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202 results for “Australian endemics”
FIGURE 4 in A review of the Australian endemic clam shrimp, Paralimnadia Sars 1896 (Crustacea: Branchiopoda: Spinicaudata)
FIGURE 4. Map of Australia showing distributions of all species with insert of details of Sydney region, especially for sites of P. stanyleyana.
FIGURE 24 in A review of the Australian endemic clam shrimp, Paralimnadia Sars 1896 (Crustacea: Branchiopoda: Spinicaudata)
FIGURE 24. Terms used in descriptions of Paralimnadia in particular and of limnadiids in general. Note that for the clapser, the endite component of each part is added in brackets. Also note that the posterior spine row is double and is often erroneously called the dorsal spines.
FIGURE 23. Paralimnadia westraliensis n in A review of the Australian endemic clam shrimp, Paralimnadia Sars 1896 (Crustacea: Branchiopoda: Spinicaudata)
FIGURE 23. Paralimnadia westraliensis n. sp.: A–C, male WAM C61757; D, male, WAM C71763; E–G female, WAM C61758. A, head; B, telson; C, clasper I with long palp of clasper II to the right; D, male telson; E, carapace; F, head; G, female telson. Scale bars 1 mm.
FIGURE 2 in A review of the Australian endemic clam shrimp, Paralimnadia Sars 1896 (Crustacea: Branchiopoda: Spinicaudata)
FIGURE 2. Paralimnadia stanleyana (King). Fifth thoracopod of specimen from Bundeena (AM P98991). E= endite, AS = anterior setae, PS = posterior setae, S = setae (undifferentiated).
FIGURE 1 in A review of the Australian endemic clam shrimp, Paralimnadia Sars 1896 (Crustacea: Branchiopoda: Spinicaudata)
FIGURE 1. Paralimnadia stanleyana (King). A–E, neotype male (AM P98989); F–H, female from AM G5223. A, carapace; B, head; C, telson; D, two antennomeres; E, clasper I with palp of clasper II; F, carapace, G, head; H, telson; J–L redrawn from Sars, 1895; J, male head; K, male telson, L. clasper I. Scale bars 1 mm, Sars drawings at approximately the same scale as others.
FIGURE 3 in A review of the Australian endemic clam shrimp, Paralimnadia Sars 1896 (Crustacea: Branchiopoda: Spinicaudata)
FIGURE 3. Paralimnadia stanleyana (King), representative male heads, male telsons and palps on clasper I and clasper II (left to right) from A, Bundenna (AM P98991); B, Jerrawangala (AM P98992); C, Kanangra (AM P98990); D, Mt Hay (AM P98993); and E, Warrah Sanctuary (AM P55644). Scale bars for heads and telsons 1 mm, for claspers 0.1 mm.
FIGURE 4 in A newly recognised Australian endemic species of Austrolecanium Gullan & Hodgson 1998 (Hemiptera: Coccidae) from Queensland
FIGURE 4. Adult female of Austrolecanium cryptocaryae Lin & Cook, sp. n. A: marginal seta; B: dorsal microductule; C: dorsal seta; D: preopercular pore; E: anal plate and anogenital fold; F: anal ring; G: pregenital disc-pore; H: leg; I: stigmatic area; J: ventral microduct; K: ventral seta; L: spiracular disc-pore; M: antenna. The scale lines against each structure are: E, F, H, I and M = 100 Μm; A, B and K = 10 Μm; C, D, G, J and L = 5 Μm.
FIGURE 3 in A newly recognised Australian endemic species of Austrolecanium Gullan & Hodgson 1998 (Hemiptera: Coccidae) from Queensland
FIGURE 3. The Maximum Clade Credibility (MCC) tree from analysis of the concatenated dataset (2429 bp). The tree was rooted using sequences from Coccus hesperidum. Branch support is indicated on internal branches (MP bootstrap/Bayesian posterior probability). Only bootstrap values ± 70% and posterior probabilities ± 0.95 are shown. The coloured squares under branches indicate that the branch was present in analyses of that gene. Abbreviations as per Table 1.
FIGURE 2 in A newly recognised Australian endemic species of Austrolecanium Gullan & Hodgson 1998 (Hemiptera: Coccidae) from Queensland
FIGURE 2. The Maximum Clade Credibility (MCC) trees from MrBayes analyses of four datasets: A. rDNA (18S+28S), B. COI, C. EF-1α and D. wingless. The tree was rooted using sequences from Coccus hesperidum. Branch support is indicated on internal branches (MP bootstrap/Bayesian posterior probability). Only bootstrap values ± 70% and posterior probabilities ± 0.95 are shown.
FIGURE 1. A in A newly recognised Australian endemic species of Austrolecanium Gullan & Hodgson 1998 (Hemiptera: Coccidae) from Queensland
FIGURE 1. A. An adult female of Austrolecanium cryptocaryae sp. n. on a leaf of Cryptocarya microneura (Lauraceae) in Queensland, Australia. Photo by L.G. Cook. B. An adult female of Austrolecanium sassafras on a leaf of Endiandra sieberi (Lauraceae) from New South Wales, Australia. Photo by T.L. Semple.
FIGURE 5–13 in A new species of the endemic Australian genus Hyptiogaster Kieffer (Hymenoptera: Gasteruptiidae)
FIGURE 5–13. Hyptiogaster arafura sp. nov. 5, frontal head, holotype ♀. 6, lateral head, holotype ♀. 7, dorsal head, holotype ♀. 8, lateral mesosoma and propleuron, holotype ♀. 9, hind legs, holotype ♀. 10, dorsal mesosoma and propleuron, holotype ♀. 11, lateral metasoma apex and ovipositor, holotype ♀. 12, left wings, paratype ♂. 13, ventral view genitalia, paratype ♂. Scale bars = 1.0 mm.
