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zenodo32/100

FIGURE 34. Antichiropus servulus Car, n in The millipede genus Antichiropus (Diplopoda: Polydesmida: Paradoxosomatidae), part 3: species of the Pilbara bioregion of Western Australia

FIGURE 34. Antichiropus servulus Car, n. sp., holotype male (WAM T144614): A–B, habitus: A, lateral view; B, dorsal view; C–F, left gonopod: C, posterior view; D, anterior view; E, medial view; F, lateral view. Abbreviations: C, coxa; F, femorite; MFP, main femoral process; PF, prefemur; S, solenomere; sp1 and sp2, solenomere processes 1 and 2; st, solenomere tip. Scale bars: A = 2 mm; B = 0.5 mm; C–F = 0.2 mm.

opennotspecifiedJun 2019View details →
zenodo32/100

FIGURES 14–16 in Open-holed trapdoor spiders of the genus Teyl (Mygalomorphae: Nemesiidae Anamini) from Western Australia's Pilbara bioregion: a new species and expanded phylogenetic assessment

FIGURES 14–16. Teyl heuretes sp. nov., male holotype (WAM T91918) from Weeli Wolli Creek region, Hamersley Range (Western Australia; PIL), pedipalp: 14, retrolateral view; 15, retro-ventral view; 16, prolateral view. Scale bar = 2.0 mm.

opennotspecifiedSep 2019View details →
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FIGURES 4–13 in Open-holed trapdoor spiders of the genus Teyl (Mygalomorphae: Nemesiidae Anamini) from Western Australia's Pilbara bioregion: a new species and expanded phylogenetic assessment

FIGURES 4–13. Teyl heuretes sp. nov., male holotype (WAM T91918) from Weeli Wolli Creek region, Hamersley Range (Western Australia; PIL), somatic morphology: 4–5, carapace and abdomen, dorsal view; 6, cephalothorax, lateral view; 7, eyes, dorsal view; 8, mouthparts, ventral view; 9–10, cephalothorax and abdomen, ventral view; 11, leg I, prolateral view; 12, leg I tibia, prolateral view; 13, leg I tibia, retrolateral view. Scale bars = 2.0 mm.

opennotspecifiedSep 2019View details →
zenodo32/100

FIGURE 1 in Open-holed trapdoor spiders of the genus Teyl (Mygalomorphae: Nemesiidae Anamini) from Western Australia's Pilbara bioregion: a new species and expanded phylogenetic assessment

FIGURE 1. Map showing collection records of Teyl from Western Australia, including specimens from the Pilbara bioregion (inset box; see Fig. 2). Black circles denote male specimens; open circles denote female or juvenile specimens.

opennotspecifiedSep 2019View details →
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FIGURE 3 in Open-holed trapdoor spiders of the genus Teyl (Mygalomorphae: Nemesiidae Anamini) from Western Australia's Pilbara bioregion: a new species and expanded phylogenetic assessment

FIGURE 3. Maximum Likelihood tree of the concatenated molecular dataset, showing the phylogenetic position of Teyl heuretes sp. nov. relative to other Teyl species, and the relationships among major lineages of Anamini.

opennotspecifiedSep 2019View details →
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FIGURE 2 in Open-holed trapdoor spiders of the genus Teyl (Mygalomorphae: Nemesiidae Anamini) from Western Australia's Pilbara bioregion: a new species and expanded phylogenetic assessment

FIGURE 2. Map showing collection records of Teyl from the Pilbara bioregion (PIL) of Western Australia (see Fig. 1 for details). Black circles denote identified specimens of Teyl heuretes sp. nov.; open circles denote unidentified juveniles. Other mapped IBRA 7.0 bioregions are as follows: CAR, Carnarvon; GAS, Gascoyne; GSD, Great Sandy Desert; LSD, Little Sandy Desert.

opennotspecifiedSep 2019View details →
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FIGURE 9 in A new species of rock skink (Scincidae: Liopholis) from the Central Ranges bioregion of arid Australia

