northern Hemisphere (NH) snow cover extent (SCE) is one of the most important indicator of climate change for its unique surface property. However, short temporal coverage, coarse spatial resolution, and different snow discrimination approach among published SCE products hampers its detailed studies. Using the Advanced Very High Resolution Radiometer Surface Reflectance (AVHRR-SR) Climate Data Record (CDR) and several ancillary datasets, this study generated a temporally consistent 8-day 0.05° gap-free NH terrestrial SCE product for the period 1981–2019 as part of the Global LAnd Surface Satellite dataset (GLASS) product suite. This process consistent of five steps. First, a decision tree algorithm with multiple threshold tests was applied to detect SCE from daily AVHRR-SR CDR. Second, we merge two existing daily SCE products to take advantage of their spatial coverage. Third, an aggregation process was used to detect the maximum SCE in each 8-day periods. Forth, the GLASS SCE was generated with the help of snow cover probability climatology. Fifth, the validation process was carried out to evaluate the quality of GLASS SCE. Validation results by using 562 Global Historical Climatology Network stations during 1981–2017 (r=0.61, p<0.05) and MOD10C2 during 2001–2019 (r=0.97, p<0.01) proved that the GLASS SCE product is credible in snow cover frequency monitoring. Moreover, cross-comparison between GLASS SCE and surface albedo during 1982–2018 further confirmed its values in climate changes studies.</p> <p>The GLASS SCE data set provides binary maps of snow cover for the Northern Hemisphere from September 1981 to the December 2019. The data are organized by year and provided in GeoTIFF formats. The gridcells were flagged as “0” if classified as "Non-snow", "1" if retrieved from AVHRR satellite observations, and "2" if filled by IMS snow climatology.</p> <p>Spatial Coverage: N: 90, S: 0, E: 180, W: -180<br> Spatial Resolution: 0.05 deg x 0.05 deg<br> Samples = 7200<br> Lines = 1800<br> Temporal Coverage: September 1981 to December 2019<br> Temporal Resolution: 8-day</p>
Argo Trajectories under ice (Southern Hemisphere, version 2022.05)
<p>Argo floats sometimes sample under ice, and do not return a measured position. Here, we provide estimates of positions using the multiple-constraint method described by Oke et al. (2022). </p> <p>Each file includes longitude and latitude from GPS measurements when floats are not under ice. When floats are under ice, positions are estimated by linearly interpolating between known locations (the traditional approach used by the Argo community), and using constraints: potential vorticity, f/H; mean sea-level, and density at 1000 m. A merged trajectory is also included, but users might select their preferred estimate based on their understanding of the ocean circulation at the time of measurement.</p> <p>Oke, P. R., T. Rykova, G. S. Pilo, J. L. Lovell, 2022: Estimating Argo float trajectories under ice, Journal of Geophysical Research - Earth and Space Science, under review.</p>
Investigation of the southern hemisphere mid-high latitude thermospheric ∑O/N2 responses to the Space-X storm
<p>This data sets are the data used to plot the figures in the above mentioned paper (Figure 3 to 6)</p> <p>All files are in dimension 288*144*6, 288 stands for longitudes number from -180 to 180 with a resolution of 1.25</p> <p>144 stands for latitude numbers fro -88.75 to 88.75 with a resolution of 1.25. 6 stands for the time, 0:20, 2:20, 4:20, 7:20, 10:20 and 13:20 UT on DOY 34.</p> <p>dON2 stand for the percentage diff of column density ratio of O to N2 between DOY 34 and 32</p> <p>UN stands for zonal wind, VN stands for meridional wind, TN stands for neutral temperature</p> <p>QJO stands for Joule heating rate per unit mass near 160 km</p> <p>POTEN stands for ionosphere potential</p>
Dataset for: A hemispheric two-channel code accounts for binaural unmasking in humans
<p><strong>Dataset for the paper: A hemispheric two-channel code accounts for binaural unmasking in humans.</strong></p> <p>The model code to generate this data has been published here: <a href="https://doi.org/10.5281/zenodo.5643429">https://doi.org/10.5281/zenodo.5643429</a></p>
Figures 50–52 in A New Aquatic Associated Genus of Trichopezinae from the Southern Hemisphere (Diptera: Empidoidea: Brachystomatidae)
Figures 50–52. Distribution of Gondwanodromia: (50) Australian species; (51) New Zealand species; (52) South American species.
