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860 results for “distribution ecology”
Fig. 5 in A Review Of Species Diversity, Distribution And Ecology Of Freshwater Gastropod Molluscs Inhabiting The Ukrainian Transcarpathian
Fig. 5. Altitude distribution of freshwater gastropod species found in the Transcarpathia. Height above the sea level (in m) is shown in vertical line.
Fig. 1 in A Review Of Species Diversity, Distribution And Ecology Of Freshwater Gastropod Molluscs Inhabiting The Ukrainian Transcarpathian
Fig. 1. Map showing the localities of samples studied. Details for each sampling point are given in table 1.
FIGURES 66–69. C. moggridgei specimen Shu.19.06.14 in Systematics, ecology and distribution of the mygalomorph spider genus Cteniza Latreille, 1829 (Araneae, Mygalomorphae, Ctenizidae)
FIGURES 66–69. C. moggridgei specimen Shu.19.06.14 Alpes Maritimes palp-organ (right hand side) in four clockwise rotational shifts of 90° around a central longitudinal axis. 66, standard ventral orientation used for taking measurements. Note general similarity with C. sauvagesi (Figs. 59–62) with slightly more slender and more proximally curved embolus, the apical tiny scoop (sc) is identical. Scale bars= 0.5 mm
FIGURES 72–75. Habitat types for Cteniza species. 72, C in Systematics, ecology and distribution of the mygalomorph spider genus Cteniza Latreille, 1829 (Araneae, Mygalomorphae, Ctenizidae)
FIGURES 72–75. Habitat types for Cteniza species. 72, C. moggridgei shady, moss-covered humid Mediterranean forest habitat, France, Alpes Maritimes (photo A. Decae); 73, C. sauvagesi open scrubland habitat, Italy, Calabria (photo P. Rizzo); 74, C. sauvagesi exposed road-side habitat Italy, Sardinia (photo S. Huber, permission); 75, shaded road-side habitat Calabria (photo P. Rizzo).
FIGURES 49–50. C in Systematics, ecology and distribution of the mygalomorph spider genus Cteniza Latreille, 1829 (Araneae, Mygalomorphae, Ctenizidae)
FIGURES 49–50. C. sauvagesi habitus of the NEOTYPE (female, Isaia.137, Corsica, Cap Corse, Oreta, (42.86°N, 9.43°E), leg. S. Mammola and A. Giresi) photographed submerged in 80% ethanol. 49, dorsal view; 50, ventral view. Scale bars= 10 mm.
FIGURES 33–36 in Systematics, ecology and distribution of the mygalomorph spider genus Cteniza Latreille, 1829 (Araneae, Mygalomorphae, Ctenizidae)
FIGURES 33–36. Living spiders of the genus Cteniza. 33, Ct. moggridgei (female, 20/04/05.4, Gorbio Alpes Maritimes); 34, Ct. sauvagesi (female, field recording by P. Rizzo Calabria); Ct. moggridgei (male, 20/04/05.5, Gorbio Alpes Maritimes); Ct. sauvagesi (male, field recording by P. Rizzo Calabria).
FIGURES 45–48 in Systematics, ecology and distribution of the mygalomorph spider genus Cteniza Latreille, 1829 (Araneae, Mygalomorphae, Ctenizidae)
FIGURES 45–48. Species level diagnostics, differences in spine patterns on leg I in males 45, C. sauvagesi (right, prolateral, NHMB.011, Corsica); 46, C. sauvagesi (right, retrolateral, NHMB.011, Corsica); 47, C. moggridgei (right, prolateral, 20.04.05.5, Alpes Maritimes); 48, C. moggridgei (right, retolateral, 20.04.05.5, Alpes Maritimes). Note the field of spikybristles (sb) on prolateral femur in C. sauvagesi (45) absent in C. moggridgei (47), and the relatively stronger spines on prolateral patella (ps) and tibia (ss) in C. moggridgei (47–48).
