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Fig. 3 in Fish remains, mostly otoliths, from the non-marine early Miocene of Otago, New Zealand
Fig. 3. Stratigraphic section at the Vinegar Hill location showing the position of Sites 1 and 2 relative to the basal part of the Bannockburn Formation (52.3–70 m; Lauder Member) after Douglas (1986) in the context of other fossil records (H41/f20 and H41/f21, H41/f56) and a vertebrate bearing Site 3 (H41/f111). FRN is Fossil Record Number in the archival Fossil Record File of the Geological Society of New Zealand.
Fig. 15 in Fish remains, mostly otoliths, from the non-marine early Miocene of Otago, New Zealand
Fig. 15. Otoliths of marine fishes from the early Miocene Bannockburn Formation and from selected recent fishes for comparison. A. Eeyorius hutchinsi Paulin, 1986, Recent, off Tasmania, 41°00'S–147°23'E, WAM 27564−003, paratype, inner face (A), dorsal view (A). B, C. Lotella rhacina (Bloch and 1 2 Schneider, 1801). B. Recent, of Western Australia, collection W. Schwarzhans, donated by WAM, inner face (B1), dorsal view (B2). C. NMNZ S.52748, Manuherikia River, HH1a, inner face (C1), dorsal view (C2), posterior view (C3), outer face (C4). D. Lactarius sigmoidalis (Frost, 1933), NMNZ S.52749, Manuherikia River, HH1a, inner face (D1), ventral view (D2). E. Bleekeria viridianguilla (Fowler, 1931), Recent, Jakarta, SMF 15768, inner face (E1), ventral view (E2). F, G. Genus aff. Bleekeria sagittiformis (Schwarzhans, 1980), Manuherikia River. F. NMNZ S.52750, HH1b, anterior view (F1), inner face (F2), ventral view (F3). G. NMNZ S.52751, HH1a, inner face.
Fig. 12 in Fish remains, mostly otoliths, from the non-marine early Miocene of Otago, New Zealand
Fig. 12. Otoliths of recent eleotrid fishes from the Indo West−Pacific for comparison. A. Allomogurnda nesolepis (Weber, 1907), Recent, 04°11'S– 144°46'E, WAM 29605−008, inner face. B. Belobranchus belobranchus (Valenciennes, 1837), Recent, 10°16'S–150°43'E, WAM 31634−005, inner face (B1), ventral view (B2). C. Bunaka gyrinoides (Bleeker, 1853), Recent, Ponape, collection W. Schwarzhans, donated by ZMH, inner face. D. Giurus margaritaceus (Valenciennes, 1837), Recent, 03°16'S–138°41'E, WAM 31753−002, inner face (D), ventral view (D). E. Giurus hoedti (Bleeker, 1854), 1 2 Recent, 01°51'S–136°33'E, WAM 31041−003, inner face. F. Mogurnda aurofodinae Whitley, 1938, Recent, 03°34'S–142°57'E, WAM 29838−001, inner face (F), ventral view (F). G. Mogurnda mogurnda (Richardson, 1844), Recent, northern Australia, collection W. Schwarzhans, donated by WAM, inner +
FIGURE 23 in A new Oligo-Miocene dolphin from New Zealand: Otekaikea huata expands diversity of the early Platanistoide
FIGURE 23. The original distribution of type elements, OU 22306, Otekaikea huata. Top, line art based on tracing of bone outlines as uncovered during preparation. Bottom, partly prepared field jacket with bones partly exposed. Andrew Grebneff is holding loose teeth. Photo © R. Ewan Fordyce.
FIGURE 22 in A new Oligo-Miocene dolphin from New Zealand: Otekaikea huata expands diversity of the early Platanistoide
FIGURE 22. Close-up photo of the intra-premaxillary foramen of 1, Otekaikea huata and the posterior accessory foramen of 2, Monodon monoceros and 3, Delphinapterus leucas. Figures are not to scale. Fr, frontal. Ma, maxilla. Na, nasal. Pmax, premaxilla.
