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547 results for “New South Wales”
Figure 1 in Maratus elephans, a new member of the volans group from New South Wales (Araneae: Salticidae: Euophryinae)
Figure 1. Views of the holotype and paratype male Maratus elephans with flaps of the fan wrapped around the sides of the opisthosoma. The three patches of white scales behind the posterior eye row are similar to those of M. volans, but the red scales in the eye region of M. elephans are interrupted from front to rear, on a background of grey scales.
Figs 5-6 in Molophilus (Molophilus) johnmartini nov.sp. from the Blue Mountains in New South Wales, Australia (Diptera: Limoniidae)
Figs 5-6: Molophilus (Molophilus) johnmartini nov.sp., female, terminalia: (5) dorsal; (6) lateral.
Fig. 2. Mecyclothorax moorei n in A New Species of the Genus Mecyclothorax Sharp from New South Wales (Insecta: Coleoptera, Carabidae: Psydrinae)
Fig. 2. Mecyclothorax moorei n.sp., male aedeagus, parameres and genital ring. Scales: 0.25 mm.
Fig. 3. Mecyclothorax moorei n in A New Species of the Genus Mecyclothorax Sharp from New South Wales (Insecta: Coleoptera, Carabidae: Psydrinae)
Fig. 3. Mecyclothorax moorei n.sp., female gonocoxites 1 and 2. Scale: 0.1 mm.
Fig. 14 in A Reassessment of Saltuarius swaini (Lacertilia: Diplodactylidae) in Southeastern Queensland and New South Wales; Two New Taxa, Phylogeny, Biogeography and Conservation
Fig. 14. Rock habitats of Saltuarius
Fig. 7 in A Reassessment of Saltuarius swaini (Lacertilia: Diplodactylidae) in Southeastern Queensland and New South Wales; Two New Taxa, Phylogeny, Biogeography and Conservation
Fig. 7 (continued). V-shaped pattern between eyes in S. wyberba QM J28648.
Micro-CT analysis of Katian radiolarians from the Malongulli Formation, New South Wales, Australia, and implications for skeletogenesis
<p><span>A diverse and well-preserved radiolarian assemblage from the Malongulli Formation, New South Wales, Australia contains 13 species representing ten genera and six families. One new genus: <em>Wiradjuri</em> n. gen. is introduced to accommodate pre-Devonian single-shelled entactiniid taxa and one new species: <em>Secuicollacta</em> <em>malongulliensis</em> n. sp. is recorded together with some previously described forms. The micro-structure of the 'rotasphaerid structure/primary unit' and the 'ectopic spicule' are investigated to validate their roles as fundamental units in the Secuicollactidae together with comprehensive documentation of the previously enigmatic <em>Pseudorotasphaera</em> internal skeleton.</span></p> <p><span>The results of this investigation suggest that, among all radiolarian genera that survived the </span>Late Ordovician Mass Extinction <span>event (LOME) and transitioned into the Silurian, <em>Secuicollacta</em>, <em>Haplotaeniatum</em>, and <em>Palaeoephippium</em> maintained stable body plans during the transition and were more successfully established. The selective advantages these lineages had during the LOME, were most likely spontaneous outcomes of the mode of structural development involving sequential skeletogenesis and a tendency to evolve towards simpler body plans. </span></p>
Fig. 4. A in The geological setting and palaeoenvironmental and palaeoecological reconstructions of the Upper Permian insect beds at Belmont, New South Wales, Australia
Fig. 4. A block model of the Belmont coal swamps and gravel channel system.
Fig. 2 in The geological setting and palaeoenvironmental and palaeoecological reconstructions of the Upper Permian insect beds at Belmont, New South Wales, Australia
Fig. 2. Section of insect seam from Pincombe's Outcrop (site 206, see Fig. 3).
Fig. 3 in The geological setting and palaeoenvironmental and palaeoecological reconstructions of the Upper Permian insect beds at Belmont, New South Wales, Australia
Fig. 3. Map of Belmont insect beds, showing new and old collection sites.
Tspe_v1 (Telopea speciosissima) genome supplementary files for: Chromosome-level de novo genome assembly of Telopea speciosissima (New South Wales waratah) using long-reads, linked-reads and Hi-C
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Reversing the decline of threatened koala (Phascolarctos cinereus) populations in New South Wales: Using genomics to enhance conservation outcomes
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Micro-CT analysis of Katian radiolarians from the Malongulli Formation, New South Wales, Australia, and implications for skeletogenesis
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FIGURE 26 in A new species of Cribrarula (Gastropoda: Cypraeidae) from New South Wales, Australia
FIGURE 26. Plot of the first two components of a PCA analysis (PC1 and PC2), representing 66.5% of the variation, using 36 shells from Eastern Australia and eight shell characters (shell length (L); columellar teeth count (CT); umbilicus diameter; CT/L; shell height/width ratio (H/W), CT thickness; anterior terminal thickness; columellar marginal callus). The shells of a few specimens are illustrated (the shell of C. gravida sp. nov., blue triangle, top left, is 35.15 mm long). Specimens identified as C. cribraria melwardi are represented in the figure by red circles, those of C. cribraria cribraria by black diamonds. The albino shell is the holotype of melwardi (Iredale, 1930) (shown in Figs. 8-13).