FIGURES 29–32 in Systematics, ecology and distribution of the mygalomorph spider genus Cteniza Latreille, 1829 (Araneae, Mygalomorphae, Ctenizidae)
FIGURES 29–32. Genus level diagnostic differences between Cteniza and Cyrtocarenum as seen in the armature and shape of the retrolateral male tibia and proximal metatarsus of leg I. 29, Ct. moggridgei (Shu-19.06.14 Alpes Maritimes); 30, Ct. sauvagesi (NHMB.011, Corsica); 31, Cy. cunicularium (GR80.11, Tinos); 32, Cy. grajum (GR.8.82.5, Kithira). Note strong spines (ss) in ventral half of the tibia and metatarsus as the sole armature in Cteniza and the strong ventral apical clasper-hooks mounted on a distinct process (ch) in Cyrtocarenum. Note also the difference in tibiae shape between the genera and the proximal bent and sclerotized metatarsus (sb) in Cyrtocarenum (absent in Cteniza). Scale bars= 1.0 mm
FIGURES 25–28 in Systematics, ecology and distribution of the mygalomorph spider genus Cteniza Latreille, 1829 (Araneae, Mygalomorphae, Ctenizidae)
FIGURES 25–28. Genus level diagnostic differences between Cteniza and Cyrtocarenum in the male bulb structure (standard ventral orientation). Left to right: 25, Ct. moggidgei (SHu.19.06.14, Alpes Maritimes); 26, Ct. sauvagesi (Isaia.134, Calabria); 27, Cy. cunicularium (GR80.11, Tinos); 28, Cy. grajum (GR.8.82.5, Kithira). Note the regular curve and tiny apical scoop (SC) in the embolus of the two Cteniza species and the robust distally bent and twisted embolus (tw) in the two Cyrtocarenum species. Scale bars= 0.5 mm
FIGURES 63–65 in Systematics, ecology and distribution of the mygalomorph spider genus Cteniza Latreille, 1829 (Araneae, Mygalomorphae, Ctenizidae)
FIGURES 63–65. Differences in male retrolateral tarsus I between three populations of C. sauvagesi. 63, specimen NHMB.011 from Corsica (tarsal spines absent); 64, specimen Colo.015 from Sardinia (tarsal spines absent); 65, specimen Isaia.133 from Calabria (tarsal spines (ts) present). Scale bars= 0.5 mm
FIGURE 3 in Gammaropsis elvirae sp. nov., a widely distributed amphipod (Amphipoda: Photidae) in the Yucatan Shelf, with ecological comments and a key for the genus in tropical America
FIGURE 3. Gammaropsis elvirae sp. nov., holotype male, 4.2 mm, ECOSUR0200; northern Yucatan shelf, Yucatan, Mexico. Scale bars represent 0.1 mm.
FIGURE 2 in Gammaropsis elvirae sp. nov., a widely distributed amphipod (Amphipoda: Photidae) in the Yucatan Shelf, with ecological comments and a key for the genus in tropical America
FIGURE 2. Gammaropsis elvirae sp. nov., holotype male, 4.2 mm, ECOSUR0200; northern Yucatan shelf, Yucatan, Mexico. Scale bar for H represents 1 mm; scale bars for G1 and G2 represent 0.3 mm.
FIGURE 1 in Gammaropsis elvirae sp. nov., a widely distributed amphipod (Amphipoda: Photidae) in the Yucatan Shelf, with ecological comments and a key for the genus in tropical America
FIGURE 1. Habitus of Gammaropsis elvirae sp. nov., holotype male, 4.2 mm, ECOSUR0200; northern Yucatan shelf, Yucatan, Mexico. Scale bar represents 1 mm. Photography provided by Daniela Ríos-Elósegui.
FIGURE 21 in The integration processes of the distributional patterns in the Mexican Transition Zone: Phyletic, paleogeographic and ecological factors of a case study
FIGURE 21. Distribution of the O. cyanellus species line, which hypothetically represents oldest stage of evolution of the O. chevrolati species group.
FIGURE 22 in The integration processes of the distributional patterns in the Mexican Transition Zone: Phyletic, paleogeographic and ecological factors of a case study
FIGURE 22. Comparison of the distribution areas of the O. hippopotamus and O. chevrolati species lines.
FIGURE 9 in The integration processes of the distributional patterns in the Mexican Transition Zone: Phyletic, paleogeographic and ecological factors of a case study
FIGURE 9. Main orographic formations of Mexico. Original map prepared by Violeta Halffter and used on many occasions in the biogeographic studies of the Mexican Transition Zone. I, Sierra Madre Occidental; II, Sierra Madre Oriental; III, Mexican Plateau; IV, Trans-Mexican Volcanic Belt; V, Balsas Basin; VI, Sierra Madre del Sur; VII, Sierra Madre de Chiapas; VIII, Chiapas Highlands; IX, Guatemalan Plateau; X, Central American Nucleous.
FIGURE 4. Onobrychis conferta subsp. conferta. A in Genus Onobrychis (Fabaceae) in Tunisia: distribution, rediscovery, ecology, and description of two new variety with an updated identification key in the country
FIGURE 4. Onobrychis conferta subsp. conferta. A—flower, B—keels, C—standard, D—wings, E—androecium.
FIGURE 3. Onobrychis conferta subsp. conferta var Maktaris. A in Genus Onobrychis (Fabaceae) in Tunisia: distribution, rediscovery, ecology, and description of two new variety with an updated identification key in the country
FIGURE 3. Onobrychis conferta subsp. conferta var Maktaris. A—Above ground, B—inflorescence, C—pods.
FIGURE 6 in Genus Onobrychis (Fabaceae) in Tunisia: distribution, rediscovery, ecology, and description of two new variety with an updated identification key in the country
FIGURE 6. (A) 3 rows of spines and 6-11 crest spines in Onobrychis conferta subsp. conferta and (B) 2 rows of spines and 4-6 crest spines in O. conferta subsp. conferta var Maktaris.
FIGURE 5 in Morpho (Morpho) helenor (Cramer) (Lepidoptera, Nymphalidae, Morphinae) in Bolivia: Geographical distribution and ecological plasticity, with a description of a new subspecies
FIGURE 5. Males from the population of San Francisco (Chapare), illustrating phenotype variations, from coelestis (C) to theodorus (T).
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.