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1,213 results for “South Australia”
FIG. 2 in Nitella sonderi A.Braun (Charales, Charophyceae) - a new record for South America, and first record from outside Australia
FIG. 2. – Male plants of Nitella sonderi A.Braun from Argentina (LE): A, whorl of sterile branchlets; B, sterile branchlet; C, apex with whorls of fertile branchlets forming lax head; D, lax apical head consisting of fertile branchlets, embedded in mucilage 3-furcate "prolification" looking as a fertile branchlet without a central secondary ray from the lateral tertiary ray at the furcation of the central secondary ray (double arrowhead); E, last furcations of fertile branchlets with long straight dactyls; F, fertile branchlet with antheridia obviously unequal each other; G, mucilage cover of fertile branchlet (double arrowhead), mucilage cover of branchlet primary ray; H, antheridia at last furcations of branchlet surrounded with short dactyls, arcuate at their basal parts. Note: A-C, arrowheads represent central secondary ray; D, F, G, arrowheads represent surface of mucilage cover. Photos taken by R. Vidal-Russell. Scale bars: A, E, F, 2 mm; B-D, 5 mm; G, H, 1 mm.
FIG. 3 in Nitella sonderi A.Braun (Charales, Charophyceae) - a new record for South America, and first record from outside Australia
FIG. 3. – Male plants of Nitella sonderi A.Braun from Argentina (LE): A, B, cells extending from the node at the base of the lowest branchlet cell at different focus (arrowheads at A); C-E, shortly narrowing ends of bicellulate dactyls with discoloured tiny confluent end cells having thickened cell walls at the tip; F, end of dactyl after loss of end cell; G, H, triangular shields of antheridia. All photos taken by R. E. Romanov, but H by R. Vidal-Russell. Scale bars: 100 μm.
FIG. 1 in Nitella sonderi A.Braun (Charales, Charophyceae) - a new record for South America, and first record from outside Australia
FIG. 1. – Apical parts of Nitella sonderi A.Braun from Argentina with sterile and fertile whorls (LE). Note: arrowhead, sterile whorls; double arrowhead, fertile whorls of male plants. Photo taken by R. E. Romanov. Scale bar: 1 cm.
Fig. 7 in The geological setting and palaeoenvironmental and palaeoecological reconstructions of the Upper Permian insect beds at Belmont, New South Wales, Australia
Fig. 7. Ichnofossils: (A) Chewed Glossopteris leaf margin, specimen BPl 3; (B) Probable insect eggs oviposited into a Phyllotheca stem, specimen AM F 122931; (C, D) Chewed Glossopteris leaf margins, specimens BPl 1 and BPl 2. Scale bars = 1 mm in Figs A, B and 1 cm in Figs C, D.
Fig. 6 in The geological setting and palaeoenvironmental and palaeoecological reconstructions of the Upper Permian insect beds at Belmont, New South Wales, Australia
Fig. 6. Fossil insects: (A) Permosyne pincombeae (Coleoptera), holotype, Australian Museum AM F 19778 (original no. 14 T), note the indent, indicating the presence of a schiza, an adaptation to life in the water; (B) Wing belonging to an insect closely related to Stenoviicia incerta (Homoptera), specimen no. AM F 12948 (original no. B 325); (C) Wing of an undescribed protopsyllid (?) (Homoptera), specimen no. B 87; (D) Permosyne mitchelli (Coleoptera), specimen no. AM F 41273 (original number K129). Scale bars = 1 mm.
Fig. 5 in The geological setting and palaeoenvironmental and palaeoecological reconstructions of the Upper Permian insect beds at Belmont, New South Wales, Australia
Fig. 5. An attempted reconstruction of the ecosystem of the Belmont coal swamp and overbank pools. The main component insect groups, conchostracans and plants preserved in the oryctocoenosis are illustrated here and assigned to definite, probable and possible feeding groups.
Fig. 9 in The geological setting and palaeoenvironmental and palaeoecological reconstructions of the Upper Permian insect beds at Belmont, New South Wales, Australia
Fig. 9. Depth of fossil insects at site 205. Most wings are found in a Lagerstätt at a depth of 2 cm within the seam.
Figure 1. A and B in A new species of Peribrissus (Echinoidea, Spatangoida) from the middle Miocene of South Australia
Figure 1. A and B, general location maps; C, map of Murray River between Waikerie and Swan Reach, South Australia, showing locality of NMV PL3203, north of Blanchetown.
