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1,473 results for “Geographic distribution”
Figs 65–70 in Geographic Distribution Of Lispocephala Pokorny (Diptera: Muscidae), With Descriptions Of New Species From China
Figs 65–70. Lispocephala mucronata sp. n.: 65 = phallosome (scale bar: 0.2 mm); 66 = paramere (scale bar: 0.1 mm); 67 = terminalia, profile view (scale bar: 0.2 mm); 68 = sternite 5 (scale bar: 0.2 mm); 69 =
Figs 47–52 in Geographic Distribution Of Lispocephala Pokorny (Diptera: Muscidae), With Descriptions Of New Species From China
Figs 47–52. Lispocephala apertura sp. n.: 47 = phallosome (scale bar: 0.2 mm); 48 = sternite 5 (scale bar: 0.2 mm); 49 = cerci, posterior view (scale bar: 0.2 mm); 50 = terminalia, profile view (scale bar:
Figs 42–46 in Geographic Distribution Of Lispocephala Pokorny (Diptera: Muscidae), With Descriptions Of New Species From China
Figs 42–46. Lispocephala longihirsuta sp. n.: 42 = lobe of sternite 5, profile view; 43 = sternite 5; 44 = cerci, posterior view; 45 = phallosome; 46 = terminalia, profile view. (Scale bars 0.2 mm each)
Figs 30–34 in Geographic Distribution Of Lispocephala Pokorny (Diptera: Muscidae), With Descriptions Of New Species From China
Figs 30–34. Lispocephala applicatilobata sp. n.: 30 = cerci, posterior view (scale bar: 0.2 mm); 31 = sternite 5 (scale bar: 0.2 mm); 32 = lobe of sternite 5, profile view (scale bar: 0.2 mm); 33 = termi-
Figs 24–29 in Geographic Distribution Of Lispocephala Pokorny (Diptera: Muscidae), With Descriptions Of New Species From China
Figs 24–29. Lispocephala parciseta sp. n.: 24 = terminalia, profile view (scale bar: 0.2 mm); 25 = sternite 5 (scale bar: 0.1 mm); 26 = lobe of sternite 5, profile view (scale bar: 0.05 mm); 27 = phallosome (scale bar: 0.2 mm); 28 = paramere (scale bar: 0.2 mm); 29 = cerci, posterior view (scale bar: 0.2 mm)
Figs 19–23 in Geographic Distribution Of Lispocephala Pokorny (Diptera: Muscidae), With Descriptions Of New Species From China
Figs 19–23. Lispocephala flaviscutella sp. n.: 19 = phallosome; 20 = sternite 5; 21 = cerci, posterior view; 22 = lobe of sternite 5, profile view; 23 = terminalia, profile view. (Scale bars 0.2 mm each)
Figs 36–41 in Geographic Distribution Of Lispocephala Pokorny (Diptera: Muscidae), With Descriptions Of New Species From China
Figs 36–41. Lispocephala apicihamata sp. n.: 36 = cerci, posterior view (scale bar: 0.2 mm); 37 = phallosome (scale bar: 0.2 mm); 38 = lobe of sternite 5, profile view (scale bar: 0.1 mm); 39 = sternite 5
Figs 8–13 in Geographic Distribution Of Lispocephala Pokorny (Diptera: Muscidae), With Descriptions Of New Species From China
Figs 8–13. Lispocephala dynatophallus sp. n.: 8 = cerci, posterior view (scale bar: 0.2 mm); 9 = sternite 5 (scale bar: 0.2 mm); 10 = paramere (scale bar: 0.1 mm); 11 = phallosome (scale bar: 0.2 mm);
Figs 2–7 in Geographic Distribution Of Lispocephala Pokorny (Diptera: Muscidae), With Descriptions Of New Species From China
Figs 2–7. Lispocephala bomiensis sp. n.: 2 = cerci, posterior view (scale bar: 0.2 mm); 3 = terminalia, profile view (scale bar: 0.2 mm); 4 = paramere (scale bar: 0.1 mm); 5 = sternite 5 (scale bar: 0.2 mm);
Figs 14–18 in Geographic Distribution Of Lispocephala Pokorny (Diptera: Muscidae), With Descriptions Of New Species From China
Figs 14–18. Lispocephala valva sp. n.: 14 = phallosome; 15 = terminalia, profile view; 16 = cerci, posterior view; 17 = sternite 5; 18 = lobe of sternite 5, profile view. (Scale bars 0.2 mm each)
Figs 76–77 in Geographic Distribution Of Lispocephala Pokorny (Diptera: Muscidae), With Descriptions Of New Species From China
Figs 76–77. Lispocephala nigriala sp. n.: 76 = terminalia, profile view (scale bar: 0.2 mm); 77 = sternite 5 (scale bar: 0.2 mm)
Fig. 4 in Distributions and phylogeographic data of rheophilic freshwater fishes provide evidences on the geographic extension of a central-brazilian amazonian palaeoplateau in the area of the present day Pantanal Wetland
Fig. 4. Haplotype network showing the occurrence of three groups (upper rio Xingu, upper rio Paraguay and upper rio Tapajós). Traces show the number of mutational steps from two adjacent haplotypes. Circle diameters are proportional to the number of individuals, which each haplotype and the colors represent the locality were those haplotypes were found. Upper rio Xingu= Pink (1: dark pink); upper rio Paraguay = Blue (2: light blue; 3: navy blue; 4: dark blue; 5: light pink; 6: orange; 7: light purple; 8: dark purple; 9: white; 10: yellow; 11: light green; 12: dark green); and upper rio Tapajós= Gray (13: light gray and 14: dark gray).
