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1,213 results for “South Australia”
Figure 2 in Two new Middle Miocene spatangoids (Echinoidea) from the Murray Basin, South Australia
Figure 2. Murraypneustes biannulatus gen et sp. nov. A–D, adapical, posterior, adoral and left lateral views of holotype NMV P312370; E, adapical view of paratype NMV P312371; F, left lateral view of paratype, NMV P312372. All from the early Middle Miocene Glenforslan Formation in the vicinity of NMV locality PL3203, north of Blanchetown, South Australia.
Figure 1. A, B in Two new Middle Miocene spatangoids (Echinoidea) from the Murray Basin, South Australia
Figure 1. A, B, general location maps; C, map of the Murray River between Waikerie and Swan Reach, South Australia, showing locality of NMV locality PL3203, north of Blanchetown.
Figure 5 in Two new Middle Miocene spatangoids (Echinoidea) from the Murray Basin, South Australia
Figure 5. Murraypneustes biannulatus gen. et sp. nov. Detail of pore pairs and tubercles in and adjacent to ambulacrum V of paratype, NMV P312372.
Figure 3 in Two new Middle Miocene spatangoids (Echinoidea) from the Murray Basin, South Australia
Figure 3. Fasciole details of Murraypneustes biannulatus gen. et sp. nov. A, B, oblique lateral view and ambulacrum IV detail above margin of paratype, NMV P312371; C, oblique posterior view of paratype, NMV P312372. Scale bar 10 mm.
Figure 4 in Two new Middle Miocene spatangoids (Echinoidea) from the Murray Basin, South Australia
Figure 4. Apical disk details of Murraypneustes biannulatus gen. et sp. nov. A, holotype NMV P312370; B, drawing of paratype, NMV P312372, showing extent of hydropores (black circles), tubercles (white circles), and gonopores and oculars (black or stippled). Location of posterior oculars (marked *) is assumed. Scale bars 1 mm.
Figure 11 in A new genus and new species of Desmosomatidae (Crustacea: Isopoda: Asellota) from the deep sea of south-eastern Australia
Figure 11. Disparella kensleyi sp. nov. Holotype female. NMV J18605. (A) Dorsal and (B) lateral views.
Figure 4A-I. Ectopleura exxonia. A in Five athecate hydroids (hydrozoa: anthoathecata) from south-eastern australia
Figure 4A-I. Ectopleura exxonia. A, proximal stem and hydrorhiza; B, hydranth with immature gonophores (after Watson, 1978); C, cluster of developing gonophores; D, developing gonophore at base of aboral tentacle; E, F, apical process on nearly mature gonophore; G, stenotele from aboral tentacle; H, stenotele from oral tentacle; I, heteroneme from tentacles. Scale bar: A, B, 1 mm, C, 0.2 mm, D, 0.3 mm, G−I, 10 µm.
Figure 3A-G. Eudendrium pennycuikae. A in Five athecate hydroids (hydrozoa: anthoathecata) from south-eastern australia
Figure 3A-G. Eudendrium pennycuikae. A, branch with hydranths; B, hydranth with extended tapering tentacles; C, developing female gonophores; D, mature female gonophores; E, cluster of male gonophores; F, eurytele from tentacles. Drawn from preserved material. Scale bar: A, 2 mm, B, 0.3 mm, C, D, E, 0.5 mm, F, 10 µm.
Figure 2A-G. Amphinema dinema. A in Five athecate hydroids (hydrozoa: anthoathecata) from south-eastern australia
Figure 2A-G. Amphinema dinema. A, hydrocaulus with extended hydranth and gonophores on hydrorhiza. B, contracted hydranth, C, corrugated hydrocaulus. D, nearly mature gonophore. E, newly released medusa, F, eurytele from tentacles, G, desmoneme from hypostome. Scale bar: A, B, E, 0.5 mm, C, 0.3 m, D, 0.2 mm, F, G, 10 µm.
Figure 6A-J. Pennaria wilsoni. A in Five athecate hydroids (hydrozoa: anthoathecata) from south-eastern australia
Figure 6A-J. Pennaria wilsoni. A, branch with extended hydranths; B, basal annulations of branch; C, capitate tentacles surrounding hypostome; D, developing female gonophore; E newly released released eumedusa with scattered nematocysts; F−H, stenoteles from oral and aboral tentacles; I, desmoneme from hypostome; J, microbasic mastigophore from aboral tentacles. Scale bar: A, 5 mm, B, D, E, 0.5, mm, C, 0.25 mm, F−J, 20 µm.
Figure 1A-D in Five athecate hydroids (hydrozoa: anthoathecata) from south-eastern australia
Figure 1A-D. Hydractinia gelinea sp. nov. Holotype (NMV F202870). A, hydranth with developing gonophores; B, mature gonophore with scattered nematocysts; C, undischarged heteroneme from hydranth body and gonophores; D, undischarged heteroneme from tentacles. Drawn from preserved material. Scale bar: A, 0.5 mm; B, 0.2 mm; C, D, 10 µm.
Figure 5 in Five athecate hydroids (hydrozoa: anthoathecata) from south-eastern australia
Figure 5. Pennaria wilsoni. In situ photograph of colony, Port Phillip Heads, depth 10 m, showing bushy growth habit (photograph by author). Scale bar: 5 cm.
