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325 results for “Distribution limits”
Fig. 1. Taurocerastinae.A in Comparing Realized and Potential Distributions of the Species of Taurocerastinae (Coleoptera: Geotrupidae) to Examine the Relevance of Dispersal Limitations and Contemporary Environmental Factors
Fig. 1. Taurocerastinae.A) Male Frickius costulatus, B) Male F. variolosus, C) Pair of Taurocerastes patagonicus. Photo A by Guillermo Moreno (used with permission); photos B and C by Mauricio GonzÁlez-Chang.
Fig. 2. A in Comparing Realized and Potential Distributions of the Species of Taurocerastinae (Coleoptera: Geotrupidae) to Examine the Relevance of Dispersal Limitations and Contemporary Environmental Factors
Fig. 2. A) Map showing the geographic occurrences of Frickius costulatus (two green points), F. variolosus (43 red points), and Taurocerastes patagonicus (37 blue points), B) Predicted distributional ranges for the three species, with the green area corresponding to the shared distributional range between the two Frickius species and the yellow area corresponding to the shared distributional area between F. variolosus and T. patagonicus.
Figure 7 in Reflection of the Neogene-Quaternary phylogeography in the recent distribution limiting climatic factors of eight Mediterranean Phlebotomus species (Diptera: Psychodidae)
Figure 7. The hierarchical factor analysis of the monthly mean temperature values (°C), the maximum of the monthly mean temperature values (°C), the minimum of the monthly minimum temperature values (°C), the maximum of the monthly minimum temperature values (°C), the minimum of the monthly precipitation values (mm) and the maximum of the monthly precipitation values (mm) limits of the eight studied Phlebotomus species.
Figure 2 in Reflection of the Neogene-Quaternary phylogeography in the recent distribution limiting climatic factors of eight Mediterranean Phlebotomus species (Diptera: Psychodidae)
Figure 2. Jaccard indices of countrywide sand fly diversities according to the Italy focus, based on the eight involved Phlebotomus species.
Figure 6 in Reflection of the Neogene-Quaternary phylogeography in the recent distribution limiting climatic factors of eight Mediterranean Phlebotomus species (Diptera: Psychodidae)
Figure 6. The principal component analysis result of the eight studied Phlebotomus species according to the maximum monthly precipitation value limits of the species.
Figure 10 in Reflection of the Neogene-Quaternary phylogeography in the recent distribution limiting climatic factors of eight Mediterranean Phlebotomus species (Diptera: Psychodidae)
Figure 10. The aggregated distribution of the species of the 'West-Mediterranean group' (absence: empty, presence: red fields; NUTS 3 regions).
Figure 9 in Reflection of the Neogene-Quaternary phylogeography in the recent distribution limiting climatic factors of eight Mediterranean Phlebotomus species (Diptera: Psychodidae)
Figure 9. The aggregated distribution of the species of the 'East-Mediterranean group' (absence: empty, presence: red fields; NUTS 3 regions).
Figure 1 in Reflection of the Neogene-Quaternary phylogeography in the recent distribution limiting climatic factors of eight Mediterranean Phlebotomus species (Diptera: Psychodidae)
Figure 1. Jaccard indices of countrywide sand fly diversities according to the Portugal focus, based on the eight involved Phlebotomus species.
Figure 8 in Reflection of the Neogene-Quaternary phylogeography in the recent distribution limiting climatic factors of eight Mediterranean Phlebotomus species (Diptera: Psychodidae)
Figure 8. The aggregated distribution of the species of the 'Trans-Mediterranean group' (absence: empty, presence: red fields; NUTS 3 regions).
Figure 4 in Reflection of the Neogene-Quaternary phylogeography in the recent distribution limiting climatic factors of eight Mediterranean Phlebotomus species (Diptera: Psychodidae)
Figure 4. The hierarchical cluster analysis result of the eight studied Phlebotomus species according to their presence/absence status in the studied countries (CH, Switzerland; D, Germany; I, Italy; P, Portugal; E, Spain; F, France; TR, Turkey; CY, Cyprus; BG, Bulgaria; BIH, Bosnia and Herzegovina; AL, Albania; MNE, Montenegro; GR, Greece; RO, Romania; KOS, Kosovo; HR, Croatia; SRB, Serbia; MD, Moldova; H, Hungary; MK, Macedonia.
