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240 results for “Pilbara”
FIGURE 11 in Hiding in plain sight: two new species of diminutive marsupial (Dasyuridae: Planigale) from the Pilbara, Australia
FIGURE 11. Pes of typical A) Planigale kendricki (WAM M51793), and B) Planigale sp. Mt Tom Price (WAM M64697), note relative size difference of pes, shape and placement of apical pads between the species.
FIGURE 14 in Hiding in plain sight: two new species of diminutive marsupial (Dasyuridae: Planigale) from the Pilbara, Australia
FIGURE 14. Proposed distribution of Planigale kendricki inferred from specimens at the Western Australian Museum (blue dots) that were examined during this study. The border of the Pilbara region is shown by the dashed line in inset A.
FIGURE 17 in Hiding in plain sight: two new species of diminutive marsupial (Dasyuridae: Planigale) from the Pilbara, Australia
FIGURE 17. Upper and lower dentition of Planigale tealei (WAM M47841, paratype) from canine to M4. A) upper and B) lower dentition in occlusal view. Abbreviations: acid, anterior cingulid; alci, anterolabial cingulum; ecf, ectoflexus; encd, entoconid; hycd, hypoconid; mec, metacone; mecd, metaconid; pac, paracone; pacd, paraconid; pcid, posterior cingulid; prc, protocone; prcd, protoconid; stB, stylar cusp B; stD, stylar cusp D.
FIGURE 18 in Hiding in plain sight: two new species of diminutive marsupial (Dasyuridae: Planigale) from the Pilbara, Australia
FIGURE 18. Proposed distribution of Planigale tealei inferred from specimens (pink triangles) in the Western Australian Museum that were examined during this study, including southern locality of Waldburg Station. The border of the Pilbara is shown by a dotted line in Inset A.
Rock pools as a source of environmental DNA for the detection of the threatened Pilbara olive python (Liasis olivaceus barroni)
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Data from: Contrasting influences of geographic range and distribution of populations on patterns of genetic diversity in two sympatric Pilbara Acacias
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FIGURE 13. Preserved holotype WAM R127817 in What's under the hood? Phylogeny and taxonomy of the snake genera Parasuta Worrell and Suta Worrell (Squamata: Elapidae), with a description of a new species from the Pilbara, Western Australia
FIGURE 13. Preserved holotype WAM R127817 of Suta gaikhorstorum sp. nov. (image‒B. Maryan).
FIGURE 9. Preserved holotype WAM R20606 in What's under the hood? Phylogeny and taxonomy of the snake genera Parasuta Worrell and Suta Worrell (Squamata: Elapidae), with a description of a new species from the Pilbara, Western Australia
FIGURE 9. Preserved holotype WAM R20606 of Denisonia monachus (image‒B. Maryan).
FIGURE 6 in What's under the hood? Phylogeny and taxonomy of the snake genera Parasuta Worrell and Suta Worrell (Squamata: Elapidae), with a description of a new species from the Pilbara, Western Australia
FIGURE 6. Preserved lectotype AM R.131135 of Hoplocephalus spectabilis (image‒S. Mahony).
FIGURE 2. Preserved holotype BMNH 1946.1.21.73 in What's under the hood? Phylogeny and taxonomy of the snake genera Parasuta Worrell and Suta Worrell (Squamata: Elapidae), with a description of a new species from the Pilbara, Western Australia
FIGURE 2. Preserved holotype BMNH 1946.1.21.73 of Elaps gouldii (image‒J. Turpin).
FIGURE 3 in A new species of Underwoodisaurus (Squamata: Gekkota: Carphodactylidae) from the Pilbara region of Western Australia
FIGURE 3. Holotype of Underwoodisaurus seorsus sp. nov. (WAM R157525).
FIGURE 4. Preserved holotype WAM R39782 in Molecular and morphological assessment of Varanus pilbarensis (Squamata: Varanidae), with a description of a new species from the southern Pilbara, Western Australia
FIGURE 4. Preserved holotype WAM R39782 of V. pilbarensis in dorsal, ventral and lateral views.