FIGURES 1–4 in A new species of the endemic Australian genus Hyptiogaster Kieffer (Hymenoptera: Gasteruptiidae)
FIGURES 1–4. Hyptiogaster arafura sp. nov. 1, lateral habitus, holotype ♀. 2, dorsal habitus, holotype ♀. 3, lateral habitus, paratype ♂. 4, dorsal habitus, paratype ♂. Scale bars = 1.0 mm
FIGURE 2 in Revision of the Australian Wet Tropics endemic rainbowfish genus Cairnsichthys (Atheriniformes: Melanotaeniidae), with description of a new species
FIGURE 2. Ordination analyses for Cairnsichthys individuals in the first two dimensions showing northern (diamonds) and southern (circles) populations for (A) PCoA of nuclear genetic markers based on 29 fish and 52 allozyme loci; envelopes show different populations and site codes match Table 1 (75% and 10% of multivariate variation on dimensions 1 and 2 respectively), (B) PCA of meristic data based on 55 fish and 10 variable characters; correlations between data and character variables shown with eigenvectors, codes match Table 2 (31% and 14% variation), and (C) PCA of morphometric data based on 50 fish and 21 characters; eigenvector codes match Table 2 (25% and 16% variation).
FIGURE 5 in Revision of the Australian Wet Tropics endemic rainbowfish genus Cairnsichthys (Atheriniformes: Melanotaeniidae), with description of a new species
FIGURE 5. Large adult pair of Cairnsichthys bitaeniatus sp. nov. from Little Cooper Creek, photographed in an aquarium (ca. 50–60 mm SL); the upper fish is the male (MH).
FIGURE 1 in Revision of the Australian Wet Tropics endemic rainbowfish genus Cairnsichthys (Atheriniformes: Melanotaeniidae), with description of a new species
FIGURE 1. Location map in the wet Tropics bioregion of northeastern Australia showing Cairnsichthys study collection sites (see Table 1), including locations of other museum material examined, larger cities/towns and major rivers.
FIGURE 4 in Revision of the Australian Wet Tropics endemic rainbowfish genus Cairnsichthys (Atheriniformes: Melanotaeniidae), with description of a new species
FIGURE 4. Cairnsichthys bitaeniatus sp. nov. freshly prepared holotype (QM I.39335), 65.6 mm SL male, Little Cooper Creek (MH).
FIGURE 8 in Revision of the Australian Wet Tropics endemic rainbowfish genus Cairnsichthys (Atheriniformes: Melanotaeniidae), with description of a new species
FIGURE 8. Typical rainforest fast flowing stream habitat and type locality of Cairnsichthys bitaeniatus sp. nov., Little Cooper Creek, wet Tropics bioregion, northern Australia, including adult fish (lower centre of underwater image) positioned in area of high velocity (MH).
FIGURE 7 in Revision of the Australian Wet Tropics endemic rainbowfish genus Cairnsichthys (Atheriniformes: Melanotaeniidae), with description of a new species
FIGURE 7. Comparative specimen images of sister rainbowfish species: (left) Cairnsichthys bitaeniatus sp. nov. (A) freshly prepared holotype (QM I.39335), 65.6 mm SL male, Little Cooper Creek, (B) preserved holotype, (C) freshly prepared specimen (NTM S.17778-001), 44.4 mm SL male, Little Cooper Creek, (D) radiograph of holotype with arrow highlighting the close arrangement of the first two anal fin rays compared to the following rays, and (right) C. rhombosomoides (E) freshly prepared specimen (NTM S.17700-001), 52.4 mm SL male, Smoko Creek, (F) preserved specimen, Smoko Creek (NTM S.17700-001), (G) preserved paratype (AMS IA.4774) 37.5 mm SL, Babinda Creek, (H) radiograph of representative specimen with arrow highlighting different spacing of anal fin rays (NTM S.17930-001), 50.0 mm SL male, Nyleta Creek.
FIGURE 6 in Revision of the Australian Wet Tropics endemic rainbowfish genus Cairnsichthys (Atheriniformes: Melanotaeniidae), with description of a new species
FIGURE 6. Comparative life images of sister rainbowfish species, aquarium images unless otherwise stated: (left) Cairnsichthys bitaeniatus sp. nov. (A) adult male from Hutchinson Creek, image reversed (KM), (B) adult female from Little Cooper Creek yawning (KM), (C) group of smaller adults from Little Cooper Creek showing narrow body and double stripes (KM), (D) in situ photograph of adult, Little Cooper Creek (GA), and (right) C. rhombosomoides from Harvey Creek (E) adult male (KM) (F), sparing large adult males, image reversed (Gunther Schmida), (G) group of smaller adults showing deep body and single stripe (KM), (H) in situ photograph of adult (Nathan Litjens).
FIGURE 3 in Revision of the Australian Wet Tropics endemic rainbowfish genus Cairnsichthys (Atheriniformes: Melanotaeniidae), with description of a new species
FIGURE 3. Congruence for nuclear and mitochondrial genetic data for seven sites across the range of Cairnsichthys: (A) midpoint rooted neighbour-joining based on pairwise fixed differences at 52 allozyme loci, and (B) ML tree for 1141bp of cytochrome b. Population codes match Figure 1 and Table 1. (*) Geographically proximate reference sample, Behana Creek, from Unmack et al. (2013) used to represent this geographic group.
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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)
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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.