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261 results for “Euscorpiidae”
Figures 25-33 in Morphology analysis supports presence of more than one species in the "Euscorpius carpathicus" complex (Scorpiones: Euscorpiidae)
Figures 25-33: Euscorpius tergestinus, Osp, Slovenia. 25. Carapace, male. 26. Chela, male. 27. Chela, female. 28. Telson, lateral view, male. 29. Telson, ventral view, male. 30. Telson, lateral view, female. 31. Telson, ventral view, female. 32. Metasomal segment V, ventral view, male. 33. Pedipalp patella, dorsal view, female.
Figure 13 in New data on distribution and ecology of seven species of Euscorpius Thorell, 1876 (Scorpiones: Euscorpiidae)
Figure 13: An adult female of E. concinnus with remains of a queen wasp (Vespula vulgaris) photographed in Monterosso (Genova, Liguria) (photo by Giorgio Colombo).
Figure 45 in Morphology analysis supports presence of more than one species in the "Euscorpius carpathicus" complex (Scorpiones: Euscorpiidae)
Figure 45: Diagrammatic trichobothrial patterns of external aspect of pedipalp patella (partial) showing variability in position and number of trichobothria for Euscorpius hadzii. Numbers found in each series is situated right of each diagram. em = external median, eba = external basal-a, and eb = external basal.
Figures 36-44 in Morphology analysis supports presence of more than one species in the "Euscorpius carpathicus" complex (Scorpiones: Euscorpiidae)
Figures 36-44: Euscorpius hadzii, Prokletije Mountains, Albania. 36. Carapace, male. 37. Chela, male. 38. Chela, female. 39. Telson, lateral view, male. 40. Telson, ventral view, male. 41. Telson, lateral view, female. 42. Telson, ventral view, female. 43. Metasomal segment V, ventral view, male. 44. Pedipalp patella, dorsal view, female.
Figure 25 in New data on distribution and ecology of seven species of Euscorpius Thorell, 1876 (Scorpiones: Euscorpiidae)
Figure 25: Euscorpius (Tetratrichobothrius) flavicaudis, subadult female, Castelfalfi (Tuscany, Italy) (photo by Giorgio Colombo).
Figure 34 in Morphology analysis supports presence of more than one species in the "Euscorpius carpathicus" complex (Scorpiones: Euscorpiidae)
Figure 34: Statistical distribution of pedipalp patella ventral and external et trichobothrial series of Euscorpius tergestinus broken down into Caporiacco's subspecies from a western (southeastern France) to eastern (northern Italy and Slovenia) to southern (Croatia) direction. Note: the Trieste, Italy area is the type locality of E. tergestinus and the Slovenia/Croatia area populations were originally declared by Caporiacco as E. c. tergestinus as contrasted with his other subspecies. et = external terminal. See Fig. 12 for definitions of other terms.
Figures 13-21 in Morphology analysis supports presence of more than one species in the "Euscorpius carpathicus" complex (Scorpiones: Euscorpiidae)
Figures 13-21: Euscorpius balearicus, Mallorca, Balearic Islands, Spain. Female, Puerto Alcudia, male, Soller. 13. Carapace, male. 14. Chela, male. 15. Chela, female. 16. Telson, lateral view, male. 17. Telson, ventral view, male. 18. Telson, lateral view, female. 19. Telson, ventral view, female. 20. Metasomal segment V, ventral view, male. 21. Pedipalp patella, dorsal view, female.
Figure 14 in New data on distribution and ecology of seven species of Euscorpius Thorell, 1876 (Scorpiones: Euscorpiidae)
Figure 14: An adult female of E. concinnus with offspring from La Morra (Piedmont, Italy) (photo by Giorgio Colombo).
Figure 10 in New data on distribution and ecology of seven species of Euscorpius Thorell, 1876 (Scorpiones: Euscorpiidae)
Figure 10: Old abandoned fortresses are favorable environments for E. tergestinus in Lubiara (Veneto, Italy) (photo by Marco Colombo).
Figure 9 in New data on distribution and ecology of seven species of Euscorpius Thorell, 1876 (Scorpiones: Euscorpiidae)
Figure 9: Euscorpius (Euscorpius) tergestinus, adult female, Venezia (Veneto, Italy) (photo by Giorgio Colombo).
Figure 7 in New data on distribution and ecology of seven species of Euscorpius Thorell, 1876 (Scorpiones: Euscorpiidae)
Figure 7: E. sicanus collecting sites. Tuscany (Italy): 1. Castel San Gimignano; 2. Monte Argentario; 3. Giglio Island.