Figure 7 in A new pipefish, Stigmatopora narinosa (Syngnathidae) from South Australia
Figure 7. Known locations (•) of the Southern Gulf Pipefish Stigmatopora narinosa sp. nov. in South Australia. The range of S. narinosa extends from south-eastern Spencer Gulf, along the lower half of western Gulf St.Vincent with a localised population in eastern Gulf St Vincent.
Figure 6. A in A new pipefish, Stigmatopora narinosa (Syngnathidae) from South Australia
Figure 6. A side (a) and dorsal (b) view of S. nigra (upper; Kaup 1853) and also of S. argus (lower, b,c; Richardson 1840) from South Australia. Both species have a relatively longer more tubular snout than S. narinosa, with S. argus having a longer snout than S. nigra.
Figure 5. A in A new pipefish, Stigmatopora narinosa (Syngnathidae) from South Australia
Figure 5. A side (a) and dorsal (b) view of Stigmatopora nigra (upper; Kaup, 1853) and also of S. argus (lower, b,c; Richardson, 1840) from South Australia. Both species have a relatively longer more tubular snout than S. narinosa, with S. argus having a longer snout than S. nigra.
Figure 1. S in A new pipefish, Stigmatopora narinosa (Syngnathidae) from South Australia
Figure 1. S. narinosa sp. nov. from Port Victoria, Spencer Gulf, with its prehensile tail coiled around macroalgae. The parasite is an isopod which is also commonly found on the leafy seadragon (Phycodurus equis). Image Graham Short.
Figure 2 in A new species of Peribrissus (Echinoidea, Spatangoida) from the middle Miocene of South Australia
Figure 2. Peribrissus janiceae sp. nov. A–E, outline drawings of adapical, adoral, left lateral, anterior and posterior views of holotype NMV P316528, showing paths followed by marginal (mf) and semipetalous (spf) fascioles, and position of peristome (pse) and periproct (ppt).
Figure 2 in Mitochondrial 12S rRNA sequences support the existence of a third species of freshwater blackfish (Percicthyidae: Gadopsis) from south-eastern Australia
Figure 2. Phylogenetic trees, using the PAUP software package (Swofford, 1998). A, Maximum parsimony, using a full exhaustive search with 1000 bootstrap replicates. B, Distance analysis, using the neighbour-joining option, bootstrap replicates set at 1000. C, Maximum likelihood, using the Tamura-Nei model with 100 bootstrap replicates.
Figure 3 in A new pipefish, Stigmatopora narinosa (Syngnathidae) from South Australia
Figure 3. Side view of Stigmatopora narinosa sp. nov. (Paratype SAM F10195). The tail tapers to a point without a caudal fin.
Data from: Elucidating the morphology and ecology of Eoandromeda octobrachiata from the Ediacaran of South Australia
Open the record for dataset details and reuse information.
Data from: Species of Dickinsonia Sprigg from the Ediacaran of South Australia
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Environmental heterogeneity explains contrasting plant species richness between the South African Cape and southwestern Australia
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Figure 3. - ATruncatoflabellumzuluense, paratype, USNM 91751, MD ZK-20, South Africa B Truncatoflabellumpusillum, holotype, USNM 81978, Albatross 5178, Philippines C Truncatoflabellumangustum, USNM 98894, MUSORSTOM 8-1016, Vanuatu D Truncatoflabellumangiostomum, USNM 96643, Cape Jaubert, Western Australia. Scale bars: all 10 mm, except for basal scar views, which are 5 mm.
Figure 3. - ATruncatoflabellumzuluense, paratype, USNM 91751, MD ZK-20, South Africa B Truncatoflabellumpusillum, holotype, USNM 81978, Albatross 5178, Philippines C Truncatoflabellumangustum, USNM 98894, MUSORSTOM 8-1016, Vanuatu D Truncatoflabellumangiostomum, USNM 96643, Cape Jaubert, Western Australia. Scale bars: all 10 mm, except for basal scar views, which are 5 mm.
Figure 1. from Euastacus morgani sp. n., a new spiny crayfish (Crustacea, Decapoda, Parastacidae) from the highland rainforests of eastern New South Wales, Australia - ZooKeys 85: 17-26 (11 March 2011) https://doi.org/10.3897/zookeys.85.1237
Figure 1. - Euastacus morgani sp. n. Female specimen, ACP 1103.
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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.