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3,067 results for “distributional records”
FIGURE 5. Distribution records for A in Three new pygmy seahorse species from Indonesia (Teleostei: Syngnathidae: Hippocampus)
FIGURE 5. Distribution records for A) Hippocampus pontohi, B) Hippocampus severnsi, C) Hippocampus satomiae.
FIGURES 208–215. Distribution records. 208, T in <strong>Phylogeny and Revision of <em>Toechorychus</em> Townes (Hymenoptera, Ichneumonidae, Cryptinae), with descriptions of thirty-five new species</strong>
FIGURES 208–215. Distribution records. 208, T. amazonensis sp. nov., holotype. 209, T. itapuensis sp. nov., holotype. 210, T. paramaribus sp. nov., holotype. 211, T. guarapuavus sp. nov., holotype. 212, T. melgassus sp. nov., holotype. 213, T. coaracius sp. nov., holotype. 214, T. vinhaticus sp. nov., holotype. 215, T. morelus sp. nov.
FIGURES 200–207. Distribution records. 200, T. abactus Cresson. 201, T. albimaculatus Taschenberg. 202, T in <strong>Phylogeny and Revision of <em>Toechorychus</em> Townes (Hymenoptera, Ichneumonidae, Cryptinae), with descriptions of thirty-five new species</strong>
FIGURES 200–207. Distribution records. 200, T. abactus Cresson. 201, T. albimaculatus Taschenberg. 202, T. brevicaudis Szépligeti. 203, T. cassunungae Brauns. 204, T. stramineus Taschenberg. 205, T. ondensis sp. nov., holotype. 206, T. zulius sp. nov., holotype. 207, T. amapaeus sp. nov.
FIGURES 232–239. Distribution records. 232, T in <strong>Phylogeny and Revision of <em>Toechorychus</em> Townes (Hymenoptera, Ichneumonidae, Cryptinae), with descriptions of thirty-five new species</strong>
FIGURES 232–239. Distribution records. 232, T. linaresius sp. nov., holotype. 233, T. vilhenus sp. nov., holotype. 234, T. marowijnus sp. nov., holotype. 235, T. darienus sp. nov., holotype. 236, T. kawus sp. nov., holotype. 237, T. jatainus sp. nov., holotype. 238, T. pirrus sp. nov., holotype. 239, T. benius sp. nov.
FIGURES 216–223. Distribution records. 216, T in <strong>Phylogeny and Revision of <em>Toechorychus</em> Townes (Hymenoptera, Ichneumonidae, Cryptinae), with descriptions of thirty-five new species</strong>
FIGURES 216–223. Distribution records. 216, T. marcapatus sp. nov., holotype. 217, T. fluminensis sp. nov., holotype. 218, T. barticus sp. nov., holotype. 219, T. martinus sp. nov., holotype. 220, T. tumazulus sp. nov., holotype. 221, T. callangus sp. nov., holotype. 222, T. sinopus sp. nov., holotype. 223, T. catarinus sp. nov.
FIGURES 224–231. Distribution records. 224, T in <strong>Phylogeny and Revision of <em>Toechorychus</em> Townes (Hymenoptera, Ichneumonidae, Cryptinae), with descriptions of thirty-five new species</strong>
FIGURES 224–231. Distribution records. 224, T. calius sp. nov., holotype. 225, T. taperinus sp. nov., holotype. 226, T. bombuscarus sp. nov., holotype. 227, T. teutonius sp. nov., holotype. 228, T. nourageus sp. nov., holotype. 229, T. heredius sp. nov., holotype. 230, T. napus sp. nov., holotype. 231, T. surinamus sp. nov.
FIGURE 4 in New records and distribution modeling of Gryne orensis (Sørensen) (Opiliones: Cosmetidae) support the Mesopotamian-Yungas disjunction in subtropical Argentina
FIGURE 4. Overlay of two binary MAXENT models, one built with the default dataset (45 points, AUC: 0.975), the second with record at Caimancito (a) deleted (44 points, AUC: 0.977); shared areas by the two models (overlap) are displayed in light red; areas lost with the smallest dataset are shown in dark red. Blue dots: training records, yellow dots in province of Chaco: tentative records at El Impenetrable (not used in this model).