Figure 6 in New data on distribution and ecology of seven species of Euscorpius Thorell, 1876 (Scorpiones: Euscorpiidae)
Figure 6: E. sicanus habitat: wall of a cellar under inhabited houses in Castel San Gimignano (Tuscany, Italy) (photo by Marco Colombo).
Figure 4 in New data on distribution and ecology of seven species of Euscorpius Thorell, 1876 (Scorpiones: Euscorpiidae)
Figure 4: Euscorpius (Euscorpius) sicanus, adult male, Monte Argentario (Tuscany, Italy) (photo by Marco Colombo).
Figure 1 in New data on distribution and ecology of seven species of Euscorpius Thorell, 1876 (Scorpiones: Euscorpiidae)
Figure 1: Euscorpius (Alpiscorpius) alpha, adult female, Cislano (Lombardy, Italy) (photo by Giorgio Colombo).
Figure 144 in Eight new species of the genera Scorpiops Peters, Euscorpiops Vachon, and Chaerilus Simon (Scorpiones: Euscorpiidae, Chaerilidae) from Tibet and Yunnan, China
Figure 144: Map of China (Tibet), showing the type localities of the new species, and the new records of known species for Tibet. Map abbreviations: ▲ –Chaerilus, ■ –Scorpiops, ● –Euscorpiops; S –Sikkim, Bh –Bhutan, Bu –Burma.
Figures 135–143 in Eight new species of the genera Scorpiops Peters, Euscorpiops Vachon, and Chaerilus Simon (Scorpiones: Euscorpiidae, Chaerilidae) from Tibet and Yunnan, China
Figures 135–143: Chaerilus pictus Pocock, 1890, female. 135–136. Chelicera, dorsal and ventral aspects. 137. Disposition of granulations on the dentate margins of the pedipalp chela movable finger. 138. Carapace dorsal aspect. 139–140. Metasomal segment V and telson, ventral and lateral aspects. 141. Sternum, genital operculum and pectines. 142–143. Legs III and IV, lateral and dorsal aspects. 131. Scales = 1 mm.
Figures 118–125 in Eight new species of the genera Scorpiops Peters, Euscorpiops Vachon, and Chaerilus Simon (Scorpiones: Euscorpiidae, Chaerilidae) from Tibet and Yunnan, China
Figures 118–125: Chaerilus tessellatus sp. n., female holotype. 118. Carapace, dorsal aspect. 119–120. Chelicera, ventral and dorsal aspects. 1121–122. Metasomal segment V and telson, ventral and lateral aspects. 123. Lateral ocular region, in detail, dorsal aspect. 124. Sternum, genital operculum and pectines. 125. Dentate margin of the pedipalp chela movable finger. Scales = 1 mm.
Figures 127–134 in Eight new species of the genera Scorpiops Peters, Euscorpiops Vachon, and Chaerilus Simon (Scorpiones: Euscorpiidae, Chaerilidae) from Tibet and Yunnan, China
Figures 127–134: Chaerilus pictus Pocock, 1890, female. 127–129. Chela, dorsoexternal, ventral and internal aspects. 130– 132. Patella, dorsal, external and ventral aspects. 133–134. Femur, dorsal and external aspects. Scale = 1 mm.
Figures 95–102 in Eight new species of the genera Scorpiops Peters, Euscorpiops Vachon, and Chaerilus Simon (Scorpiones: Euscorpiidae, Chaerilidae) from Tibet and Yunnan, China
Figures 95–102: Euscorpiops karschi sp. n., female holotype. 95–98. Chela, dorsoexternal, external, ventral and internal aspects. 99. Femur dorsal aspect. 100–102. Patella dorsal, external and ventral aspects. Scale = 1 mm.
Figures 84–93 in Eight new species of the genera Scorpiops Peters, Euscorpiops Vachon, and Chaerilus Simon (Scorpiones: Euscorpiidae, Chaerilidae) from Tibet and Yunnan, China
Figures 84–93: Euscorpiops shidian sp. n., male holotype. 84. Femur, dorsal aspect. 85–87. Patella, dorsal, external and ventral aspects. 88–89. Chelicera, dorsal and ventral aspects. 90. Telson, lateral aspect. 91. Dentate margin of the pedipalp chela movable finger. 92. Sternum, genital operculum and pectines. 93 same as 92, female paratype. Scales = 1 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
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.