FIGURE 20 in A new Oligo-Miocene dolphin from New Zealand: Otekaikea huata expands diversity of the early Platanistoide
FIGURE 20. The type forelimb bones, OU 22306, Otekaikea huata. 1, right scapula in medial view. 2, right scapula in distal view. 3, left scapula in lateral view. 4, left scapula in distal view. 5-8, right humerus. 5, posterior view. 6, medial view. 7, anterior view. 8, proximal view. 9, carpus. 10, ulna in posterior view.
FIGURE 21 in A new Oligo-Miocene dolphin from New Zealand: Otekaikea huata expands diversity of the early Platanistoide
FIGURE 21. Phylogenetic analysis of Otekaikea huata and the Odontoceti. Top, strict consensus tree of equally weighted analysis 1 with decay index values shown. This figure shows simplified cladograms, with species in the more-diverse families crown-ward of Papahu merged for ease of illustrating. Complete trees are provided in Appendices 7 and 8. Bottom, strict consensus tree of implied weighted analysis 2 with decay index labeled. Synapomorphies for some nodes are: Platanistoidea (sensu lato), Characters 59, 169, 186, 195, 196, 212; Platanistoidea (sensu stricto), Characters 166, 167, 175, 288, 291.
FIGURE 19 in A new Oligo-Miocene dolphin from New Zealand: Otekaikea huata expands diversity of the early Platanistoide
FIGURE 19. The type right forelimb bones in lateral view, OU 22306, Otekaikea huata. 1, right scapula. 2, humerus. 3, ulna. 4, radius.
FIGURE 16 in A new Oligo-Miocene dolphin from New Zealand: Otekaikea huata expands diversity of the early Platanistoide
FIGURE 16. The type thoracic and lumbar vertebrae, OU 22306, Otekaikea huata. 1-3, anterior view of three thoracic vertebrae. 4 and 5, a posterior thoracic vertebra, anterior and left lateral views. 6, lumbar vertebrae from anterior view.
FIGURE 14 in A new Oligo-Miocene dolphin from New Zealand: Otekaikea huata expands diversity of the early Platanistoide
FIGURE 14. The type mandible, OU 22306, Otekaikea huata. 1, anterior view. 2, left lateral view. 3, dorsal view. 4, mandibular symphysis in dorsal view. 5, posterior view. 6, ventral view. 7, anterior end in ventral view. 8, right lateral view.
FIGURE 13 in A new Oligo-Miocene dolphin from New Zealand: Otekaikea huata expands diversity of the early Platanistoide
FIGURE 13. Key features of the type tympanoperiotics. OU 22306, Otekaikea huata. 1-6, right periotic. 7 and 8, sigmoid process of left bulla. 1, medial view. 2, lateral view. 3, ventral view. 4, dorsal view. 5, posterior view. 6, anterior view. 7, ventral view. 8, posterior view.
FIGURE 12 in A new Oligo-Miocene dolphin from New Zealand: Otekaikea huata expands diversity of the early Platanistoide
FIGURE 12. The type tympanoperiotics. OU 22306, Otekaikea huata. 1-6, right periotic. 7 and 8, sigmoid process of left bulla. 1, medial view. 2, lateral view. 3, ventral view. 4, dorsal view. 5, posterior view. 6, anterior view. 7, ventral view. 8, posterior view.
FIGURE 11 in A new Oligo-Miocene dolphin from New Zealand: Otekaikea huata expands diversity of the early Platanistoide
FIGURE 11. Periotic in original position in the right squamosal, ventral view, OU 22306, Otekaikea huata.
FIGURE 10 in A new Oligo-Miocene dolphin from New Zealand: Otekaikea huata expands diversity of the early Platanistoide
FIGURE 10. The type teeth, OU 22306, Otekaikea huata. Scales vary as indicated, depending on specimen size. 1 and 2, largest incisor. 1, worn surface view. 2, lateral view. 3 and 4, two long tusks, showing worn surface. 5 and 6, two medium teeth. 7-9, single rooted smaller medium teeth. 10-12, buccolingually flattened teeth. 13 and 14, tooth with small denticles. 13, buccal view. 14, lingual view.
