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547 results for “New South Wales”

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FIGURE 2 in A new species of Delma Gray 1831 (Squamata: Pygopodidae) from the Hunter Valley and Liverpool Plains of New South Wales

FIGURE 2. SNP variation in Delma, A) PCoA ordination of SNP diversity, B) STRUCTURE barplots show preference for K = 2 model, with little distinction between Delma impar north and south populations.

opennotspecifiedJul 2022View details →
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FIGURE 5 in A new species of Delma Gray 1831 (Squamata: Pygopodidae) from the Hunter Valley and Liverpool Plains of New South Wales

FIGURE 5. Distribution of samples analyzed for morphological (A) or molecular (B and C) comparisons this study.

opennotspecifiedJul 2022View details →
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FIGURE 4 in A new species of Delma Gray 1831 (Squamata: Pygopodidae) from the Hunter Valley and Liverpool Plains of New South Wales

FIGURE 4. Photos in life of Delma vescolineata sp. nov. (A–D), Delma impar (E–F), Delma plebeia (G), Delma inornata (H); A) AMS R.186619, Jerrys Plains NSW, B) AMS R.185999, Muswellbrook NSW, C) Not collected, Muswellbrook NSW, D) Not collected, Juvenile, Muswellbrook NSW, E) Not collected, Cooma NSW, F) Not collected, Naracoorte SA, G) Not collected, Muswellbrook NSW, H) Not collected, Canberra ACT.

opennotspecifiedJul 2022View details →
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FIGURE 3 in A new species of Delma Gray 1831 (Squamata: Pygopodidae) from the Hunter Valley and Liverpool Plains of New South Wales

FIGURE 3. Holotype (AMS R.185998) of Delma vescolineata sp. nov., A) in life, B) lateral view of head, C) dorsal view of head, D) labelled lateral scale illustration of head, E) labelled dorsal scale illustration of head. R = rostral, IN = internasal, SL = supralabials, IL = infralabials, PN = postnasal, L = loreal, FN = frontonasal, PF = prefrontal, SC = supraciliary, SO = supraocular, RF = rostral frontal, CF = caudal frontal, PT = pretemporal, P = parietal, T = temporal, O = occipital.

opennotspecifiedJul 2022View details →
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Distribution. SE Australia: coastal habitats up to 100 km inland in SE Queensland, E New South Wales, SE Victoria, and Tasmania, including Flinders I and Three Hummock I. in Muridae

Distribution. SE Australia: coastal habitats up to 100 km inland in SE Queensland, E New South Wales, SE Victoria, and Tasmania, including Flinders I and Three Hummock I.

opennotspecifiedNov 2017View details →
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Subspecies and Distribution. P d. delicatulus Gould, 1842 — monsoonal NW & NC Australia, from Pilbara to far NW Queensland, and including the islands of Tent, Augustus, Bigge, Sir Graham Moore, Bathurst, Melville, Marchinbar, Groote Eylandt, and Sir Edward Pellew Group (West, South West, North, and Vanderlin). P. d. pumilus Troughton, 1936 — NE & CE Australia from Cape York S to NE New South Wales, including Fraser I; also reported from Trans Fly plains in S New Guinea. in Muridae

Subspecies and Distribution. P d. delicatulus Gould, 1842 — monsoonal NW & NC Australia, from Pilbara to far NW Queensland, and including the islands of Tent, Augustus, Bigge, Sir Graham Moore, Bathurst, Melville, Marchinbar, Groote Eylandt, and Sir Edward Pellew Group (West, South West, North, and Vanderlin). P. d. pumilus Troughton, 1936 — NE & CE Australia from Cape York S to NE New South Wales, including Fraser I; also reported from Trans Fly plains in S New Guinea.

opennotspecifiedNov 2017View details →
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Distribution. Restricted to arid inland Australia, including E edge of the Simpson Desert in far SW Queensland, the S Strzelecki Desert in South Australia, and the far NW New South Wales, with some expansion following periods of high rainfall and occasional records outside main known range. in Muridae

Distribution. Restricted to arid inland Australia, including E edge of the Simpson Desert in far SW Queensland, the S Strzelecki Desert in South Australia, and the far NW New South Wales, with some expansion following periods of high rainfall and occasional records outside main known range.