Fig. 5 in Small Free-Living Heterotrophic Flagellates from Marine Sediments of Gippsland Basin, South-Eastern Australia
Fig. 5. Dendrogram showing the Bray-Curtis similarity (%) between the communities from 41 habitats; taxonomic information based on species. Species data used for this analysis were from Lee and Patterson (1998), Al-Qassab et al. (2002), Lee et al. (2003, 2005), Lee (2002b, 2006a, b, 2008, 2012), Schroeckh et al. (2003), Aydin and Lee (2012) and the present study. MB – marine benthic habitats, MP – marine planktonic habitats, FB – freshwater benthic habitats, FP – freshwater planktonic habitats. * indicates Australian sites.
Fig. 2. a in Small Free-Living Heterotrophic Flagellates from Marine Sediments of Gippsland Basin, South-Eastern Australia
Fig. 2. a – Chilomastix cuspidata, showing general appearance of cell; b – Goniomonas amphinema, showing general appearance of cell; c – G. pacifica, note two flagella diverging; d – Percolomonas similis, note ventral groove; e – Bodo platyrhynchus; f – Neobodo curvifilus; g – N. saliens; h–i – Hemistasia phaeocysticola, note a papillum (arrow); j – Bordnamonas tropicana, showing general appearance and mouth (arrow); k – Rhynchomonas nasuta; l–o – Rhynchobodo simius; l – tubular ingestion organelle (arrow); m, o – showing groove; n – general appearance of cell; p–q – Rhynchopus amitus; r–s – Spironema multiciliatum; t – Amastigomonas debruynei, general appearance of cell; u – Amastigomonas mutabilis, note anterior flagellum projecting from sleeve and recurrent flagellum; v – Apusomonas sp.; w – Psammosa unguis nov. comb., general appearance of cell; x–y – Mantamonas plastica; x – note anterior flagellum (arrow) and y – ventral depression. All micrographs are DIC images. Scale bar: 5 µm for all figures.
Fig. 1. a in Small Free-Living Heterotrophic Flagellates from Marine Sediments of Gippsland Basin, South-Eastern Australia
Fig. 1. a – Chilomastix cuspidata, b – Rhynchopus amitus, c – Spironema multiciliatum, d – Psammosa unguis nov. comb., e – Apusomonas sp., f – Rhynchobodo formica, g – Mantamonas plastica, h – Roombia truncata, i – Thaumatomastix setifera, j – Ancyromonas impluvium nov. spec., k – Helkesimastix faecicola, l – Kurnaimonas celeris nov. spec., m – Sinistermonas sinistrorsus nov. spec., n – Kiitoksia kaloista, o – Protist '1'. Scale bar: 10 µm for all figures.
Fig. 4. a in Small Free-Living Heterotrophic Flagellates from Marine Sediments of Gippsland Basin, South-Eastern Australia
Fig. 4. a – Carpediemonas membranifera; b – Kipferlia bialata; c – Discocelis saleuta, note a short flagellum; d – Metopion fluens, showing general appearance of cell, note shorter flagellum (arrow); e–f – Kurnaimonas celeris nov. spec., showing general appearance of cell; g – Pseudophyllomitus granulatus; h – Helkesimastix faecicola, showing general appearance and note short flagellum (arrow); i – Metromonas grandis, showing general appearance of cell and note the folded margin on the left side and short flagellum (arrow); j – Metromonas simplex, showing general appearance of cell and note short flagellum (arrow); k – Kiitoksia kaloista, showing two flagella and note short flagellum (arrow); l – Sinistermonas sinistrorsus nov. spec., showing general appearance of cell, and note flagellar insertion and beating pattern of anterior flagellum; m – Telonema subtilis, showing general appearance; n – Protist '1'. All micrographs are DIC images. Scale bar: 5 µm for all figures.
Fig. 3. a–b in Small Free-Living Heterotrophic Flagellates from Marine Sediments of Gippsland Basin, South-Eastern Australia
Fig. 3. a–b – Rhynchobodo formica; c – Massisteria marina, general appearance of cell showing pseudopodia and flagella (arrow); d–f – Cercomonas sp.; d – note two acronematic flagella; e – general appearance; f – note flagellar orientation; g–h – Roombia truncata, note cell attached to the substrate by the tip of the posterior flagellum and note extrusomes; i – Protaspa obliqua, note anterior protrusion; j–k – Thaumatomastix setifera, note spines around the body; j – general appearance of cell; k – ventral face showing a deep groove and pseudopodia; l–m – Ancyromonas sigmoides of different cells; l – note slightly thick anterior flagellum with acronematic tip and broad rostrum; m – note thick anterior flagellum and acute rostrum; n–p – Ancyromonas impluvium nov. spec., showing general appearance of cell and note flagellar insertion. All micrographs are DIC images with the exceptions of (d) and (p) which are phase contrast images. Scale bar: 5 µm for all figures.
Fig. 2 in New Crayfishes (Decapoda: Parastacidae: Euastacus) from Northeastern New South Wales, Australia
Fig. 2. Collection localities of Euastacus girurmulayn in northeastern New South Wales. The previous Whian Whian State Forest has been designated as National Park since collection.
Fig. 3 in New Crayfishes (Decapoda: Parastacidae: Euastacus) from Northeastern New South Wales, Australia
Fig. 3. Collection localities of Euastacus guruhgi in northeastern New South Wales. The previous Wollumbin State Forest has been designated as National Park and State Conservation Area since collection.
Fig. 5 in New Crayfishes (Decapoda: Parastacidae: Euastacus) from Northeastern New South Wales, Australia
Fig. 5. Euastacus girurmulayn. Dorsal view, holotype, AM P67914. Photograph: Max Egan. Scale bar is 10 mm.
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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.