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Fig. 11 in Shelly fossils from the lower Cambrian White Point Conglomerate, Kangaroo Island, South Australia

Fig. 11. The lingulid brachiopod Cordatia erinae Brock and Claybourn gen. et sp. nov. from the lower Cambrian of South Australia, Ajax Limestone, Flinders Ranges (AJX-M/415) (A–E) and White Point Conglomerate, Kangaroo Island (F–S). Ventral (A, D, G) and dorsal (B, C, E, F, H–S) valves. A. SAM P53644, holotype in internal (A1) and oblique (A2) views; A3, detail of the delthyrium, propareas, and muscle field. B. SAM P57290 in internal view. C. SAM P57291 in external view (C1); C1, detail of the metamorphic shell. D. SAM P57292 in external view. E. SAM P57293, detail of external ornament. F. SAM P57294 in oblique internal view. G. SAM P57295 in internal view. H. SAM P57296 in external oblique view. I. SAM P57297 in external view. J. SAM P57298 in internal view. K. SAM P57299 in internal view. L. SAM P57300 in internal view. M. SAM P57301 in internal view. N. SAM P57302 in internal view. O. SAM P57303 in external view. P. SAM P57304 in external view. Q. SAM P57305 in external view. R. SAM P57306 in external view. S. SAM P57307 in external view.

opencc-by-4.0Aug 2019View details →
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Fig. 1 in Shelly fossils from the lower Cambrian White Point Conglomerate, Kangaroo Island, South Australia

Fig. 1. Map showing study area on northern Kangaroo Island, Australia. Dashed line indicates Stansbury Basin extent.

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Fig. 4 in Shelly fossils from the lower Cambrian White Point Conglomerate, Kangaroo Island, South Australia

Fig. 4. The solenopleurid trilobite Trachoparia? sp. from the lower Cambrian White Point Conglomerate, Kangaroo Island, South Australia. Partial testate cranidia in dorsal views. A. SAM P57222 showing short (sag., exsag.) anterior border. B. SAM P57223 showing faint eye ridge and palpebral lobe. C. SAM P57224 showing wide axial and posterior border furrows. D. SAM P57225 showing deep occipital furrow and subquadrate occipital ring. E. SAM P57226 showing strongly tapered glabella and subquadrate occipital ring.

opencc-by-4.0Aug 2019View details →
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Fig. 7 in Shelly fossils from the lower Cambrian White Point Conglomerate, Kangaroo Island, South Australia

Fig. 7. The lingulid brachiopods Eoobolus sp. (A–C) and Kyrshabaktella davidi Holmer and Ushatinskaya in Gravestock et al., 2001 (D–T) from the lower Cambrian White Point Conglomerate, Kangaroo Island, South Australia. Ventral (A–H, N, Q–T) and dorsal (I–M, O, P) valves. A. SAM P57242 in internal view. B. SAM P57243 in internal view. C. SAM P57244, in external view (C1); C2, detail of post larval shell. D. SAM P57245 in internal view. E. SAM P57246 in oblique view. F. SAM P57247 in internal view. G. SAM P57248 in internal view. H. SAM P57249 in internal view (H1); H2, detail of the interarea. I. SAM P57250 in internal view. J. SAM P57251 in internal view. K. SAM P57252 in internal view. L. SAM P57253 in internal view. M. SAM P57254 in internal view. N. SAM P57255 in external view. O. SAM P57256 in external view (O1); O2, detail of external radial and concentric ornament. P. SAM P57257 in external view. Q. SAM P57258 in external view. R. SAM P57259 in external view. S. SAM P57260 in internal view. T. SAM P57261 in internal view.

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Fig. 19 in Shelly fossils from the lower Cambrian White Point Conglomerate, Kangaroo Island, South Australia

Fig. 19. The hyolithelminth tubes from the lower Cambrian White Point Conglomerate, Kangaroo Island, South Australia. Sphenothallus-like tubes (A, SAM P57368; B, SAM P57369). Tubes with circular cross-section (C, SAM P57370; D, SAM P57371; E, SAM P57372; F, SAM P57373). Expanding tubes G, SAM P57374; H, SAM P57375; I, SAM P57376).

