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1,529 results for “updated checklist”
Fig. 7.A in An updated checklist of Dryinidae, Embolemidae and Sclerogibbidae (Hymenoptera) of Kenya and Burundi, with descriptions of thirteen new species
Fig. 7.A – Six-meter Malaise trap operating in Muhaka Forest, one of the collection sites of Thaumatodryinus overholti sp. nov. B – Townes-style Malaise trap operating at Kasigau Mountain, collection site of Bocchus johanssoni sp. nov.
Fig. 3. A–B in An updated checklist of Dryinidae, Embolemidae and Sclerogibbidae (Hymenoptera) of Kenya and Burundi, with descriptions of thirteen new species
Fig. 3. A–B – male genitalia (right half removed): A – Anteon semajanna sp. nov. (holotype); B – A. emeritum Olmi, 1984 (holotype); C – Anteon mcguirkae sp. nov., chela (holotype). Scale bar: 0.12 mm for A; 0.10 mm for B; 0.15 mm for C.
Fig. 4. A–B in An updated checklist of Dryinidae, Embolemidae and Sclerogibbidae (Hymenoptera) of Kenya and Burundi, with descriptions of thirteen new species
Fig. 4. A–B – male genitalia (right half removed): A – Deinodryinus musingilai sp. nov. (holotype); B – Bocchus johanssoni sp. nov. (holotype); C – Anteon alteri sp. nov., chela (holotype). Scale bar: 0.10 mm for A; 0.13 mm for B; 0.20 mm for C.
Fig. 1. A–B in An updated checklist of Dryinidae, Embolemidae and Sclerogibbidae (Hymenoptera) of Kenya and Burundi, with descriptions of thirteen new species
Fig. 1. A–B – male genitalia (right half removed): A – Aphelopus severancei sp. nov. (holotype); B – A. vernonensis Olmi, 2009 (holotype); C – Conganteon lymanorum sp. nov., chela (holotype). Scale bar: 0.14 mm for A and C; 0.09 mm for B.
Fig. 9 in An updated checklist of Dryinidae, Embolemidae and Sclerogibbidae (Hymenoptera) of Kenya and Burundi, with descriptions of thirteen new species
Fig. 9. Map of collecting sites on which the 17 species known only from Kenya were sampled (see Table 3 for the site name, conservation status and species recorded).
Fig. 2 in Opportunistic Observations On The Distribution Of Cetaceans In The Malaysian South China, Sulu And Sulawesi Seas And An Updated Checklist Of Marine Mammals In Malaysia
Fig. 2. Map showing the locations of live sightings and strandings of various cetacean species in Peninsular Malaysia as listed in the updated checklist in Table 3. Each species' code on the map is according to the two-letter abbreviations listed in Table 3.
Fig. 1 in Opportunistic Observations On The Distribution Of Cetaceans In The Malaysian South China, Sulu And Sulawesi Seas And An Updated Checklist Of Marine Mammals In Malaysia
Fig. 1. Map showing the transect lines on which cetacean observations were conducted as well as the sightings of cetaceans that were encountered during the 2009 Prime Scientific Sailing Expedition.
Fig. 7 in Two new species of the genus Metapocyrtus Heller, 1912 (Coleoptera: Curculionidae: Entiminae), from Mindanao Island and an updated checklist of Metapocyrtus species in the Philippines
Fig. 7. Genitalia of Metapocyrtus gapudi. Male aedegus, dorsal (a), lateral (b), and ventral (c) views. Female sternite VIII in ventral view (d) and ovipositor (e). Scale bars = 1.0 mm.
Fig. 2 in Two new species of the genus Metapocyrtus Heller, 1912 (Coleoptera: Curculionidae: Entiminae), from Mindanao Island and an updated checklist of Metapocyrtus species in the Philippines
Fig. 2. Habitat of Metapocyrtus villalobosae, new species, and M. gapudi, new species, a lowland ultramafic secondary rainforest near a riverine ecosystem about 350–400 m a.s.l. at Mount Kabunulan, Mount Hamiguitan Range Wildlife Sanctuary, Surop, Governor Generoso, Davao Oriental, Mindanao, Philippines.
Fig. 4 in Two new species of the genus Metapocyrtus Heller, 1912 (Coleoptera: Curculionidae: Entiminae), from Mindanao Island and an updated checklist of Metapocyrtus species in the Philippines
Fig. 4. Genitalia of Metapocyrtus villalobosae. Male aedegus, lateral (a) and dorsal (b) views. Female sternite VIII in ventral view (c), ovipositor (d), and spermatheca (e). Scale bars = 1.0 mm.
Fig. 1 in Two new species of the genus Metapocyrtus Heller, 1912 (Coleoptera: Curculionidae: Entiminae), from Mindanao Island and an updated checklist of Metapocyrtus species in the Philippines
Fig. 1. Map of the (a) Philippines and (b) Mindanao, showing (c) Mount Kabunulan, Hamiguitan Range, Surop, Governor Generoso, Davao Oriental, Mindanao, Philippines (6°27′45.29″N, 126°10′19.07″E; 350–400 m a.s.l.), where specimens of the two new species were collected (red dots).
