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92 results for “Fauna surveys”
FIGURE 32 in Taiwanese deep-water chitons (Mollusca: Polyplacophora) and survey of chiton fauna of Taiwan
FIGURE 32. Lоriсella sсissurata, Таiwаn, stn CP35, ВL 10.5 mm: А. Dorsаl scаles аnd ventrаl spicules; В, C. Dorsаl scаles; D. Rаdulа.
FIGURE 12 in Taiwanese deep-water chitons (Mollusca: Polyplacophora) and survey of chiton fauna of Taiwan
FIGURE 12. Leptосhitоn соnsimilis, Таiwаn, stn CP53, ВL 9.0 mm: А. Dorsаl spicules; В. Dorsаl spicules аnd suturаl needles; C. Suturаl needles; D. Five trаnsverse rows of rаdulа.
FIGURE 30 in Taiwanese deep-water chitons (Mollusca: Polyplacophora) and survey of chiton fauna of Taiwan
FIGURE 30. Hanleyella japоniсa, Таiwаn, stn CP115, ВL 3.0 mm: А. Dorsаl аnd ventrаl scаles; В. Dorsаl scаles; C. Dorsаl scаles аnd needle in suture; D. Rаdulа.
FIGURE 7 in Taiwanese deep-water chitons (Mollusca: Polyplacophora) and survey of chiton fauna of Taiwan
FIGURE 7. Leptосhitоn bergenhayni, Таiwаn, stn CP81, ВL 8.0 mm: А. Vаlve I, dorsаl view; В. Vаlve V, dorsаl view; C. Vаlve VIII, dorsаl view; D. Vаlve IV, ventrаl view; E. Vаlve V, detаil of tegmentum in centrаl аreа; F. Vаlve V, rostrаl view; G. Vаlve VIII, lаterаl view.
FIGURE 6 in Taiwanese deep-water chitons (Mollusca: Polyplacophora) and survey of chiton fauna of Taiwan
FIGURE 6. Ferreiraella xylоphaga karenae, Таiwаn, stn CP38, ВL 21.0 mm: А, C. Old pаrt of rаdulа; В. Маjor uncinаl tooth of rаdulа; D. New pаrt of rаdulа.
FIGURE 5 in Taiwanese deep-water chitons (Mollusca: Polyplacophora) and survey of chiton fauna of Taiwan
FIGURE 5. Ferreiraella xylоphaga karenae, Таiwаn, stn CP38, ВL 21.0 mm: А. Vаlve I, rostrаl view; В, C. Dorsаl spicules; D. Heаd of mаjor lаterаl tooth of rаdulа.
FIGURE 4 in Taiwanese deep-water chitons (Mollusca: Polyplacophora) and survey of chiton fauna of Taiwan
FIGURE 4. Ferreiraella xylоphaga karenae, Таiwаn, stn CP38, ВL 21.0 mm: А. Vаlve I, dorsаl view; В. Vаlve V, dorsаl view; C. Vаlve VIII, dorsаl view; D. Vаlve VIII, lаterаl view; E. Vаlve V, detаil of treаted tegmentum in centrаl аreа; F. Vаlve V, detаil of untreаted tegmentum in centrаl аreа; G. Vаlve V, rostrаl view.
FIGURE 3 in Taiwanese deep-water chitons (Mollusca: Polyplacophora) and survey of chiton fauna of Taiwan
FIGURE 3. Ferreiraella sоyоmaruae, Таiwаn, stn CP38, ВL 21.0 mm: А. Dorsаl spicules; В. Centrаl аnd first lаterаl teeth of old pаrt of rаdulа; C. New pаrt of rаdulа; D. Маjor uncinаl tooth of rаdulа.
FIGURE 2 in Taiwanese deep-water chitons (Mollusca: Polyplacophora) and survey of chiton fauna of Taiwan
FIGURE 2. Ferreiraella sоyоmaruae, Таiwаn, stn CP38, ВL 21.0 mm: А. Vаlve I, rostrаl view; В. Dorsаl (аbove) аnd mаrginаl (below) spicules.
FIGURE 1 in Taiwanese deep-water chitons (Mollusca: Polyplacophora) and survey of chiton fauna of Taiwan
FIGURE 1. Ferreiraella sоyоmaruae, Таiwаn, stn CP38, ВL 21.0 mm: А. Vаlve I, dorsаl view; В. Vаlve V, dorsаl view; C. Vаlve VIII, dorsаl view; D. Vаlve V, rostrаl view; E. Vаlve V, detаil of treаted tegmentum in centrаl аreа; F. Vаlve V, detаil of untreаted tegmentum in centrаl аreа; G. Vаlve VIII, lаterаl view.
Data from: A phylogeographical survey of a highly dispersive spider reveals eastern Asia as a major glacial refugium for Palaearctic fauna
Aim: The phylogeographical history of wide-ranging Palaearctic species is not well understood. Here, we present a range-wide phylogeographical study of the wasp spider, Argiope bruennichi (Scopoli, 1772), a highly dispersive and widely distributed Palaearctic species. We aim to identify glacial refugia and patterns of interglacial gene flow across the Palaearctic. Location: Palaearctic region, including the Azores, Madeira, Europe, North Africa and Asia. Methods: We conduct a range-wide phylogeographical survey. Our study is based on nuclear and mitochondrial DNA markers, as well as morphological characters. We use species distribution models to predict the species' current range as well as its historical distribution during and shortly after the Last Glacial Maximum (LGM). Results: All analysed genetic markers and morphological characters support the divergence of a lineage in eastern Asia from the remainder of the Palaearctic. Within the Western Palaearctic, a less pronounced divergence into an Azorean and a European clade is found. Species distribution models predict a pronounced loss of suitable habitat for Western Palaearctic lineages during the LGM, whereas the range of East Asian populations remained largely unaffected. Main conclusions: Our results highlight the existence of non-European glacial refugia for Palaearctic species, particularly in East Asia. The current genetic structure is best explained by the recent recolonization of the Western Palaearctic from eastern Asia, or repeated interglacial contact of populations.
