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1,213 results for “South Australia”

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Fig. 2 in Eocene phymaraphiniid demosponges from South Western Australia: filling the gap

Fig. 2. Specimens of phymaraphiniid sponges illustrated by Chapman and Crespin (1934) and Laubenfels (1953). A, B. Type material of Twertupia subglabra (Chapman and Crespin, 1934) (originally Thamnospongia subglabra; Chapman and Crespin 1934: pl. 9: 17, 18), Hamersley River area, Australia, upper Eocene. A. Holotype, GSWA H1. B. Paratype GSWA H16. C, D. Twertupia subglabra (originally Stachyspongia neoclavatella; Laubenfels 1953: text-fig. 2A right and left), SW Australia, exact locality unknown, upper Eocene, WA23732 (two different specimens with the same collection number). E. Type material of Pickettispongia tabelliformis (Chapman and Crespin, 1934) (originally Discodermia tabelliformis; Chapman and Crespin 1934: pl. 7: 7), Hamersley River area, Australia, upper Eocene. GSWA 1/3966, E1, E2, opposite surface views, E3, section view.

opencc-by-4.0May 2023View details →
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Fig. 4 in Eocene phymaraphiniid demosponges from South Western Australia: filling the gap

Fig. 4. Skeletal features of the phymaraphiniid sponge Twertupia subglabra (Chapmann and Crespin, 1934), from the Fitzgerald River National Park (A, B, F, H, Doyle Road; C, D, E, G, I, Hamersley River area), Australia, upper Eocene. A. Upper surface showing ectosomal disco/phyllotriaenes; between them rhizoclone-like modified desmas are visible, ZPAL Pf. 14/st.A822. B. General view of the choanosomal skeleton with canal openings, ZPAL Pf. 14/ st.A819. C. Detailed view of choanosomal skeleton surface showing trider desmas and their sculpture in oblique view, ZPAL Pf. 14/st.906. D. Surface of choanosomal skeleton showing development of the secondary skeleton composed of flattened modified triders covering canal openings, ZPAL Pf. 14/ st.906. E. Young trider desma partly incorporated into the skeleton, ZPAL Pf. 14/st.A743. F. Surface of choanosomal skeleton showing variable sculpturing of the triders, ZPAL Pf. 14/st.A819. G. Details of trider sculpture and articulations, ZPAL Pf. 14/st.906. H, I. Trider sculpture variability. H. ZPAL Pf. 14/st.A748. I. ZPAL Pf. 14/st.A821.

opencc-by-4.0May 2023View details →
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Fig. 1 in Eocene phymaraphiniid demosponges from South Western Australia: filling the gap

Fig. 1. Palaeogeography of the Eocene in SW Australia (A) and location of investigated sections (B, stars). Eocene sediment shaded. Based on Gammon et al. (2000b).

opencc-by-4.0May 2023View details →
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Fig. 7 in Eocene phymaraphiniid demosponges from South Western Australia: filling the gap

Fig. 7. Loose spicules of the extant phymaraphiniid sponge Kaliapsis incrustans (Vacelet and Vasseur, 1971) from Madagascar, MNHN E531, Tu63. A–C. Microrhabds. D, E. Amphiasters. F–J. Ectosomal phyllotriaenes in top (F–H, note tuberculation) and lower surface views (I, J, note short rhabd).

opencc-by-4.0May 2023View details →
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Figure 5 in Organic geochemistry of a high-latitude Lower Cretaceous lacustrine sediment sample from the Koonwarra Fossil Beds, South Gippsland, Victoria, Australia

Figure 5: Partial m/z 178, 202 and 228 mass chromatograms showing the distribution of common polycyclic aromatic hydrocarbons (PAH) in the aromatic fraction.

opencc-by-4.0Dec 2016View details →
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Figure 3 in New specimens of ektopodontids (Marsupialia: Ektopodontidae) from South Australia

