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232 results for “Australasia”
FIGURE 5. Mypongia brevipes Southcott, 1961. Leg II in Abrolophus from Australasia, and the mysterious Mypongia (Trombidiformes: Parasitengona: Erythraeidae)
FIGURE 5. Mypongia brevipes Southcott, 1961. Leg II. (A) Trochanter to tibia; (B) Tarsus.
FIGURE 2. Mypongia brevipes Southcott, 1961 in Abrolophus from Australasia, and the mysterious Mypongia (Trombidiformes: Parasitengona: Erythraeidae)
FIGURE 2. Mypongia brevipes Southcott, 1961. Venter and detail of setae X, Y and ps1.
FIGURE 7 in Abrolophus from Australasia, and the mysterious Mypongia (Trombidiformes: Parasitengona: Erythraeidae)
FIGURE 7. Abrolophus ripicola (Womersley, 1934). Nymph (N187595). Prodorsum.
FIGURE 1. Mypongia brevipes Southcott, 1961 in Abrolophus from Australasia, and the mysterious Mypongia (Trombidiformes: Parasitengona: Erythraeidae)
FIGURE 1. Mypongia brevipes Southcott, 1961. Dorsal habitus and detail of setae e1, f1, h1.
F in Biogeographic analysis of the ant genus Gnamptogenys Roger in South-East Asia-Australasia (Hymenoptera: Formicidae: Ponerinae)
F. 6. Area cladogram for the ectatommine taxa.
F in Biogeographic analysis of the ant genus Gnamptogenys Roger in South-East Asia-Australasia (Hymenoptera: Formicidae: Ponerinae)
F. 4. Distribution of the Gnamptogenys epinotalis species group.
F in Biogeographic analysis of the ant genus Gnamptogenys Roger in South-East Asia-Australasia (Hymenoptera: Formicidae: Ponerinae)
F. 2. Distribution of the ectatommine genera Ectatomma, Gnamptogenys and Rhytidoponera.
F in Biogeographic analysis of the ant genus Gnamptogenys Roger in South-East Asia-Australasia (Hymenoptera: Formicidae: Ponerinae)
F. 5. Distribution of the Gnamptogenys albiclava, laevior and taivanensis species groups.
Figure 1 from: Harrower E, Bougher NL, Winterbottom C, Henkel TW, Horak E, Matheny PB (2015) New species in Cortinarius section Cortinarius (Agaricales) from the Americas and Australasia. MycoKeys 11: 1-21. https://doi.org/10.3897/mycokeys.11.5409
Figure 1 - Maximum likelihood (ML) phylogenetic tree of Cortinarius subgen. Cortinarius sect. Cortinarius using combined nuclear ITS, 28S and RPB2 sequences. ML bootstrap support above 50% is shown above nodes.
Figure 4 from: Harrower E, Bougher NL, Winterbottom C, Henkel TW, Horak E, Matheny PB (2015) New species in Cortinarius section Cortinarius (Agaricales) from the Americas and Australasia. MycoKeys 11: 1-21. https://doi.org/10.3897/mycokeys.11.5409
Figure 4 - SEM micrographs of basidiospores from the following Cortinarius species: a Cortinarius kioloensis (MEL 2351101) b Cortinarius palatinus (NY 796168 TYPE) c Cortinarius altissimus (TENN 069830) d Cortinarius hallowellensis (MEL 2300544) e Cortinarius neotropicus (NY 34729 TYPE) f Cortinarius carneipallidus (PDD 71219) g Cortinarius atrotomentosus (TENN 065535 TYPE) h Cortinarius violaceus (TENN 063104) i Cortinarius austroviolaceus (MEL 2121961 PARATYPE). Scale bar = 2 µm.
Figure 3 from: Harrower E, Bougher NL, Winterbottom C, Henkel TW, Horak E, Matheny PB (2015) New species in Cortinarius section Cortinarius (Agaricales) from the Americas and Australasia. MycoKeys 11: 1-21. https://doi.org/10.3897/mycokeys.11.5409
Figure 3 - Light micrographs of basidiospores from the following Cortinarius species: a Cortinarius kioloensis (PDD 99307) b Cortinarius palatinus (NY 00795933) c Cortinarius altissimus (TENN 069830) d Cortinarius hallowellensis (MEL 2300544) e Cortinarius neotropicus (NY 34729 TYPE) f Cortinarius carneipallidus (PDD 95444 TYPE) g Cortinarius atrotomentosus (TENN 065535 TYPE) h Cortinarius violaceus (TENN 062899) i Cortinarius austroviolaceus (MEL 227499). Scale bar = 10 µm.
Figure 2 from: Harrower E, Bougher NL, Winterbottom C, Henkel TW, Horak E, Matheny PB (2015) New species in Cortinarius section Cortinarius (Agaricales) from the Americas and Australasia. MycoKeys 11: 1-21. https://doi.org/10.3897/mycokeys.11.5409
Figure 2 - Habit of the following Cortinarius species: a Cortinarius kioloensis (TENN 069666, photo I. Dodd) b Cortinarius palatinus (NY 796168, TYPE photo R.E. Halling) c Cortinarius atrotomentosus (TENN 069922, photo A. Bessette); d Cortinarius hallowellensis (MEL 2300544) e Cortinarius neotropicus (NY 75934, photo R.E. Halling) f Cortinarius carneipallidus (PDD 71219, photo E. Horak) g Cortinarius altissimus (TENN 069829, TYPE photo T. Henkel); h Cortinarius gayi (ZT 75/82, ISOTYPE photo E. Horak) i Cortinarius austroviolaceus (MEL 2231689, photo K. Syme). Scale bar = 1 cm.