FIGURE 11 in Survey of the Ethiopian linyphiid spider fauna. I. Subfamily Erigoninae (Arachnida, Araneae, Linyphiidae)
FIGURE 11. Photographs of male holotype (A–D) of Savignia ericola n. sp. A, habitus, dorsal view; B, C, same, lateral and anterolateral view, respectively; D, same, frontal view. Scale bar: 0.5mm.
FIGURE 14 in Survey of the Ethiopian linyphiid spider fauna. I. Subfamily Erigoninae (Arachnida, Araneae, Linyphiidae)
FIGURE 14. Details of male palpal structure (A–E) and female epigynum (F) of Walckenaeria (Tigellinus) trivialis n. sp., male paratype from Eth018, female paratype from Eth017. A, B, right palp, retrolateral and prolateral view, respectively; C, D, tibia, dorsal view; E, same, dorsolateral view; F, cleared epigynum, dorsal view. Scale bars: 0.1mm.
FIGURE 7 in Survey of the Ethiopian linyphiid spider fauna. I. Subfamily Erigoninae (Arachnida, Araneae, Linyphiidae)
FIGURE 7. Photographs of male (A–C) and female (D–G) of Microcyba oromia n. sp., paratypes from Eth019. A, D, habitus, dorsal view; B, same, lateral view; C, prosoma, frontal view; E, F, opisthosoma, ventral view, different specimens; G, epigynum, ventral view. Scale bars: A–F, 0.5mm; G, 0.1mm.
FIGURE 3 in Survey of the Ethiopian linyphiid spider fauna. I. Subfamily Erigoninae (Arachnida, Araneae, Linyphiidae)
FIGURE 3. Photographs of male (A–D) and female (E, F, G, H) of Callitrichia protegularis n. sp., paratypes from Eth008. A, E, habitus, dorsal view; B, prosoma, dorsal view; C, same, lateral view; D, habitus frontal view; F, opisthosoma, ventral view; G, H, epigynum and cleared epigynum, respectively, ventral view. Scale bars: A–F, 0.5mm; G, H, 0.1mm.
FIGURE 2 in Survey of the Ethiopian linyphiid spider fauna. I. Subfamily Erigoninae (Arachnida, Araneae, Linyphiidae)
FIGURE 2. Details of male palpal structure (A–G) and female epigynum (H, I) of Callitrichia asela n. sp., paratypes from Eth017. A, B, right palp, retrolateral and prolateral view, respectively; C, tibia and paracymbium, postero-prolateral view; D, tibia, dorsal view; E, same, frontal view; F, G, distal suprategular apophysis and embolic division, prolateral and retrolateral view, respectively; H, I, cleared epigynum, ventral and dorsal view, respectively. Scale bars: 0.1mm.
FIGURE 1 in Survey of the Ethiopian linyphiid spider fauna. I. Subfamily Erigoninae (Arachnida, Araneae, Linyphiidae)
FIGURE 1. Photographs of male (A, B, C, D) and female (E, F, G) of Callitrichia asela n. sp., paratypes from Eth017. A, E, habitus, dorsal view; B, same, lateral view; C, prosoma, antero-lateral view; D, F, habitus frontal view; G, opisthosoma, ventral view. Scale bars: 0.5mm.
FIGURE 9 in Survey of the Ethiopian linyphiid spider fauna. I. Subfamily Erigoninae (Arachnida, Araneae, Linyphiidae)
FIGURE 9. Photographs of male (A–E) and female (F–H) of Pelecopsis arsi n. sp., A, holotype; B–H, paratypes from Eth019. A, B, F, habitus, dorsal view; C, same, lateral view; D, same, frontal view; E, same, fronto-lateral view; G, opisthosoma, ventral view; H, epigynum, ventral view. Scale bars: A–G, 0.5mm; H, 0.1mm.
FIGURE 12 in Survey of the Ethiopian linyphiid spider fauna. I. Subfamily Erigoninae (Arachnida, Araneae, Linyphiidae)
FIGURE 12. Details of male palpal structure (A–G) of holotype of Savignia ericola n. sp. A, left palp, retrolateral view; B, tibia, dorsal view; C, tegulum, distal suprategular apophysis and embolic division, prolateral view; D, distal suprategular apophysis, lateral view; E, embolic division, mesal view; F, apex of median radical process; G, apex of embolus. Scale bars: A–E, 0.1mm; G, F, not to scale.
FIGURE 5 in Survey of the Ethiopian linyphiid spider fauna. I. Subfamily Erigoninae (Arachnida, Araneae, Linyphiidae)
FIGURE 5. Photographs of male (A–C) and female (D–G) of Microcyba magna n. sp., paratypes from Eth001. A, D, habitus, dorsal view; B, prosoma, lateral view; C, E, habitus, frontal view; F, opisthosoma, ventral view; G, epigynum, ventral view. Scale bars: A–F, 0.5mm; G, 0.1mm.
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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.