Figure 3 in Reflection of the Neogene-Quaternary phylogeography in the recent distribution limiting climatic factors of eight Mediterranean Phlebotomus species (Diptera: Psychodidae)
Figure 3. Jaccard indices of countrywide sand fly diversities according to the Greece focus, based on the eight involved Phlebotomus species.
Figure 11 in Reflection of the Neogene-Quaternary phylogeography in the recent distribution limiting climatic factors of eight Mediterranean Phlebotomus species (Diptera: Psychodidae)
Figure 11. The geographical and climatic reconstruction maps for the European Early Late and Middle Miocene era with the mean annual temperature values according to the Neogene Climate Evolution in Eurasia model, based on the findings of Bruch et al. (2007). The yellow dashed line shows the climate border in the region of the Paratethys Sea.
FIGURE 28 in Deep sea without limits-four new closely related species of Emertonia Wilson 1932 (Copepoda: Harpacticoida: Paramesochridae) show characters with a worldwide distribution
FIGURE 28. Emertonia berndi sp. nov. Female (holotype). A, P5 (holotype); B, P6 and genital field. Scale bar = 0.02 mm.
FIGURE 27 in Deep sea without limits-four new closely related species of Emertonia Wilson 1932 (Copepoda: Harpacticoida: Paramesochridae) show characters with a worldwide distribution
FIGURE 27. Emertonia berndi sp. nov. Female (holotype). A, P1; B, P2 with intercoxal sclerite; C, P3; D, P4. Scale bar = 0.02 mm.
FIGURE 26 in Deep sea without limits-four new closely related species of Emertonia Wilson 1932 (Copepoda: Harpacticoida: Paramesochridae) show characters with a worldwide distribution
FIGURE 26. Emertonia berndi sp. nov. Female. A, antenna (paratype 1); B, mandibular palp (paratype 3); C, maxillule, disarticulated (paratype 2); D, maxilla (paratype 2); E, maxilliped (paratype 1). Scale bar = 0.01 mm.
FIGURE 25 in Deep sea without limits-four new closely related species of Emertonia Wilson 1932 (Copepoda: Harpacticoida: Paramesochridae) show characters with a worldwide distribution
FIGURE 25. Emertonia berndi sp. nov. Female (holotype). A, antennule (armature omitted); B, disarticulated antennulary segments showing armature. Scale bar = 0.02 mm.
FIGURE 24 in Deep sea without limits-four new closely related species of Emertonia Wilson 1932 (Copepoda: Harpacticoida: Paramesochridae) show characters with a worldwide distribution
FIGURE 24. Emertonia berndi sp. nov. Female (holotype). A, habitus, dorsal view; B, habitus, lateral view; C, caudal ramus, dorsal view. Scale bars = a, b, 0.1 mm; c, 0.02 mm.
FIGURE 23 in Deep sea without limits-four new closely related species of Emertonia Wilson 1932 (Copepoda: Harpacticoida: Paramesochridae) show characters with a worldwide distribution
FIGURE 23. Emertonia hessleri sp. nov. Male (paratype 3). A, right antennule, ventral view; B, left antennule (not all segments illustrated). Scale bar = 0.02 mm.
FIGURE 22 in Deep sea without limits-four new closely related species of Emertonia Wilson 1932 (Copepoda: Harpacticoida: Paramesochridae) show characters with a worldwide distribution
FIGURE 22. Emertonia hessleri sp. nov. Male (allotype). A, habitus, dorsal view; B, habitus, lateral view; C, caudal ramus, dorsal view. Scale bars = a, b, 0.05 mm; c, 0.02 mm.
FIGURE 16 in Deep sea without limits-four new closely related species of Emertonia Wilson 1932 (Copepoda: Harpacticoida: Paramesochridae) show characters with a worldwide distribution
FIGURE 16. Emertonia ilse sp. nov. Male (paratype 1). A, antennule (armature omitted); B, disarticulated antennulary segments showing armature. Scale bar = 0.02 mm.
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.