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Fig. 16. C1 in Shelly fossils from the lower Cambrian White Point Conglomerate, Kangaroo Island, South Australia

Fig. 16. C1 sclerites of the camenellan tommotiid Dailyatia decobruta Betts sp. nov. from the lower Cambrian White Point Conglomerate, Kangaroo Island, South Australia. A. SAM P57340 in ventral view. B. SAM P57341 in ventral view. C. SAM P57342 in ventral view shows shortened ventral field (C1) and in oblique view (C2). D. SAM P57343 in dorsal view (D1); D2, apical view oriented to show overall convexity of sclerite. E. SAM P57344 in apical view. F. SAM P57345 in apical view. G. SAM P57346 in oblique view showing shortened ventral field (G1) and in ventral view (G2). H. SAM P57347 in dorsal view; H1–H3, show convex dorsal field with very weak plication. I. SAM P57348 in oblique dorsal view (I1); I2 shows convexity. J. SAM P57349 in oblique dorsal view; J1 shows curvature of sclerite in side view; J2 shows dorsal surface. K. SAM P57350 in dorsal view. L. SAM P57351 in oblique ventral view.

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Fig. 18. C2a in Shelly fossils from the lower Cambrian White Point Conglomerate, Kangaroo Island, South Australia

Fig. 18. C2a sclerites of the camenellan tommotiid Dailyatia decobruta Betts sp. nov. from the lower Cambrian White Point Conglomerate, Kangaroo Island, South Australia. A. SAM P57360 in ventral view; A1–A3, multiple views showing strong convexity and compression of sclerite. B. SAM P57361 in lateral view. C. SAM P573762 in oblique ventral view (C1); C2, slightly rotated view showing extreme compression of sclerite. D. SAM P57363 in dorsal view; D1, D2, different views showing strong curvature of sclerite and weak plication on dorsal surface. E. SAM P57364 in dorsal view, E1, E2, multiple views showing strong curvature (including weak torsion). F. SAM P57365 in ventral view. G. SAM P57359, holotype in dorsal view. H. SAM P57366 in ventral view. I. SAM P57367 in oblique ventral view.

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Fig. 17. C2 in Shelly fossils from the lower Cambrian White Point Conglomerate, Kangaroo Island, South Australia

Fig. 17. C2 sclerites of the camenellan tommotiid Dailyatia decobruta Betts sp. nov. from the lower Cambrian White Point Conglomerate, Kangaroo Island, South Australia. A. SAM P57352 in lateral view; A1, A2 show slightly different angles to capture three dimensionality of sclerite. B. SAM P57353 in lateral view. C. SAM P57354 in dorsal view; C1, C2 show slightly different angles to capture three dimensionality of sclerite. D. SAM P57355 in ventral view. E. SAM P57356 in ventral view. F. SAM P57357 in ventral view. G. SAM P57358, G1–G3, close ups of external ornament. H. SAM P57348, close up of external ornament. I. SAM P57359, holotype; I1, I2, close ups of external ornament.

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Fig. 10 in Shelly fossils from the lower Cambrian White Point Conglomerate, Kangaroo Island, South Australia

Fig. 10. The lingulid brachiopod Eohadrotreta sp. cf. E. zhenbaensis Li and Holmer, 2004 from the lower Cambrian White Point Conglomerate, Kangaroo Island, South Australia. Dorsal (A, B, H–J, M, N) and ventral (C–G, K, L) valves. A. SAM P57276 in external view (A1); A2, detail of the larval shell. B. SAM P57277 in external view. C. SAM P57278 in internal view. D. SAM P57279 in internal view. E. SAM P57280 in external view. F. SAM P57281 in external view, tilted to show intertrough (F1); F2, detail of the foramen. G. SAM P57282 in external view, tilted to show intertrough (G1); detail of the foramen (G2) showing the intertrough. H. SAM P57283 in internal view. I. SAM P57284 in internal view; I2, close up of interarea; I3, detail of shell microstructre. J. SAM P57285 in internal view. K. SAM P57286 in internal view. L. SAM P57287 in internal view. M. SAM P57288 in internal view. N. SAM P57289 in internal view.