Figure 3 from: Wong MKL, McRae JM (2024) Leptanilla voldemort sp. nov., a gracile new species of the hypogaeic ant genus Leptanilla (Hymenoptera, Formicidae) from the Pilbara, with a key to Australian Leptanilla. ZooKeys 1197: 171-182. https://doi.org/10.3897/zookeys.1197.114072
Figure 3 Dorsal view of Leptanilla voldemort sp. nov. (holotype) from Western Australia. The postpetiole and gaster of the specimen, which were disconnected from the main body during mounting, were imaged separately and subsequently attached to the body digitally while ensuring consistency of scale.
Figure 2 from: Wong MKL, McRae JM (2024) Leptanilla voldemort sp. nov., a gracile new species of the hypogaeic ant genus Leptanilla (Hymenoptera, Formicidae) from the Pilbara, with a key to Australian Leptanilla. ZooKeys 1197: 171-182. https://doi.org/10.3897/zookeys.1197.114072
Figure 2 Profile view of Leptanilla voldemort sp. nov. (holotype) from Western Australia. The postpetiole and gaster of the specimen, which were disconnected from the main body during mounting, were imaged separately and subsequently attached to the body digitally while ensuring consistency of scale.
Figure 5 from: Wong MKL, McRae JM (2024) Leptanilla voldemort sp. nov., a gracile new species of the hypogaeic ant genus Leptanilla (Hymenoptera, Formicidae) from the Pilbara, with a key to Australian Leptanilla. ZooKeys 1197: 171-182. https://doi.org/10.3897/zookeys.1197.114072
Figure 5 Worker of Leptanilla swani (BENNSPECIMENID_735794) a dorsal view b profile view c full-face view.
Supplementary material 3 from: Molloy SW, Davis RA, Dunlop JA, van Etten EJB (2017) Applying surrogate species presences to correct sample bias in species distribution models: a case study using the Pilbara population of the Northern Quoll. Nature Conservation 18: 27-46. https://doi.org/10.3897/natureconservation.18.12235
Weighted mean SDMs for individual algorithms and evaluation statistics (biomod2) :
Supplementary material 2 from: Molloy SW, Davis RA, Dunlop JA, van Etten EJB (2017) Applying surrogate species presences to correct sample bias in species distribution models: a case study using the Pilbara population of the Northern Quoll. Nature Conservation 18: 27-46. https://doi.org/10.3897/natureconservation.18.12235
Full readout for the MaxEnt northern quoll SDM :
Supplementary material 1 from: Molloy SW, Davis RA, Dunlop JA, van Etten EJB (2017) Applying surrogate species presences to correct sample bias in species distribution models: a case study using the Pilbara population of the Northern Quoll. Nature Conservation 18: 27-46. https://doi.org/10.3897/natureconservation.18.12235
GIS data sets used in variable assessments and map of Pilbara vegetation systems :
Figure 7 from: Whisson C, Köhler F (2013) Gastrocopta (Mollusca, Gastropoda, Pupillidae) in the Pilbara region of Western Australia. ZooKeys 261: 15-39. https://doi.org/10.3897/zookeys.261.4269
Figure 7 - Maximum Likelihood phylogram for 16S based on analysis of 26 new sequences of Gastrocopta from Western Australia and the 16 Genbank sequences made available by Nekola et al. (2012). Sequences of Vertigo spp. and Pupilla spp. were used as out-group to root the tree. Labels on branches indicate nodal support by 200 ML bootstrap replicates.
Figure 4 from: Whisson C, Köhler F (2013) Gastrocopta (Mollusca, Gastropoda, Pupillidae) in the Pilbara region of Western Australia. ZooKeys 261: 15-39. https://doi.org/10.3897/zookeys.261.4269
Figure 4 - Distributional records of Gastrocopta larapinta (Tate, 1896) (●) and Gastrocopta servilis (Gould, 1843) (Δ) in the Pilbara region. Shaded: Protected area.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
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