FIGURE 3 in New records and distribution modeling of Gryne orensis (Sørensen) (Opiliones: Cosmetidae) support the Mesopotamian-Yungas disjunction in subtropical Argentina
FIGURE 3. Binary distribution models built with BIOCLIM (A) and MAXENT (B), showing the region around the Semiarid Chaco. Maps are overlaid to display changes of the default model (intense red) when points at El Impenetrable are added in the dataset (one at a time): light red, area added with Villa Río Bermejito (1); orange, area added with Las Hacheras (2); yellow, area added with Fuerte Esperanza (3). White dots: localities of the default dataset; blue dots: tentative records at El Impenetrable (numbers as referred to above). Crosses in 3A: localities sampled in the dry Chaco that yielded negative results for Mesopotamian harvestmen.
FIGURE 2 in New records and distribution modeling of Gryne orensis (Sørensen) (Opiliones: Cosmetidae) support the Mesopotamian-Yungas disjunction in subtropical Argentina
FIGURE 2. Potential distribution model of Gryne orensis: median values of the 20-replicates run with MAXENT (default dataset, random test percentage 20%); thresholds displayed are the average of the 20 replicates (average training AUC 0.9762). In the random selection of training points, Caimancito was used in 17/20 runs, Carandazinho in 14/20 runs. Suitability levels: green: 0.15–0.36; yellow: 0.36–0.58; orange: 0.58–0.72; red: above 0.72. Grey: areas below the default threshold (equal training sensitivity plus specificity); darker grey: suitability above 0.112 (maximum training sensitivity plus specificity); medium grey: above 0.0801 (minimum training presence). Blue dots: training records; red dots in province of Chaco: tentative records at El Impenetrable (not used in this model).
FIGURE 1 in New records and distribution modeling of Gryne orensis (Sørensen) (Opiliones: Cosmetidae) support the Mesopotamian-Yungas disjunction in subtropical Argentina
FIGURE 1. Locality records (red dots) and predicted distribution of Gryne orensis built with the default dataset (n=45). Map displays the overlay of models obtained with BIOCLIM (green; true-false, full extension) and MAXENT (light blue; single run, binary), overlapping areas in dark blue. White outline: Humid Chaco and Paraná flooded savanna; grey outline: Pantanal (ecoregions according to Olson et al. 2001). Selected localities: a. Caimancito, b. Carandazinho, c. Posadas, d. Vuelta de Obligado, e. Villa Constitución-Villa del Medio-San Nicolás, f. Santa Fe (2 points)-Madrejón Don Felipe, g. Riacho de Oro (type locality), h. El Colorado, i. Pirané. Yellow dots in province of Chaco indicate the three tentative localities for El Impenetrable: Villa Río Bermejito (1), Las Hacheras (2) and Fuerte Esperanza (3).
FIGURE 1 in Checklist and new distribution records of katydids (Orthoptera: Tettigoniidae) from Colombia
FIGURE 1. Accumulation of Tettigoniidae species described from Colombia from 1844 to the present. The principal peaks of the curve correspond to the publications by Brunner von Wattenwyl in 1878 and 1895, Hebard in 1927, and Beier in 1960.
FIGURE 2 in A new species of Smicridea McLachlan 1871 (Trichoptera: Hydropsychidae) from the Caatinga biome and new distributional records from Brazil
FIGURE 2. Smicridea (Smicridea) caatinga sp. nov., holotype male. 2A, segments IX, X, and inferior appendages, dorsal. 2B, segments IX, X, and inferior appendages, right lateral. 2C–2E, retracted phallus: 2C, right lateral; 2D, dorsal; 2E, ventral. 2F– 2G, everted phallus: 2F, right lateral; 2G, posterior or caudal. Scale bar = 0.2 mm.
FIGURE 1 in A new species of Smicridea McLachlan 1871 (Trichoptera: Hydropsychidae) from the Caatinga biome and new distributional records from Brazil
FIGURE 1. Map showing the Sete Cidade and Ubajara National Parks, with the respective sample localities of the new species of Smicridea. Modified from the work of Freire (2018).