opennotspecifiedNov 2017View details →
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Subspecies and Distribution. M.f.fuscusThomas,1882—nowrestrictedtoN&WTasmania,butsubfossilevidence(owlpellets)indicatesaformerlymoreextensiverangeacrossTasmania. M. f. mordicus Thomas, 1922 — highly fragmented in mainland SE Australia, including the Otway and Dandenong ranges, coastal areas of Gippsland and SE New South Wales, and the Great Dividing Range around Barrington Tops and from near the Brindabella Range S to Warburton. in Muridae

Subspecies and Distribution. M.f.fuscusThomas,1882—nowrestrictedtoN&WTasmania,butsubfossilevidence(owlpellets)indicatesaformerlymoreextensiverangeacrossTasmania. M. f. mordicus Thomas, 1922 — highly fragmented in mainland SE Australia, including the Otway and Dandenong ranges, coastal areas of Gippsland and SE New South Wales, and the Great Dividing Range around Barrington Tops and from near the Brindabella Range S to Warburton.

opennotspecifiedNov 2017View details →
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Distribution. Natural distribution now restricted to West and East Franklin Is, Nuyts Archipelago, South Australia. From 1990, successful introductions (assisted colonization) from there to Salutation I, W Western Australia, and to Reevesby I and Saint Peter I, South Australia; also reintroduced to predator-exclosures at Mt Gibson Sanctuary, Western Australia, Arid Recovery Reserve, Roxby Downs, South Australia, and Scotia Sanctuary, New South Wales. Attempted reintroduction to Faure I, Western Australia, failed. in Muridae

Distribution. Natural distribution now restricted to West and East Franklin Is, Nuyts Archipelago, South Australia. From 1990, successful introductions (assisted colonization) from there to Salutation I, W Western Australia, and to Reevesby I and Saint Peter I, South Australia; also reintroduced to predator-exclosures at Mt Gibson Sanctuary, Western Australia, Arid Recovery Reserve, Roxby Downs, South Australia, and Scotia Sanctuary, New South Wales. Attempted reintroduction to Faure I, Western Australia, failed.

opennotspecifiedNov 2017View details →
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Distribution. Widespread in low-rainfall areas in C Australia, including C & S Northern Territory, inland Queensland, extreme WC Western Australia, N South Australia, and NW New South Wales. in Muridae

Distribution. Widespread in low-rainfall areas in C Australia, including C & S Northern Territory, inland Queensland, extreme WC Western Australia, N South Australia, and NW New South Wales.

opennotspecifiedNov 2017View details →
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Distribution. From NE Queensland S to C coastal New South Wales, E Australia, including offshore islands of Dunk, Hinchinbrook, Carlisle, Middle, Fraser, and North Stradbroke. in Muridae

Distribution. From NE Queensland S to C coastal New South Wales, E Australia, including offshore islands of Dunk, Hinchinbrook, Carlisle, Middle, Fraser, and North Stradbroke.

opennotspecifiedNov 2017View details →
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FIGURE 2. A–E, Pinkfloydia rixi n in The discovery of the orb-weaving spider genus Pinkfloydia (Araneae, Tetragnathidae) in eastern Australia with description of a new species from New South Wales and comments on the phylogeny of Nanometinae

FIGURE 2. A–E, Pinkfloydia rixi n. sp. (male holotype and female paratype); F, P. harveii Dimitrov & Hormiga (form Western Australia, Austin Bay Nat. Res., WAM T98595). Arrow in A and F point out to diagnostic characters. A, F, male palp, ventral. B, male palp, ventral. C, D, dorsal and ectal respectively (arrow, cymbial ectomedial process. E, epigynum, ventral. Abbreviations: C, conductor; CEBP, cymbial ectobasal process; E, embolus; MEA, Metainae embolic process; P, paracymbium; T, tegulum. Scale bars: A, E, 0.1 mm; all other, 0.2 mm.

opennotspecifiedAug 2017View details →
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FIGURE 4 in The discovery of the orb-weaving spider genus Pinkfloydia (Araneae, Tetragnathidae) in eastern Australia with description of a new species from New South Wales and comments on the phylogeny of Nanometinae

FIGURE 4. Optimal topology from the maximum likelihood analysis of the full dataset of Dimitrov et al. (2016), simplified from their figure S3 to include only Tetragnathidae and its closest relatives (a reduced version of the full tree is presented in their figure 2). Values at nodes denote bootstrap support above 50%. Dimitrov et al. (2016) used a standard target-gene approach with the following genes or gene fragments: two nuclear ribosomal genes, namely18S rRNA and 28S rRNA; two mitochondrial ribosomal genes, 12S rRNA and 16S rRNA, the nuclear protein-encoding genes histone H3 and wingless, and the mitochondrial protein-encoding gene cytochrome c oxidase subunit I.