Figures 48–49 in A New Aquatic Associated Genus of Trichopezinae from the Southern Hemisphere (Diptera: Empidoidea: Brachystomatidae)
Figures 48–49. Male terminalia of Australian and New Zealand species of Gondwanodromia, lateral view: (48) G. tonnoiri sp. nov.; (49) G. wardi sp. nov. Scale bar = 0.1 mm. Abbreviations: a sur – anterior surstylus; cerc –cercus; epand – epandrium; hypd – hypandrium; p sur – posterior surstylus; ph – phallus; sur – surstylus.
Figures 43–47 in A New Aquatic Associated Genus of Trichopezinae from the Southern Hemisphere (Diptera: Empidoidea: Brachystomatidae)
Figures 43–47. New Zealand species of Gondwanodromia: (43) G. tongariro sp. nov, holotype, male terminalia, scale bar = 0.25 mm; (44) G. femorata sp. nov., female midleg, scale bar = 0.5 mm (courtesy Canterbury Museum); (45) G. femorata sp. nov., female abdomen, scale bar = 0.5 mm (courtesy Canterbury Museum); (46) G. wardi sp. nov., holotype (abdomen dissected), lateral view, scale bar = 0.5 mm (courtesy Canterbury Museum); (47) G. wardi sp. nov., holotype (abdomen dissected), dorsal view, scale bar = 0.5 mm (courtesy Canterbury Museum). Abbreviations: epand lb – epandrial lobe; sur – surstylus.
Figures 41–42 in A New Aquatic Associated Genus of Trichopezinae from the Southern Hemisphere (Diptera: Empidoidea: Brachystomatidae)
Figures 41–42. Gondwanodromia tasmanica sp. nov., lateral view: (41) male terminalia; (42) female terminalia. Scale bar = 0.1 mm. Abbreviations: cerc – cercus; epand – epandrium; hypd – hypandrium; sur – surstylus.
Figures 30–33 in A New Aquatic Associated Genus of Trichopezinae from the Southern Hemisphere (Diptera: Empidoidea: Brachystomatidae)
Figures 30–33. Gondwanodromia mikae sp. nov.: (30) male head, lateral view; (31) epandrium, dorsal view, right cercus removed; (32) terminalia, lateral view; (33) hypandrium and phallus, lateral view. Scale bars: Figs 31–33 = 0.05 mm; Fig. 30 = 0.1 mm. Abbreviations: cerc – cercus; ej apod – ejaculatory apodeme; epand – epandrium; goncx apod – gonocoxal apodeme; hypd – hypandrium; lc – lacinia; ph – phallus; plp – palpus; pped – postpedicel; sbepand scl – subepandrial sclerite; st – sternite; sur – surstylus.
Figures 34–36 in A New Aquatic Associated Genus of Trichopezinae from the Southern Hemisphere (Diptera: Empidoidea: Brachystomatidae)
Figures 34–36. Gondwanodromia mutabilis (Collin), lateral view: (34) male terminalia; (35) female terminalia; (36) spermatheca. Scale bar = 0.1 mm. Abbreviations: cerc – cercus; epand – epandrium; hypd – hypandrium; ph – phallus; sur – surstylus.
Figures 19–23 in A New Aquatic Associated Genus of Trichopezinae from the Southern Hemisphere (Diptera: Empidoidea: Brachystomatidae)
Figures 19–23. Gondwanodromia mikae sp. nov.: (19) labellum, lateral view, scale bar = 0.05 mm; (20) wing, scale bar = 1.0 mm; (21) male antenna, lateral view, scale bar = 0.1 mm; (22) tarsomere 5, dorsal view, scale bar = 0.05 mm; (23) tarsomere 5, lateral view, scale bar = 0.05 mm. Abbreviations: pped – postpedicel; psdtrch – pseudotrachea.
Figures 24–29 in A New Aquatic Associated Genus of Trichopezinae from the Southern Hemisphere (Diptera: Empidoidea: Brachystomatidae)
Figures 24–29. Gondwanodromia mikae sp. nov.: (24) epandrium, dorsal view; (25) epandrium, dorsal view; (26) hypandrium and phallus, lateral view; (27) hypandrium and phallus, posterior view; (28) female terminalia, lateral view, scale bar = 0.05 mm; (29) female abdomen, lateral view. Scale bars: Figs 24–28 = 0.05 mm; Fig. 29 = 0.1 mm. Abbreviations: cerc – cercus; epand – epandrium; hypd – hypandrium; ph – phallus; spmth – spermatheca; sur – surstylus; tg – tergite.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.