Fig. 8 in Two new species of the genus Metapocyrtus Heller, 1912 (Coleoptera: Curculionidae: Entiminae), from Mindanao Island and an updated checklist of Metapocyrtus species in the Philippines
Fig. 8. Metapocyrtus gapudi in its natural habitat, perched on a shrub plant along the riverine ecosystem of Mount Kabunulan, Mount Hamiguitan Range Wildlife Sanctuary, Surop, Governor Generoso, Davao Oriental, Mindanao, Philippines.
Figure 10 in Scorpions of China: an updated checklist with comments on some taxonomic issues (Arachnida: Scorpiones)
Figure 10. Color comparison in the typical morph of Mesobuthus thersites: a normal adult female vs. an orange juvenile (above); the same normal adult female vs. a variegated adult female (below).
Figure 9 in Scorpions of China: an updated checklist with comments on some taxonomic issues (Arachnida: Scorpiones)
Figure 9. Color variation in the dark morph of Mesobuthus thersites. Figure 9a–9b. Juveniles. Figure 9c. Darker adults. Figure 9d. Lighter adults.
Figure 7 in Scorpions of China: an updated checklist with comments on some taxonomic issues (Arachnida: Scorpiones)
Figure 7. Subadult and adult comparison of Olivierus sp. (cf. longichelus). Figure 7a. Females. Figure 7b. Males.
Figure 5 in Scorpions of China: an updated checklist with comments on some taxonomic issues (Arachnida: Scorpiones)
Figure 5. Examined specimens of Mesobuthus thersites from Urumqi County, Urumqi Municipality, Xinjiang Uygur Autonomous Region. Figure 5a. Typical morph. Figure 5b. Dark morph.
Figure 4 in Scorpions of China: an updated checklist with comments on some taxonomic issues (Arachnida: Scorpiones)
Figure 4. Examined specimens of Olivierus sp. (cf. longichelus) from Wujiaqu City, Changji Prefecture, Xinjiang Uygur Autonomous Region. Figure 4a. Juveniles. Figure 4b. Subadults. Figure 4c. Adults.
Figure 3 in Scorpions of China: an updated checklist with comments on some taxonomic issues (Arachnida: Scorpiones)
Figure 3. Map showing known localities of some Olivierus from China and Kazakhstan: O. longichelus (●), O. sp. (●), O. bolensis (●), "M. c. intermedius" from Kurty (●), O. mikhailovi/"M. c. intermedius" from Chardara (●), O. tarabaevi from Kyzylorda (type locality) (●) and O. tarabaevi from Kapchagai (●).
Figure 2 in Scorpions of China: an updated checklist with comments on some taxonomic issues (Arachnida: Scorpiones)
Figure 2. Map showing known distribution of the parvorder Iurida in China: Scorpiops (solid circle), Liocheles (star), "Tibetiomachus" (triangle), and Deccanometrus (square). Scorpiops asthenurus (●), S. atomatus (●, one largely covered by S. asthenurus), S. hardwickii (●), S. ingens (●), S. jendeki (●), "S. jingshanensis" (●), S. kamengensis (●), S. kubani (●), S. langxian (●, largely covered by S. atomatus and S. hardwickii), S. leptochirus (●), S. lhasa (●), S. lii (●), S. luridus (●, largely covered by S. atomatus), S. margerisonae (●), S. novaki (●, one largely covered by S. asthenurus), S. petersii (●, accurate location unknown), S. puerensis (●), S. shidian (●), S. songi (●), S. taxkorgan (●), S. tibetanus (●, one largely covered by S. lhasa and S. margerisonae, and another by S. langxian), S. vachoni (●, one largely covered by S. langxian), S. validus (●), S. wrzecionkoi (, largely covered by S. tibetanus), S. xui (●), S. yangi (●), S. zhangshuyuani (○); Liocheles. australasiae (★); "Tibetiomachus himalayensis" (▲);Deccanometrus bengalensis (■).
Figure 1 in Scorpions of China: an updated checklist with comments on some taxonomic issues (Arachnida: Scorpiones)
Figure 1. Map showing known distribution of the parvorder Buthida in China: Chaerilus (star), Qianxie (hexagon), Lychas (cross), Isometrus (hollow circle), Reddyanus (plus), Olivierus (solid circle), Mesobuthus (inverse triangle), Hottentotta (square), and Razianus (triangle). Chaerilus assamensis (★), C. conchiformus (★), C. mainlingensis (★), C. pseudoconchiformus (★), C. tessellatus (★), C. tricostatus (★), C. tryznai (★), C. wrzecionkoi (★, largely covered by C. pseudoconchiformus); Qianxie solegladi (⬢, only the type locality is provided); Lychas mucronatus (×); Isometrus maculatus (○); Reddyanus hainanensis (+, accurate location unknown), R. tibetanus (+); Olivierus bolensis (●, one covered by Mesobuthus thersites), O. karshius (●, one covered by O. przewalskii and R. xinjiangensis), O. longichelus (●), O. martensii (●), O. przewalskii (●); M. thersites (▼); Hottentotta songi (■); Razianus xinjiangensis (▲).
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.