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Fig. 9 in Shelly fossils from the lower Cambrian White Point Conglomerate, Kangaroo Island, South Australia

Fig. 9. The lingulid brachiopod Schizopholis yorkensis (Holmer and Ushatinskaya in Gravestock et al., 2001) from the lower Cambrian White Point Conglomerate, Kangaroo Island, South Australia. Dorsal (A–C, E) and ventral (D, F) valves. A. SAM P57270 in external view. B. SAM P57271 in external view. C. SAM P57272 in external view (C1); C2, detail of the larval shell; C3, external pustulose ornament. D. SAM P57273 in external view (D1); D2, detail of the larval shell. E. SAM P57274 in internal view. F. SAM P57275 in external view (F1); F2, detail of the larval shell.

opencc-by-4.0Aug 2019View details →
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Fig. 15. The A1 in Shelly fossils from the lower Cambrian White Point Conglomerate, Kangaroo Island, South Australia

Fig. 15. The A1 sclerites of the camenellan tommotiid Dailyatia decobruta Betts sp. nov. from the lower Cambrian White Point Conglomerate, Kangaroo Island, South Australia. A. SAM P57329 in apical view. B. SAM P57330 in apical view (B1); B2 shows the broad, convex deltoid. C. SAM P57331 in anterior view. D. SAM P57332 in apical view. E. SAM P57333 in apical view. F. SAM P57334 in apical view. G. SAM P57335 in apical view (G1); G2 shows the concentric, wrinkled ornament on the anterior field. H. SAM P57336 in apical view. I. SAM P57337 in apical view. J. SAM P57338 in oblique lateral view. K. SAM P57339 in oblique lateral view.

opencc-by-4.0Aug 2019View details →
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Fig. 14 in Shelly fossils from the lower Cambrian White Point Conglomerate, Kangaroo Island, South Australia

Fig. 14. The camenellan tommotiid Dailyatia odyssei Evans and Rowell, 1990 from the lower Cambrian White Point Conglomerate, Kangaroo Island, South Australia. A. SAM P57326, A2 sclerite in apical view (A1); A2, detail of the double perforations in the apex. B. SAM P57327, A2 sclerite in apical view, tilted to show deltoid. C. SAM P57328, C2 sclerite in dorsal view.

opencc-by-4.0Aug 2019View details →
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Fig. 6 in Shelly fossils from the lower Cambrian White Point Conglomerate, Kangaroo Island, South Australia

Fig. 6. The lingulid brachiopod Eodicellomus elkaniiformis Holmer and Ushatinskaya in Gravestock et al., 2001 from the lower Cambrian White Point Conglomerate, Kangaroo Island, South Australia. Dorsal (A–D) and ventral (E–G) valves. A. SAM P57235 in interior view. B. SAM P57236 in interior view. C. SAM P57237 in interior view. D. SAM P57238 in interior view. E. SAM P57240 in interior (E1) and oblique (E2) views. F. SAM P57241 in oblique view. G. SAM P57239 in oblique view.

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Fig. 3 in Shelly fossils from the lower Cambrian White Point Conglomerate, Kangaroo Island, South Australia

Fig. 3. The solenopleurid trilobite Trachoparia? sp. from the lower Cambrian White Point Conglomerate, Kangaroo Island, South Australia. Latex cast of partial cranidium (SAM P57221) showing pustulose ornament and strongly tapered glabella in dorsal (A1), anterior (A3), and oblique anterolateral (A4) views; testate cranidium in dorsal view (A2).

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Fig. 2 in Shelly fossils from the lower Cambrian White Point Conglomerate, Kangaroo Island, South Australia

Fig. 2. Correlation chart showing shelly fossil biozones against the stratigraphic succession in the Flinders Ranges, Fleurieu Peninsula, and Kangaroo Island (adapted from Betts et al. 2018: fig. 27). Note: The succession in the NE Kangaroo Island is based on the Investigator-1 drill core in which the Mt. McDonnell Formation is not apparent (Gehling et al. 2011). Lower boundary of White Point Conglomerate (WPC) is likely faulted. Abundant and diverse shelly fauna (SSF) from the bioclastic limestone clasts in the WPC have an upper Dailyatia odyssei Zone age. Dashed lines indicate uncertain stratigraphic relationship. Abbreviations: K., Kulparina; P., Parabadiella; S., Sunnaginia.