Figure 2 from: Wolski GJ, Latoszewski M, Cargill DC, Buck WR (2024) Re-assessment of type material of Plagiothecium novae-seelandiae Broth. and descriptions of four new Plagiothecium taxa (Bryophyta, Plagiotheciaceae) from Australasia. PhytoKeys 238: 95-117. https://doi.org/10.3897/phytokeys.238.114303
Figure 2 Dendrogram (HCA) of the examined specimens. Explanation: see Fig. 1.
FIGURE 10 in New Hippothoidae (Bryozoa) from Australasia
FIGURE 10. Four species of Hippothoa: A, D, Hippothoa pacifica Gordon (NIWA 98202), respectively showing an ovicellate zooid in lateral view with a pristine ooecium perforated by two elevated apical pores (the curved part of a rim seen between them), and dimorphic ovicellate orifice (apical pseudoporous mucro eroded) and autozooidal orifice; B, C, E, F, Hippothoa peristomata Gordon, respectively showing a frontal view of two autozooids (NIWA 94240), an ovicellate zooid (NIWA 94240), an autozooid in lateral profile (NIWA 120856) and a kenozooid (NIWA 94240); G, H, Hippothoa flagellum Manzoni (part NHMUK 97.5.1.793), autozooidal orifice and dimorphic female orifice; I, J, Hippothoa watersi Morris (NIWA 144795), autozooidal orifice and dimorphic female orifice. Scalebars: A, E, F, 200 μm; B, 300 μm; C, D, 100 μm; E, F, 200 μm; G–J, 20 μm.
FIGURE 12 in New Hippothoidae (Bryozoa) from Australasia
FIGURE 12. Antarctothoa cancer (Hutton) (NIWA 144802). En face view of autozooidal, female and male operculate orifices. Scalebar: 300 μm.
FIGURE 11 in New Hippothoidae (Bryozoa) from Australasia
FIGURE 11. Antarctothoa buskiana (Hutton) (NIWA 98922): A, disjunct ovicellate zooids and autozooids; B, male, female and autozooidal orifices; C, early astogeny. Antarctothoa cancer (Hutton) (NIWA 144802): D, ovicellate and non-ovicellate zooids; E, ancestrula and adjacent zooids; F, lateral profile of autozooidal orificial region; G, dimorphic female orifice showing proximal nick. Scalebars: A, D, 300 μm; B, F, 100 μm; C, E, G, 200 μm.
FIGURE 6. Neothoa bilderbacki n in New Hippothoidae (Bryozoa) from Australasia
FIGURE 6. Neothoa bilderbacki n. sp., NIWA 132850 (holotype): A, B, en face views of autozooidal and ovicellate (dimorphic) orifices, respectively, tilted to show maximum lengths. Jessethoa ausubeli n. gen., n. sp., C–H (NIWA 132855), I, J (NIWA 132854, paratype): C, autozooids and zooeciules from proximal part of colony; D, elongate-oval ancestrula (middle zooid) with bipolar budding; E, oval ancestrula (at proximal end) with unipolar budding distalwards; F, close-up of ancestrula in E; G, another ancestrulate colony with bipolar budding (ancestrula lower middle); H, autozooids with frontal and laterally budded zooeciules; I, autozooidal orifice; J, zooids, mostly ovicellate, from crowded part of colony with frontal budding. Substratum darkened in D, E, H to show zooid outlines more clearly. Scalebars: A, B, 50 μm; C, D, 300 μm; E, J, 500 μm; F, 200 μm; H, 400 μm; I, 30 μm.
FIGURE 9. Antarctothoa ballia n in New Hippothoidae (Bryozoa) from Australasia
FIGURE 9. Antarctothoa ballia n. sp., NIWA 144835: A, biserial phase of ancestrulate colony along red-algal axis; B, mature phase showing near-maximum spread; C, F, autozooids, ovicellate zooids and male zooids (♂), showing the varied size of males, the left-hand one in F also showing rare frontolateral adventitious buds; D, tilted view of dimorphic combined maternal aperture and autozooidal aperture en face; E, H, a form of early astogeny, with budding of two daughter zooids displaced leftwards, the one asterisked curving round the algal stem axis; G, tilted (en face) view of male orifices showing the relatively large sinus; I, lateral view of ancestrula and daughter zooids; note how ancestrular right-lateral orificial tubercle pertains to daughter zooid; J, conventional astogeny, with neither daughter displaced, and with small gap between them mid-distal of ancestrular orifice; right-lateral tubercle pertains to ancestrula, the left-lateral one to the left daughter zooid. Scalebars: A, B, 1 mm; C, E, F, H–J, 200 μm; D, G, 100 μm.
FIGURE 5. Plesiothoa gerroa n in New Hippothoidae (Bryozoa) from Australasia
FIGURE 5. Plesiothoa gerroa n. sp., NIWA 122607 (paratype): A, ovicellate zooid showing lateral profile, with adjacent autozooids and zooeciules. Neothoa bilderbacki n. sp., holotype NIWA 132850: B, axial chain of autozooids with laterally budded ovicellate zooids; C, autozooid and laterally budded ovicellate zooid. Scalebars: A, B, 300 μm; C, 100 μm.
FIGURE 4. Plesiothoa gerroa n in New Hippothoidae (Bryozoa) from Australasia
FIGURE 4. Plesiothoa gerroa n. sp., NIWA 132856 (paratype): A, less-crowded proximal part of colony; B, more-crowded distal part of colony with frontal budding; C, ovicellate (top), zooeciule and autozooidal orifices; D, spinose interior surface of proximal part of frontal shield of almost-developed autozooid at colony periphery; E, crenulated ancestrula and daughter zooid. Scalebars: A, 500 μm; B, 400 μm; C, D, 50 μm; E, 100 μm.
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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.