opennotspecifiedAug 2017View details →
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FIGURE 1. A–F, Pinkfloydia rixi n in The discovery of the orb-weaving spider genus Pinkfloydia (Araneae, Tetragnathidae) in eastern Australia with description of a new species from New South Wales and comments on the phylogeny of Nanometinae

FIGURE 1. A–F, Pinkfloydia rixi n. sp. A, B, E, male (holotype); C, D, F, female (paratype). A, C, lateral. B, D, dorsal. E, prosoma, anterolateral. F, prosoma, anterior. Scale bars: all 1.0 mm, except E, F (0.5 mm).

opennotspecifiedAug 2017View details →
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FIGURE 3. A–E, Pinkfloydia rixi n in The discovery of the orb-weaving spider genus Pinkfloydia (Araneae, Tetragnathidae) in eastern Australia with description of a new species from New South Wales and comments on the phylogeny of Nanometinae

FIGURE 3. A–E, Pinkfloydia rixi n. sp. (male holotype and female paratype); F–H, P. harveii Dimitrov & Hormiga (form Western Australia, Austin Bay Nat. Res., WAM T98595). A, male palp, ventral. B, embolic division, ventral. C, paracymbium, ventral. D, epigynum, ventral. E, epigynum (cleared), dorsal. F, male palp, ventral. G, embolic division, ventral. H, paracymbium, ventral. Abbreviations: C, conductor; CEBP, cymbial ectobasal process CEMP, cymbial ectomedial process; E, embolus; MEA, Metainae embolic process; P, paracymbium; S, spermathecae; T, tegulum. Scale bars: A, F, D, 0.2 mm; all other, 0.1 mm.

opennotspecifiedAug 2017View details →
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Supplementary material 1 from: McCormack R (2014) The eastern swamp crayfish Gramastacus lacus sp. n. (Decapoda, Parastacidae) a new species of freshwater crayfish from coastal New South Wales, Australia. ZooKeys 398: 53-67. https://doi.org/10.3897/zookeys.398.7544

Gramastacus lacus specimen data.: Explanation note: Specimen record with locality details for known populations of the eastern swamp crayfish Gramastacus lacus sp. n., in coastal New South Wales.

opencc-by-4.0Apr 2014View details →
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FIGURE 12 in A new Candonopsini (Ostracoda) genus from subterranean waters of New South Wales (Australia)

FIGURE 12. Map of world distribution of Candonopsini genera and majority consensus of over 100 most parsimonious trees as a result of the cladistic analysis. Colors of circles on the map correspond to genera on the cladistic tree, numbers bellow clades represent support as the result of majority rule search.

opennotspecifiedFeb 2018View details →
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FIGURE 2 in A new Candonopsini (Ostracoda) genus from subterranean waters of New South Wales (Australia)

FIGURE 2. SEM of Hancockcandonopsis inachos gen. nov. sp. nov. Female (P.100297): A—whole carapace viewed from the right side; B, RV, lateral view from the outside; C, LV, lateral view from the inside; D—view of a surface cuticular pore with broken seta.

opennotspecifiedFeb 2018View details →
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FIGURE 6 in A new Candonopsini (Ostracoda) genus from subterranean waters of New South Wales (Australia)

FIGURE 6. Line drawings of Hancockcandonopsis io gen. nov., sp. nov. Male (P.100299): A—whole carapace; B, C—A1 (first segment on B not illustrated, not all setae illustrated on C); D, Rake-like organ; E—A2; F—right prehensile palp, G—left prehensile palp; H—Md-palp; I—L6; J—basal segment of L6; K—L7; L—hemipenis; M—UR. Scales = 0.1 mm.

opennotspecifiedFeb 2018View details →
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FIGURE 5 in A new Candonopsini (Ostracoda) genus from subterranean waters of New South Wales (Australia)

FIGURE 5. SEM of Hancockcandonopsis io gen. nov., sp. nov. A–D, female; E–I, male: A—whole carapace viewed from the right side; B—detail of the dorsal margin; C—surface cuticular pore with seta; D—detail of the surface; E—LV, viewed from the outside; F—RV, viewed from the outside.

opennotspecifiedFeb 2018View details →

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International Brain Laboratory public data

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OpenNeuro

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