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Fig. 6 in The oldest brachiopods from the lower Cambrian of South Australia

Fig. 6. Backscatter SEM images of polished cross−sections of Cambrian paterinate brachiopods, Askepasma saproconcha sp. nov. (A) and Askepasma toddense Laurie, 1986 (B–E). A. SAMP47096, Wilkawillina Limestone, Narina Road, showing polygonal ornament exposed along a crack (top left corner of image) and the traces of polygonal structures through the shell. B. SAMP43361, Wilkawillina Limestone, sample MMF0.0, in limestone matrix (B1), transversal cross section showing thin fringes along the external shell surface; boxes show position of D and E; sketches of the lateral margins (B2). Details of B showing the polygonal structures of the fringes along the external shell surface (D1, E1); labelled sketches (D2, E2) showing different stages of closure of polygonal compartments; dotted line indicates a hypothetic lamina that sealed the compartments and acted as surface for apatite along the top of the compartments (ceiling deposits). C. SAMP 43332, Wilkawillina Limestone, sample MMF0.0, longitudinal cross−section of a specimen that was isolated by acid maceration and embedded in resin.

opencc-by-4.0Nov 2011View details →
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Fig. 1 in The oldest brachiopods from the lower Cambrian of South Australia

Fig. 1. Locality and geological maps showing position of sampled stratigraphic sections and spot localities. A. Mount Scott area with positions of sections AJX−M and AJX−N. B. Bunkers Range showing location of section MMF. C. Geographical position of localities in the Flinders Ranges. D. Location of spot sample taken near the Kanyaka ruins. E. Bunkers Graben, showing location of section 10MS and the Wilkawillina Type Section. F. General position of field area in South Australia. G. Chace, Druid, and Elder ranges, showing position of sections ER9 and CR1 and spot locality in the Druid Range.

opencc-by-4.0Nov 2011View details →
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Fig. 7. Tommotiid Camenella reticulosa Conway Morris, 1990 in The tommotiid Camenella reticulosa from the early Cambrian of South Australia: Morphology, scleritome reconstruction, and phylogeny

Fig. 7. Tommotiid Camenella reticulosa Conway Morris, 1990, from lower Cambrian Hawker Group, Flinders Ranges, Arrowie Basin, South Australia. A. Sellate sclerite (dextral), SAMP 43181, Bunyeroo 4; dorsal view showing narrow lateral lobes and wide sella with reduced, possibly abraded ornament. B. Mitral sclerite (dextral), SAMP 43182, MMF 0.0; B1, oblique view of deformed oblicate and accrescent sides showing wide through and disturbed radial ornament; B2, oblique view of plicate and decrescent sides showing normal placation, a pointed apex and deep internal cavity.

opencc-by-4.0Jun 2009View details →
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Fig. 9 in The tommotiid Camenella reticulosa from the early Cambrian of South Australia: Morphology, scleritome reconstruction, and phylogeny

Fig. 9. Tommotiid Dailyatia sp., probable C−type sclerite, SAMP 43187 from MMF 0.0, lower Cambrian Hawker Group, Flinders Ranges, Arrowie Basin, South Australia. A. Oblique apertural view showing asymmetric twist. B. Side view showing open coiling through almost a full whorl.

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Fig. 6. Tommotiid Camenella reticulosa Conway Morris, 1990 in The tommotiid Camenella reticulosa from the early Cambrian of South Australia: Morphology, scleritome reconstruction, and phylogeny

Fig. 6. Tommotiid Camenella reticulosa Conway Morris, 1990 from lower Cambrian Hawker Group, Flinders Ranges, Arrowie Basin, South Australia, sellate sclerites. A. SAMP 43177 (sinistral), MMF 0.0; internal view of sclerite with damaged apex. B. SAMP 43178 (Dextral),Wilkawillina Q; B1, internal view of large specimen with apex removed by co−marginal breakage showing well developed duplicature; B2, Detail of duplicature showing minor co−marginal with nodose ornament and fine co−marginal and radial striae. C. SAMP 43179 (sinistral), Wilkawillina S; C1, side view of specimen with preserved apex viewed from the large lobe; C2, detail of lateral flank of large lobe with co−marginal ribs ornamented by nodes and superimposed reticulation. D. SAMP 43180 (Dextral), MMF 0.0; internal view of specimen with small lobe damaged showing cavity under duplicature of the large lobe.

opencc-by-4.0Jun 2009View details →

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