FIGURES 2225 in A new species of Cribrarula (Gastropoda: Cypraeidae) from New South Wales, Australia
FIGURES 2225. Scanning electron micrographs of radulae: 22) Cribrarula gravida sp. nov., holotype (AMS C. 91000), New South Wales, Australia arrows point to two differences from other radulae shown here (see discussion); 23) C. cribraria melwardi (DMNH 31496), Swinger Reef, Queensland, Australia; 24) C. cribraria cribraria (USNM 773496), Mamanuca Group, Fiji; and 25) C. cribraria cribraria (melanic) (ANSP 271247), Baie Ouemo, New Caledonia.
FIGURES 1-21. 1-6 in A new species of Cribrarula (Gastropoda: Cypraeidae) from New South Wales, Australia
FIGURES 1-21. 1-6) Holotype of Cribrarula gravida sp. nov. from NSW, Australia (AMS C. 91000); 1) dorsal view, with posterior extremity up; 2) labral side view; 3) ventral view; 4) columellar side view; 5) view of the anterior extremity, and 6) view of the posterior extremity; 7) pigmented shell of C. cribraria melwardi from Queensland, Australia (AMS C. 363556); 8-13) holotype of C. cribraria melwardi, from Queensland (AMS C. 57743); 14) large shell of C. cribraria (usually identified as zadela") from Cebu, Philippines (USNM 773378); 15-20) typical shell of C. cribraria cribraria from Queensland (AMS C. 81677); and 21) inflated shell of C. gaskoini from Hawaii (CMB 8-37). Scale bar is 10 mm. Arrows in the figures (13, 16-20) show the following characters: CMC= columellar marginal callus; CT= columellar teeth; DL= dorsal line; DLA= dorsal line angle; FS= fossula; MSu= marginal sulcus; and TR= terminal ridge.
FIGURES 49. Anopsobius spp. 48, Anopsobius wrighti n in A new species of the Gondwanan centipede Anopsobius (Chilopoda: Lithobiomorpha) from New South Wales, Australia
FIGURES 49. Anopsobius spp. 48, Anopsobius wrighti n. sp. 47, AM KS 84039, female. 4, leg 12; 5, leg 13; 6, leg 14; 7, leg 15. Scale 100 µm. 8, AM KS 84040, female, head, maxillipede and tergite of first pedigerous segment. Scale 100 µm. 9. Anopsobius neozelanicus Silvestri, 1909. AM, female, leg 15, Chaslands National Park, South Island, New Zealand. Scale 100 µm.
FIGURE 7 in A new species of Australian frog (Myobatrachidae: Uperoleia) from the New South Wales mid-north coast sandplains
FIGURE 7. Development of tadpoles of Uperoleia mahonyi sp. nov. (A) fully grown tadpole stage 36 (lateral view), arrow indicates opening of spiracle; (B) (top to bottom) stages 41, 38 (dorsal view), stage 27 (ventral view) and stage 26 (dorsal view), bar represents 5 mm; (C) hatched embryo at stage 24, lateral (A) and dorsal (B) views, bar represents 5 mm; (D) tadpoles at stage 41 (dorsal view) after capture at type locality; (E, F) newly metamorphosed froglet at stage 46, dorsal and ventral views (ventral pattern not yet fully developed); (G) = oral disc of stage 28 tadpole, bar represents 1 mm.
FIGURE 5 in A new species of Australian frog (Myobatrachidae: Uperoleia) from the New South Wales mid-north coast sandplains
FIGURE 5. Photographs of the ventral surfaces of Uperoleia mahonyi sp. nov. (A–D), U. tyleri (E–H) and U. martini (I–K) showing the variation in colour and pattern. Uperoleia mahonyi sp. nov. (A) female AMS R185699, Wyrrabalong National Park (photograph S. Clulow); (B) male (left) and female (right) (previously in amplexus), specimens not collected, type locality (photograph S. Mahony); (C) sex unknown, Wyrrabalong National Park (photograph D. Beckers); (D) female AMS R185700, Wyrrabalong National Park (photograph S. Clulow); Uperoleia tyleri (E) male SAMA R66200, Jervis Bay NSW (photograph S. Clulow); (F) sex unknown SAMA R66203, Jervis Bay NSW (photograph S. Clulow); (G) male RAC002, Kioloa NSW (photograph R. Catullo); (H) male SAMA R66205, Jervis Bay NSW (photograph S. Clulow); Uperoleia martini (I) male RAC0083, Nadgee Swamp Nature Reserve NSW, (photograph R. Catullo); (J) male not collected, Far East Gippsland Victoria (photograph M. Clancy); (K) male not collected, Marlo Victoria (photograph G. Webster).
FIGURE 4 in A new species of Australian frog (Myobatrachidae: Uperoleia) from the New South Wales mid-north coast sandplains
FIGURE 4. Uperoleia mahonyi sp. nov. demonstrating the range of variation in dorsal colour and patterning observed in life. (A) female AMS R185700, Wyrrabalong National Park NSW, and (B) same specimen in dark phase (photographs S. Clulow); (C) calling male with vocal sac extended, specimen not collected, type locality (photograph S. Mahony); (D) female AMS R185700 showing groin colour patch, Wyrrabalong National Park NSW (photograph S. Clulow); (E) male and female in amplexus, specimens not collected, type locality (photograph S. Mahony); (F) male, specimen not collected, Norah Head NSW (photograph J. Mulder).
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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.