Figure 3. Chunia spp. teeth: a-d. Chunia illuminata, Woodburne and Clemens, 1986. a. right maxilla. QM F10641, mirror-imaged to show angle of face, Tedford Locality; b. M1 SAM P29081, White Sands Basin; c. SAM P17997, (type) M2 Tedford Locality; d. M3 SAM P33944, Tedford Locality, Lake Palankarinna, Ditjimanka Local Fauna; e. Chunia omega Woodburne and Clemens, 1986, half of M3? (type) SAM P23065, Tom O's Quarry, Lake Tarkarooloo, Tarkarooloo Local Fauna. Abbreviations: mel, metaconule; pastl, parastyloph; pr, protocone; prl, protoloph; 3, cusp 3; 5, cusp 5.

opencc-by-4.0Dec 2016View details →
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Figure 4 in Organic geochemistry of a high-latitude Lower Cretaceous lacustrine sediment sample from the Koonwarra Fossil Beds, South Gippsland, Victoria, Australia

Figure 4: Partial m/z 191 and 217 mass chromatograms used in calculation of sterane/hopane ratio. A ratio of 0.03 indicates that a very significant proportion of overall biomass in the lake was derived from bacteria.

opencc-by-4.0Dec 2016View details →
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Figure 6 in New specimens of ektopodontids (Marsupialia: Ektopodontidae) from South Australia

Figure 6. Ektopodontid spp.; comparison of first upper molars. a. Chunia illuminata SAM P29081 (left); b. Ektopodon serratus SAM P13847 (left); c. Ektopodon stirtoni SAM P22504 (right); d. Ektopodon litolophus SAM P30176 (right); e. Ektopodon tommosi NMV P48750-1 (left); f. Ektopodon tommosi SAM P19962 (right); g. Ektopodon ulta (from Megirian et al. 2004:719, fig. 15A); h. Ektopodon paucicristatus (from Rich et al. 2006:137, fig. 3D). Scale bar approximately 1 cm, for a-d; others about same scale. Abbreviations: ca, canine alveolus; fo, infraorbital foramen; mjs, maxillojugal suture; pastl, parastyloph.

opencc-by-4.0Dec 2016View details →
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Figure 2 in Organic geochemistry of a high-latitude Lower Cretaceous lacustrine sediment sample from the Koonwarra Fossil Beds, South Gippsland, Victoria, Australia

Figure 2: An uncommon example of disarticulation of a fish carcass, collected during an excavation of the Koonwarra Fossil Beds led by Tom Rich in 2013. This specimen was collected approximately 5 m from the bottom of the unit (defined here as the first> 20 cm thick unit of green siltstone/mudstone; the underlying rocks are predominantly cross-bedded, fluviatile arkosic sandstone).

opencc-by-4.0Dec 2016View details →
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Figure 5. Ektopodon stirtoni Pledge, 1986 in New specimens of ektopodontids (Marsupialia: Ektopodontidae) from South Australia

Figure 5. Ektopodon stirtoni Pledge, 1986, holotype dentary and new material. a-c. new maxilla (SAM P35309): a. lateral; b. dorsal; c. palatal; d. RM2 (P23854); e. LM3 (P30175); f. LM3 (SAM P30156); g. right dentary (SAM P29577), lateral aspect; h. right dentary with M (SAM 2-4 P29577) stereo pair; i, j. holotype right dentary with P, M (SAM P19509);k. LM (P31638); l. RM4 (SAM P33451). Ngama Quarry, Mammalon 3 1-3 3 Hill, Lake Palankarinna; Ngama Local Fauna.

opencc-by-4.0Dec 2016View details →
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Figure 3 in Organic geochemistry of a high-latitude Lower Cretaceous lacustrine sediment sample from the Koonwarra Fossil Beds, South Gippsland, Victoria, Australia

Figure 3: Saturate fraction total ion chromatogram and m/z 85 mass chromatogram showing distribution and relative abundances of n-alkanes and isoprenoids pristane and phytane.