FIGURE 9. Area of occupancy (AOO; coloured areas) and extent of occurrence (EOO; minimum convex hull around habitat) for Liopholis aputja sp. nov. (orange) and Liopholis margaretae (green).

opennotspecifiedOct 2024View details →
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FIGURE 7 in A new species of rock skink (Scincidae: Liopholis) from the Central Ranges bioregion of arid Australia

FIGURE 7. Distribution of Liopholis aputja sp. nov. (orange) and Liopholis margaretae (green). Coloured symbols are examined specimens, white dots are observations of Liopholis margaretae and hence not examined material. The landscape is shown as a digital elevation model over a hill-shading layer, with white areas corresponding to higher elevations. Note the clear topographic separation of the two species by the Amadeus lowlands: blue areas denote Lake Amadeus and associated playa lakes of the Amadeus Basin—a significant (~180 km wide) biogeographical barrier for rock-dwelling fauna. Photos: Jules Farquhar (George Gill and Musgrave Ranges); Jason Round (Amadeus lowlands).

opennotspecifiedOct 2024View details →
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FIGURE 3 in A new species of rock skink (Scincidae: Liopholis) from the Central Ranges bioregion of arid Australia

FIGURE 3. Meristic character variation between lineages based on n = 59 specimens. (A) Biplot of non-metric multidimensional scaling (nMDS) performed on meristic characters. Specimens (coloured points) that are ordinated closer to one another are phenotypically more similar than those further apart. Holotype specimens are denoted by 'H' above data points. (B) Comparative boxplots of meristic characters showing the mean (white dot), median (thick grey horizontal line) range, and inter-quartile range (coloured box). Asterisks denote characters bearing statistically significant (GLM) differences in expected counts.

opennotspecifiedOct 2024View details →
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FIGURE 8 in A new species of rock skink (Scincidae: Liopholis) from the Central Ranges bioregion of arid Australia

FIGURE 8. Habitat at the type locality of Liopholis aputja sp. nov. at Alalkanya Gorge, South Australia, 13 km north of Pukatja, eastern side of Musgrave Ranges, June 2023. (A) View of the gorge and surrounding rocky slopes and ranges, facing east. (B) Boulder pile at the base of the gorge showing typical microhabitat used by the species; an adult specimen (GenBank: PQ067254) had constructed burrows into soil beneath these rocks. Photos: Jules Farquhar.

opennotspecifiedOct 2024View details →
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FIGURE 1 in A new species of rock skink (Scincidae: Liopholis) from the Central Ranges bioregion of arid Australia

FIGURE 1. Maximum likelihood phylogeny of Liopholis species constructed using mitochondrial ND4 sequences. Bootstrap values> 50% are shown.

opennotspecifiedOct 2024View details →
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FIGURE 6 in A new species of rock skink (Scincidae: Liopholis) from the Central Ranges bioregion of arid Australia

FIGURE 6. Comparison of diagnostic scalation between species. Liopholis aputja sp. nov. tend to have fewer supraciliary scales and more ear lobules than L. margaretae. (A) Holotype (SAMA R60802) of L. aputja sp. nov. with six supraciliary scales and five enlarged ear lobules. (B) Liopholis margaretae (GenBank: PQ067257) with eight supraciliary scales and three enlarged ear lobules. Illustrations by Christina Hunter.

opennotspecifiedOct 2024View details →
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FIGURE 2 in A new species of rock skink (Scincidae: Liopholis) from the Central Ranges bioregion of arid Australia