Fig. 3 in Distributions and phylogeographic data of rheophilic freshwater fishes provide evidences on the geographic extension of a central-brazilian amazonian palaeoplateau in the area of the present day Pantanal Wetland
Fig. 3. Phylogenetic tree showing relationships among major lineages of Jupiaba acanthogaster from the upper rio Paraguay, upper rio Tapajós and upper rio Xingu, obtained by a maximum likelihood partitioned analysis. Numbers at each of the main nodes represents percentage of bootstrap support obtained by maximum parsimony analysis (1000 bootstrap pseudoreplicates).
Fig. 2 in Distributions and phylogeographic data of rheophilic freshwater fishes provide evidences on the geographic extension of a central-brazilian amazonian palaeoplateau in the area of the present day Pantanal Wetland
Fig. 2. Distribution of sampled localities for Jupiaba acanthogaster in the upper rio Paraguay, rio Tapajós and rio Xingú basins. The drainages of the rio Tocantins, rio Araguaia and upper rio Paraná are also illustrated. Drainage boundaries delimited by a continuous black line.
Fig. 1 in Distributions and phylogeographic data of rheophilic freshwater fishes provide evidences on the geographic extension of a central-brazilian amazonian palaeoplateau in the area of the present day Pantanal Wetland
Fig. 1. Map of the upper rio Paraguay basin and adjoining areas showing the distribution of Leporinus octomatulatus, Jubiaba acanthogaster, Oligosarcus perdido, Moenkhausia cosmops, and Hypostomus cochliodon, exemplifying distributional pattern discussed in this paper.
Рис. 1. ЭкоΛого-географическая характеристика зоопΛанктона гиΔротермаΛьной зоны оз. Кенон в июΛе 2019 г.: А — зоогеография, Б — местообитание, В — способ переΔвижения, Г — способ питания Fig. 1. Ecological and geographic characteristics of zooplankton in the hydrothermal zone of Lake Kenon in July 2019: А — zoogeography, Б — habitat, В — type of locomotion, Г — type of feeding in Zooplankton Structure And Distribution In The Hydrothermal Zone Of Cooling Reservoirs (Trans-Baikal Territory)
Рис. 1. ЭкоΛого-географическая характеристика зоопΛанктона гиΔротермаΛьной зоны оз. Кенон в июΛе 2019 г.: А — зоогеография, Б — местообитание, В — способ переΔвижения, Г — способ питания Fig. 1. Ecological and geographic characteristics of zooplankton in the hydrothermal zone of Lake Kenon in July 2019: А — zoogeography, Б — habitat, В — type of locomotion, Г — type of feeding
Fig. 1 in Potential geographic distributions of two parthenogenetic weevils (Coleoptera: Curculionidae) associated with citrus in Argentina and Brazil
Fig. 1. Binary maps of the ecological niche models for 2 parthenogenetic weevils. (A) Parapantomorus fluctuosus; (B) Pantomorus cinerosus. Potential distributions are shown in red and occurrence records used in the model are in white circles.
Figs. 4A-B in New record and expansion of the geographic distribution of Parodia mueller-melchersii (Frič ex BAckeb.) N. P. TAylor (CActAceAe) in the Southern region of Rio GrAnde do Sul, BrAZil
Figs. 4A-B. Parodia mueller-melchersii habitat in Jaguarão, RS. A. Rocky outcrop; B. Surrounding vegetation.
Figs. 2A-D. Parodia mueller-melchersii.A in New record and expansion of the geographic distribution of Parodia mueller-melchersii (Frič ex BAckeb.) N. P. TAylor (CActAceAe) in the Southern region of Rio GrAnde do Sul, BrAZil
Figs. 2A-D. Parodia mueller-melchersii.A. General appearance (frontal view); B. General appearance (lateral view); C. Habitus; D. Juvenile specimens.
Figure 3 in How can global climate change influence the geographic distribution of the eucalyptus yellow beetle? Modeling and prediction for Brazil
Figure 3. Predicting of potential areas to the occurrence of Costalimaita ferruginea in the period of 2061-2080, in two climate change scenarios, Representative Concentration Pathways (RCP) 4.5 e 8.5 (W/m2), using the algorithm Envelope Score (AUC = 0.808). The numbers 1 to 5 represent the Brazilian biomes, being 1 = Amazônia, 2 = Caatinga, 3 = Cerrado, 4 = Pantanal, 5 = Mata Atlântica e 6 = Pampa.
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.