opencc-by-4.0Dec 2016View details →
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Figure 1 in Organic geochemistry of a high-latitude Lower Cretaceous lacustrine sediment sample from the Koonwarra Fossil Beds, South Gippsland, Victoria, Australia

Figure 1: Location of the Lower Cretaceous Koonwarra Fossil Beds in South Gippsland, Victoria, Australia

opencc-by-4.0Dec 2016View details →
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Figure 4 in New specimens of ektopodontids (Marsupialia: Ektopodontidae) from South Australia

Figure 4. Dentition of Ektopodon tommosi nom. nov. a. composite upper dentition, anterior at left: LM1 fragment (NMV P48750), partial RM1 (SAM P19962), LM2 (NMV P48752), RM2 (SAM P19963), LM3 (NMV P48753), LM4 (NMV P48757); b. LM3 (NMV P48753); c. RM2 (SAM P19963); d. RI 1 (NMV P48758); e. RM 1 (SAM P19950. Tom O's Quarry, Lake Tarkarooloo; Tarkarooloo Local Fauna. Abbreviations: mel, metaconule; pastd, parastylid; pastl, parastyloph; pr, protocone.

opencc-by-4.0Dec 2016View details →
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Figure 1 in Compoceration garyi, a new genus and species of Paramunnidae (Crustacea, Isopoda, Asellota), from south-eastern Australia.

Figure 1. Compoceration garyi gen. et sp. nov. Holotype, ovigerous female. a, antenna; au, antennula; c, enl, dorsal view of head enlarged; cv, ventral view of head; p1 and 2, pereopods I and II; up, uropod. Scale bar for habitus: 0.5 mm.

opencc-by-4.0Dec 2009View details →
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Figure 2 in Compoceration garyi, a new genus and species of Paramunnidae (Crustacea, Isopoda, Asellota), from south-eastern Australia.

Figure 2. Compoceration garyi gen. et sp. nov. Holotype, ovigerous female. mdr, right mandible, with enlargement; mdl, left mandible; mxp, maxilliped; op, female operculum (pleopod II); pl3 and 4, pleopods III and IV; pt vv, pleotelson, ventral view.

opencc-by-4.0Dec 2009View details →
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Figure 3 in Description of a new species of dwarf Philypnodon (Teleostei: Gobioidei: Eleotridae) from south-eastern Australia

Figure 3. Dorsal view of head showing sensory papillae, largely based on holotype, drawing by S. Reader.

opencc-by-4.0Dec 2006View details →
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Figure 2 in Description of a new species of dwarf Philypnodon (Teleostei: Gobioidei: Eleotridae) from south-eastern Australia

Figure 2. Lateral view of head showing sensory papillae, largely based on holotype, drawing by S. Reader.

opencc-by-4.0Dec 2006View details →
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Figure 1a in Description of two new species of shore-eels (Gobiesocidae: Cheilobranchinae: Alabes) from south-eastern Australia and Norfolk Island

Figure 1a. Alabes bathys, holotype, NMV A 14558, 39 mm SL, off Cape Sorell, Tas. (photograph courtesy of Rudie Kuiter, NMV).

opencc-by-4.0Dec 2006View details →
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Figure 1b in Description of two new species of shore-eels (Gobiesocidae: Cheilobranchinae: Alabes) from south-eastern Australia and Norfolk Island

Figure 1b. Alabes bathys, paratype, CSIRO H.6156-01, 38 mm SL, west of King I., Tas. (photograph courtesy of Alastair Graham, CSIRO)

opencc-by-4.0Dec 2006View details →
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Figure 2 in Description of two new species of shore-eels (Gobiesocidae: Cheilobranchinae: Alabes) from south-eastern Australia and Norfolk Island

Figure 2. Alabes springeri, hototype, AMS I.18497-001, 31 mm SL, Norfolk I., Emily Bay, Point Hunter (illustration courtesy of Victor Springer, USNM).

opencc-by-4.0Dec 2006View details →

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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.

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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.

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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.

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