Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
232
datasets available to search
ShareScore release 0.9.0
Dataset results
232 results for “Australasia”
FIGURE 1. Hippothoa catophilia n in New Hippothoidae (Bryozoa) from Australasia
FIGURE 1. Hippothoa catophilia n. sp., NIWA 132781 (holotype): A, lateral profile of a chain of three autozooids, each occupying the abfrontal surface of an internode of Costaticella solida; caudae are jointed where they cross the catenicellid joint; B, catenicellid internodes occupied by the hippothoid; the right-hand branch shows hippothoid autozooids (with umbones projecting rightwards) each budding a pair of ovicellate zooids leftwards to occupy the rest of the available space on the internode; C, close-up on an individual catenicellid internode bearing an autozooid at right and an ovicellate zooid at left (fz = female zooid); D, orifices of ovicellate female zooid (left, ov) and non-ovicellate autozooid (right); the pseudopore on each suboral umbo shows as a hole in the cleaned zooids. Background darkened in each image to show profiles of internodes and zooids clearly. Scalebars: A, 300 μm; B, 500 μm; C, 100 μm; D, 200 μm.
FIGURE 8. Antarctothoa pansa n in New Hippothoidae (Bryozoa) from Australasia
FIGURE 8. Antarctothoa pansa n. sp., A (NIWA 144800), B–G (NIWA 92636, paratype): A, ancestrulate linear colony (damaged) prior to distal expansion; B, autozooids, ovicellate zooids and two male zooids (far right) in expanded part of mature colony; C, operculate orifices of ovicellate zooid, autozooid and male zooid; D, ancestrula with early astogeny; E–G, polymorphic autozooidal, male and ovicellate orifices, respectively (the latter surrounded by diatoms). Scalebars: A, 2 mm; B, 500 μm; C, 200 μm; D, 100 mm; E, 30 μm; F, 10 μm; G, 50 μm.
FIGURE 3. Plesiothoa densa n in New Hippothoidae (Bryozoa) from Australasia
FIGURE 3. Plesiothoa densa n. sp., NIWA 132848 (paratype): A, autozooidal, female and zooeciule orifices; B, ancestrula. Plesiothoa gerroa n. sp., NIWA 132856: C, distally budded autozooids with filiform caudae (right, one orifice arrowed), laterally budded autozooids, an ovicellate zooid and zooeciules. Scalebars: A, B, 100 μm; C, 200 μm.
FIGURE 2. Hippothoa catophilia n in New Hippothoidae (Bryozoa) from Australasia
FIGURE 2. Hippothoa catophilia n. sp., NIWA 132781 (holotype): A, a pair of ovicellate zooids showing the apical ooecial pseudopore(s); B, early astogeny, showing a kenozooidal ancestrula (an), which has directly budded two ovicellate zooids (part of one at lower left and another to the right) and two autozooids (middle left and distal); the distal zooid has also budded an ovicellate zooid. Plesiothoa densa n. sp., NIWA 132848 (paratype): C, hippothoiform autozooids, plus zooeciules and ovicellate zooids; D, a more-crowded part of the paratype. Background darkened in A, B, D to show profiles of internodes and/or zooids clearly. Scalebars: A–C, 200 μm; D, 500 μm.
FIGURE 7. Jessethoa ausubeli n. gen., n in New Hippothoidae (Bryozoa) from Australasia
FIGURE 7. Jessethoa ausubeli n. gen., n. sp., A, D (NIWA 132855), B, C, E (NIWA 132854, paratype): A, operculate autozooid with frontal zooeciule, also operculate; B, varied zooid types in crowded part of colony; notice circular primary orifice of female zooid beneath broken ooecium; C, ovicellate zooid; note the density of pseudopores in both the female frontal shield and the ooecium; D, closeup of bipolar ancestrula in fig. 6G; E, sequential budding of elongate zooeciules [the dark lines with two zooid openings pertain to the ctenostome bryozoan Immergentia zelandica Silén, 1946]. Scalebars: A, C, D, 100 μm; B, 300 μm; E, 500 μm.
FIGURE 4 in A re-assessment of Konarus Bamber, 2006 and sympatric leptocheliids from Australasia, and of Pseudoleptochelia Lang, 1973 (Crustacea: Peracarida: Tanaidacea)
FIGURE 4. Konarus straddi comb. nov., female, A, right cheliped; B, left cheliped (arrow indicates outer propodal apophysis bearing strong seta). Scale line = 0.25 mm.
FIGURE 2. Konarus spp., A. K in A re-assessment of Konarus Bamber, 2006 and sympatric leptocheliids from Australasia, and of Pseudoleptochelia Lang, 1973 (Crustacea: Peracarida: Tanaidacea)
FIGURE 2. Konarus spp., A. K. cheiris female; B, K. cheiris male; C, K. cheiris male cheliped; D, K. crassicornis female; E, K. straddi male; F, K. straddi male cheliped. (A–C after Bamber, 2006; D after Bamber & Chatterjee, 2010; E–F after Bamber, 2008).
FIGURE 12 in The genus Callitriche (Plantaginaceae, Callitricheae) in Australasia and Oceania
FIGURE 12. The distribution of specimens of C. muelleri based on data held on AVH (inset: Chatham and Kermadec Islands)
Figure 4 in Cryptic diversity in coastal Australasia: a morphological and mitonuclear genetic analysis of habitat-forming sibling species
Figure 4. World map indicating the known distribution of the different species of the Pyura stolonifera species complex. The magnified maps show the sites in south-east Australia and New Zealand at which samples of Pyura praeputialis and Pyura doppelgangera sp. nov. were collected. Site numbers correspond to those used in Tables 1 and 2. Neither lineage was present at sites A–H, indicating possible distribution gaps at sites in South Australia (SA; A–F) and Victoria (Vic; G, H) (see details in Table 2). NSW, New South Wales; TAS, Tasmania.
FIGURE 2 in The genus Callitriche (Plantaginaceae, Callitricheae) in Australasia and Oceania
FIGURE 2. The distribution of confirmed specimens of C. antarctica in Oceania and Australasia
FIGURE 13 in The genus Callitriche (Plantaginaceae, Callitricheae) in Australasia and Oceania
FIGURE 13. The distribution of confirmed specimens of C. palustris in Oceania and Australasia
F in Biogeographic analysis of the ant genus Gnamptogenys Roger in South-East Asia-Australasia (Hymenoptera: Formicidae: Ponerinae)
F. 3. Distribution of the Gnamptogenys coxalis species group.
ScienceDex guides
Understand access before you commit
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.