FIGURE 2. Mensural character variation between lineages based on n = 54 specimens. (A) Biplot of PCA with axes showing the first two principal components (PC1 and PC2) and their percentage of explained variation. Large, coloured ovals denote the 90% concentration ellipses for each lineage. Small points denote PC scores of individuals, whereas large points denote group centroids. Holotype specimens are denoted by 'H' above data points. Variables are denoted by arrows, the direction and length of which indicates their degree of contribution to each axis. Each variable is coloured according to its percentage contribution to its associated PC. (B) Graph of mensural character loadings from PCA. (C) Violin plots with embedded boxplots of size corrected mensural characters for each lineage showing the mean (white dot), range, frequency, and inter-quartile range (black rectangle). Asterisks denote characters bearing statistically significant mean differences. Note that SVL was not included in the PCA of size adjusted characters, but is presented in C to show raw adult (> 75 mm SVL) variation in SVL (n = 62 for SVL in C).

opennotspecifiedOct 2024View details →
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FIGURE 5 in A new species of rock skink (Scincidae: Liopholis) from the Central Ranges bioregion of arid Australia

FIGURE 5. Colour pattern variation in Liopholis aputja sp. nov. from Aliwanyiwanyinya Rockhole, SA (A, B); Apara Springs, SA (C); Alalkanya Gorge, SA (D, GenBank: PQ067254); and comparison with L. margaretae patterned morph at Ormiston Gorge, NT (E, GenBank: PQ067258) and plain morph at Kings Canyon, NT (F, GenBank: PQ067257). Photos: Jordan Mulder (A–C); Jules Farquhar (D–F).

opennotspecifiedOct 2024View details →
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FIGURES 11–17 in First record of Didicrum Enderlein (Diptera: Psychodidae, Psychodinae) from the Northern Andes bioregion, with the description of a new species

FIGURES 11–17. Didicrum colombensis sp. nov., female. 11. Head in frontal view; 12. Labella; 13. Right palpus; 14. Antenna scape, pedicel and first two flagellomeres; 15. Tip of antenna; 16. Wing; 17. Postabdomen. Figs. 14–15 at the same scale; scales in millimeters. Abbreviations: cap= capitate structure; cha= chitinous arch; gdl= genital duct lobes; gpo= genital pouch; hyv= hypovalva; sgp= subgenital plate.

opennotspecifiedDec 2012View details →
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FIGURES 1–8 in First record of Didicrum Enderlein (Diptera: Psychodidae, Psychodinae) from the Northern Andes bioregion, with the description of a new species

FIGURES 1–8. Didicrum colombensis sp. nov., male (holotype). 1. Head frontal view; 2. Labella; 3. Tip of antenna; 4. Antenna scape, pedicel and first two flagellomeres; 5. Wing; 6. Terminalia in part, showing hypandrium (hya), aedeagus composed by distiphallus (dfh), basiphallus (bph), Aedeagal sheath (ash), and gonopods, both gonocoxites (gcx), one gonostylus (gst); anterior gonocoxal apodemes (aap), posterior gonocoxal apodemes (pap), and hipoproct (hip); 7. Terminalia in part, showing a surstylus (sur) in lateral view; 8. Terminalia in part, showing the epandrium (epa), subepandrial sclerites (ses), tergum 10 (tgX) and sternum 10 (stX). Figs. 3–4 at the same scale, Figs. 6–8 at the same scale; scales in millimeters.

opennotspecifiedDec 2012View details →
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FIGURES 9–10 in First record of Didicrum Enderlein (Diptera: Psychodidae, Psychodinae) from the Northern Andes bioregion, with the description of a new species

FIGURES 9–10. Didicrum colombensis sp. nov., male. Details of male terminalia (paratypes). 9. Dorso–ventral view of aedeagus, base of gonocoxites and hypandrium; 10. Lateral view of aedeagus. Scale in millimeters. Abreviatures: Anterior apodeme of gonocoxite (aap), aedeagal sheath (ash); basiphallus (bph), distiphallus (dph), gonocoxite (gcx); hypandrium (hya); posterior apodeme of gonocoxite (pap).

opennotspecifiedDec 2012View details →
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Data from: Phylogeography of the Australian freshwater turtle Chelodina expansa reveals complex relationships among inland and coastal bioregions

Open the record for dataset details and reuse information.