FIGURE 2 in A new Oligo-Miocene dolphin from New Zealand: Otekaikea huata expands diversity of the early Platanistoide
FIGURE 2. Dorsal views of the type skull, OU 22306, Otekaikea huata (1 and 2). 3, dorsolateral view, figure is not to scale.
FIGURE 1 in A new Oligo-Miocene dolphin from New Zealand: Otekaikea huata expands diversity of the early Platanistoide
FIGURE 1. Locality map and stratigraphic sections of the Otekaikea huata type locality. Arrow shows type locality. Foraminiferal zonation and geochronology are based on Graham et al. (2000).
FIGURE 7 in A new Oligo-Miocene dolphin from New Zealand: Otekaikea huata expands diversity of the early Platanistoide
FIGURE 7. Disarticulated rostral elements, OU 22306, Otekaikea huata. 1, dorsal view. 2, left premaxilla lateral view. 3, right premaxilla lateral view. 4, ventral view. 5 and 6, detailed photos of the premaxilla.
FIGURE 9 in A new Oligo-Miocene dolphin from New Zealand: Otekaikea huata expands diversity of the early Platanistoide
FIGURE 9. Details of right basicranium part, OU 22306, Otekaikea huata. 1 and 2, ventral view. 3 and 4, ventrolateral view. Ali, alisphenoid. Bo, basioccipital. Bs, basisphenoid. Pa, parietal. Vo, vomer.
Supplementary files to 'Along-strike extent of earthquakes on multi-segment reverse faults; insights from the Nevis-Cardrona Fault, Aotearoa New Zealand'
<p>Supplementary files to the article: Williams, J., Stirling, M., Langridge, R., Niroula, G., Vause, A., Stewart, J., Nicol, A., & Wang, N. (2024). Along-strike extent of earthquakes on multi-segment reverse faults; insights from the Nevis-Cardrona Fault, Aotearoa New Zealand. <em>Seismica</em>, <em>3</em>(2). https://doi.org/10.26443/seismica.v3i2.1310.</p> <p>Contents are:</p> <ul> <li>NCF_SuppInfo.pdf: Supplements S1-S4, where S1 are logs and photos from trenches excavated across the Nevis Fault in the 1980's, S2 are lidar-derived topographic profiles across scarps on the NW Cardrona segment, S3 is the laboratory report on the Stoney Creek and German Creek OSL samples, and S4 is the Upper Nevis Trench OxCal Model. Supplement S2 incorporates lidar provided by Toitū Te Whenua Land Information New Zealand (LINZ), and licensed under the Creative Commons Attribution 4.0 International licence (https://data.linz.govt.nz/layer/99123-otago-lidar-1m-dem-2016/).</li> <li>Unannotated orthomosiacs of the German Creek and Stoney Creek trench walls (as shown in Figures 5 and 6 in the manuscript)</li> <li>Digital surface models for the following Nevis segment localities: Stoney Creek, German Creek, Drummond Creek, and Coal Creek. The digital surface models (DSM) were derived from photos taken usig a DJI Phantom 3 Professional drone. The photos were then processed into a DSM using Agisoft structure for motion software. Ground control points were not used. Further details of the DSM generation are given in the manuscript.</li> </ul> <p>Any questions, please contact: jack.williams@otago.ac.nz</p>
Fig. 38 in Small crickets of New Zealand (Orthoptera: Grylloidea: Trigonidiidae and Mogoplistidae), with the description of two new genera and species
Fig. 38. Map of New Zealand, showing the known distribution of taxa included in this study. Thin black lines indicate the boundaries of Crosby's entomological regions (Crosby et al. 1998; Fig. 2). Coloured circles indicate the collection localities for the material examined.
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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.