FIGURE 2–6 in Description of the male of the spider Dubiaranea difficilis (Araneae: Linyphiidae), with new records and modeling of its potential geographic distribution
FIGURE 2–6. Dubiaranea difficilis (Mello-Leitão 1944). 2. Female from Huerta Grande, Córdoba, 09 May 2009 (CDA 000.813), ventral view of epigynum. 3–6: Male from La Falda, Córdoba, 24 October 2008 (MLP 17986). 3. Left palpus, ectal view. 4. Left palpus, mesal view. 5. Habitus, dorsal view. 6. Habitus, lateral view. (C = abdominal chevrons; E = embolus; LC = lamella characteristica; CLC = caudal apophysis of LC; G = thoracic groove; MLC = mesal apophysis of LC; MSA = marginal suprategular apophysis; P = paracymbium; SPT = suprategulum). Scale bars: (2–4) 0.25 mm; (5, 6) 1 mm.
FIGURE 1 in Description of the male of the spider Dubiaranea difficilis (Araneae: Linyphiidae), with new records and modeling of its potential geographic distribution
FIGURE 1. Dubiaranea difficilis (Mello-Leitão 1944), male and female mating in nature; spiders are located in the sheet-web of the female. Left photo from La Falda, Córdoba (November 2008); right photo from Huerta Grande, Córdoba (September 2009).
FIGURE 7 in Description of the male of the spider Dubiaranea difficilis (Araneae: Linyphiidae), with new records and modeling of its potential geographic distribution
FIGURE 7. Locality records (yellow circles) and potential predictive range (blue colored areaa) of the spider Dubiaranea difficilis (Mello-Leitão 1944)(Linyphiidae) in Argentina (Northwest, central Sierras and Pampean sectors), Bolivia and Brazil. The arrow indicates the type locality. The darkest color indicates highest probability assigned by the MAXENT model (four intervals: 0.98–0.85; 0.85–0.60; 0.60–0.43 and 0.43–0.21). (BA = Buenos Aires Province; Co = Córdoba Province; Ju = Jujuy Province; Sa = Salta Province; SL = San Luis Province; Tu = Tucumán Province).
FIGURES 15–21 in New leafhopper species and distribution records of Gabrita Walker, 1858 and Sandersellus DeLong, 1945 with revised keys to species (Hemiptera: Cicadellidae: Coelidiinae)
FIGURES 15–21. Sandersellus digitatus, sp. nov. Fig. 15. Male pygofer, lateral view; Fig. 16. Subgenital plate, ventral view; Fig. 17. Right style, dorsal view; Fig. 18. Right style, lateral view; Fig. 19. Dorsum, dorsal view; Fig. 20. Aedeagus, lateral view; Fig. 21. Aedeagus, dorsal view. (All views 50X)
FIGURES 1–8 in New leafhopper species and distribution records of Gabrita Walker, 1858 and Sandersellus DeLong, 1945 with revised keys to species (Hemiptera: Cicadellidae: Coelidiinae)
FIGURES 1–8. Gabrita erwini, sp. nov. Fig. 1. Dorsal habitus; Fig. 2. Foreleg, lateral view; Fig. 3. Head, pronotum and mesonotum, dorsal view; Fig. 4. Male pygofer, lateral view; Fig. 5. Subgenital plate, ventral view; Fig. 6. Right style, lateral view; Fig. 7. Aedeagus, lateral view; Fig. 8. Aedeagus, ventral view. (All views 50X except dorsal habitus, 7.50X.)
FIGURES 22–27 in New leafhopper species and distribution records of Gabrita Walker, 1858 and Sandersellus DeLong, 1945 with revised keys to species (Hemiptera: Cicadellidae: Coelidiinae)
FIGURES 22–27. Sandersellus bilanceus, sp. nov. Fig. 22. Male pygofer, lateral view; Fig. 23. Subgenital plate, ventral view; Fig. 24. Right style, dorsal view; Fig. 25. Right style, lateral view; Fig. 26. Aedeagus, dorsal view; Fig. 27. Aedeagus, lateral view. (All views 40X.)
FIGURES 9–14 in New leafhopper species and distribution records of Gabrita Walker, 1858 and Sandersellus DeLong, 1945 with revised keys to species (Hemiptera: Cicadellidae: Coelidiinae)
FIGURES 9–14. Sandersellus bigladius, sp. nov. Fig.9. Male pygofer, lateral view; Fig. 10. Subgenital plate, ventral view; Fig. 11. Right style, lateral view; Fig. 12. Right style, dorsal view; Fig. 13. Aedeagus, dorsal view; Fig. 14. Aedeagus, lateral view. (All views 50X.)
ScienceDex guides
Understand access before you commit
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.