publicFeb 2014View details →
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FIGURE 11. Circularius wilsoni n. comb. RMNH Coel. 40207 in Revisionary systematics of the endemic soft coral fauna (Octocorallia: Alcyonacea: Alcyoniina) of the Agulhas Bioregion, South Africa

FIGURE 11. Circularius wilsoni n. comb. RMNH Coel. 40207 (SAF448). Sclerites of membranous base.

opennotspecifiedDec 2017View details →
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TABLE A 2 in A new species of rock skink (Scincidae: Liopholis) from the Central Ranges bioregion of arid Australia

<p><b>TABLE A2.</b> Morphological characters measured and counted in this study. Linear measurements were taken with digital Vernier callipers unless otherwise stated. Unilateral measurements were taken from the right side.</p><table><tbody><tr><th>Variable</th><th>Details</th></tr></tbody><tbody><tr><th>SVL</th><td>Snout-vent length; from tip of snout to posterior edge of cloacal scale. Specimens were straightened out against a flat surfaced ruler, which ensures the body is kept straight. Measured with 0.5mm precision.</td></tr><tr><th>SnL</th><td>Snout length; from tip of snout to anterior margin of eye. Measured with 0.5mm precision.</td></tr><tr><th>TL</th><td>Tail length; from posterior edge of cloacal scale to tail tip. Only measured on complete original tails. Specimens were straightened out against a flat surfaced ruler, which ensures the tail is kept straight. Measured with 0.5mm precision.</td></tr><tr><th>HL</th><td>Head length; from tip of snout to anterior margin of ear. Measured with 0.1mm precision.</td></tr><tr><th>HW</th><td>Head width; across widest point of the temporal region. Measured with 0.1mm precision.</td></tr><tr><th>HD</th><td>Head depth; from the top of the parietal table to the ventral surface of the lower jaw. Measured with 0.1mm precision.</td></tr><tr><th>AGL</th><td>Axilla-groin length; from anterior edge of hindlimb, to posterior edge of the forelimb, with the limbs held at right angles to the body axis; measured with internal jaws of callipers. Measured with 0.5mm precision.</td></tr><tr><th>BW</th><td>Body width; across body at the halfway point between forelimb and hindlimb. Measured with 0.5mm precision.</td></tr><tr><th>FLL</th><td>Forelimb length; from the most medial extent of the post-axillary crease to the tip of the claw of the fourth digit, with the forelimb held at a right angle to the body axis. Measured with 0.5mm precision.</td></tr><tr><th>HLL</th><td>Hindlimb length; from the most medial extent of the post-inguinal crease to the tip of the claw of the fourth digit, with the forelimb held at a right angle to the body axis. Measured with 0.5mm precision.</td></tr><tr><th>MSR</th><td>Midbody scale rows; number of scale rows counted at a midline around the circumference of the body.</td></tr><tr><th>SubDig</th><td>Subdigital lamellae; number of scales under fourth toe, beginning with the scale adjoining the claw and extending to the last large scale distinguishable from the plantar scales.</td></tr><tr><th>Nucals</th><td>Nuchal scales; counted series of broad paired scales on the nape, immediately posterior to the parietal scales.</td></tr><tr><th>SupLab</th><td>Supralabials; scales bordering the upper lip, counted as a series beginning at the scale adjoining the rostral to the last scale above the jaw hinge.</td></tr><tr><th>SupCil</th><td>Supraciliaries; beginning with scale that adjoins prefrontal and loreal, and ends with the last scale still contacting both the ciliaries and last supraocular (Horner 1992).</td></tr><tr><th>Cil</th><td>Ciliaries (or palpebrals); counted series of enlarged scales along free edge of upper eyelid.</td></tr><tr><th>Lob</th><td>Ear lobules, counted series of large projecting scales along the anterior margin of the ear opening. Presence of the much smaller upper ear lobules were noted, but were not included in analysis.</td></tr></tbody></table>

opennotspecifiedOct 2024View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record