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→ Fig. 9. Antiarchan fish Bothriolepis leptocheira jeremejevi (Rohon, 1900), Sosnogorsk locality, Sosnogorsk Formation, lowermost Famennian, anterior median dorsal (A–G) and posterior median dorsal (H–M) plates of the trunk armour. A. IG KSC 155/5 in dorsal (A1) and visceral (A2) views. B. IG KSC 155/108 in dorsal (B1) and visceral (B2) views. C. IG KSC 155/97 in dorsal view. D. IG KSC 155/113 in dorsal (D1) and visceral (D2) views. E. IG KSC 155/140 in dorsal (E1) and visceral (E2) views. F. Impression of the dorsal surface of IG KSC 155/42. G. IG KSC 155/44 in dorsal view. H. Fragment of IG KSC 155/7 in dorsal view. I. IG KSC 155/1 in dorsal (I1) and visceral (I2) views. J. IG KSC 155/71 in dorsal view. K. Slightly deformed IG KSC 155/70 in dorsal (K1) and visceral (K2) views. L. IG KSC 155/158 in dorsal view. M. IG KSC 155/157 in dorsal (M1) and visceral (M2) views. Abbreviations: ADL, anterior dorso-lateral plate; alr, postlevator thickening; AMD, anterior median dorsal plate; cf.ADL, cf.AMD, and cf.MxL, area overlapping ADL, AMD or MxL respectively; cr.tp, posterior transversal internal crest; dlg1 and dlg2, anterior and posterior oblique dorsal sensory line groove; dma, tergal angle; dmr, dorsal median ridge; f.retr, levator fossa; grm, ventral median groove; l, lateral corner; mvr, median ventral ridge; MxL, mixilateral plate; npn, postnuchal notch; oa.ADL, oa.MxL and oa.PMD, area overlapped by ADL, MxL or PMD respectively; pa, posterior corner; pma, posterior marginal area; PMD, posterior median dorsal plate; pr.p, posterior process of AMD; pr.pl, external postlevator process; prv2, posterior ventral process of dorsal wall of trunk armour; pt1 and pt2, anterior and posterior ventral pit; pua, posterior unornamented area of PMD; rf, "round fossula"; sna, supranuchal area; tb, ventral tuberosity. in A new assessment of the Late Devonian antiarchan fish Bothriolepis leptocheira from South Timan (Russia) and the biotic crisis near the Frasnian-Famennian boundary
→ Fig. 9. Antiarchan fish Bothriolepis leptocheira jeremejevi (Rohon, 1900), Sosnogorsk locality, Sosnogorsk Formation, lowermost Famennian, anterior median dorsal (A–G) and posterior median dorsal (H–M) plates of the trunk armour. A. IG KSC 155/5 in dorsal (A1) and visceral (A2) views. B. IG KSC 155/108 in dorsal (B1) and visceral (B2) views. C. IG KSC 155/97 in dorsal view. D. IG KSC 155/113 in dorsal (D1) and visceral (D2) views. E. IG KSC 155/140 in dorsal (E1) and visceral (E2) views. F. Impression of the dorsal surface of IG KSC 155/42. G. IG KSC 155/44 in dorsal view. H. Fragment of IG KSC 155/7 in dorsal view. I. IG KSC 155/1 in dorsal (I1) and visceral (I2) views. J. IG KSC 155/71 in dorsal view. K. Slightly deformed IG KSC 155/70 in dorsal (K1) and visceral (K2) views. L. IG KSC 155/158 in dorsal view. M. IG KSC 155/157 in dorsal (M1) and visceral (M2) views. Abbreviations: ADL, anterior dorso-lateral plate; alr, postlevator thickening; AMD, anterior median dorsal plate; cf.ADL, cf.AMD, and cf.MxL, area overlapping ADL, AMD or MxL respectively; cr.tp, posterior transversal internal crest; dlg1 and dlg2, anterior and posterior oblique dorsal sensory line groove; dma, tergal angle; dmr, dorsal median ridge; f.retr, levator fossa; grm, ventral median groove; l, lateral corner; mvr, median ventral ridge; MxL, mixilateral plate; npn, postnuchal notch; oa.ADL, oa.MxL and oa.PMD, area overlapped by ADL, MxL or PMD respectively; pa, posterior corner; pma, posterior marginal area; PMD, posterior median dorsal plate; pr.p, posterior process of AMD; pr.pl, external postlevator process; prv2, posterior ventral process of dorsal wall of trunk armour; pt1 and pt2, anterior and posterior ventral pit; pua, posterior unornamented area of PMD; rf, "round fossula"; sna, supranuchal area; tb, ventral tuberosity.
FIGURE 2. Tar Pits Reef study site, 20 May 2011 in Benthic Heterobranch Sea Slugs (Gastropoda: Heterobranchia) from Santa Barbara County, California.
FIGURE 2. Tar Pits Reef study site, 20 May 2011, on a -0.3 m tide. (A) Overview of reef, looking south from Carpinteria beach. (B) Looking northwest from near the seaward end of the reef. The pool at left center measures 26 m long x 1 m wide. Carpinteria State Beach and Santa Ynez Mountains visible at upper right.
FIGURE 19 in Designing scientifically-grounded paleoart for augmented reality at La Brea Tar Pits
FIGURE 19. Photogrammetry model of a life sized sculpture of the extinct American mastodon (Mammut americanum) located at La Brea Tar Pits. To view this model in 3D, please see the online version of this article.
FIGURE 18 in Designing scientifically-grounded paleoart for augmented reality at La Brea Tar Pits
FIGURE 18. Low poly reconstruction of the extinct American mastodon (Mammut americanum). To view this model in 3D, please see the online version of this article.
FIGURE 14 in Designing scientifically-grounded paleoart for augmented reality at La Brea Tar Pits
FIGURE 14. Low poly reconstruction of the extinct western horse (Equus occidentalis). To view this model in 3D, please see the online version of this article.
FIGURE 9 in Designing scientifically-grounded paleoart for augmented reality at La Brea Tar Pits
FIGURE 9. Low poly reconstruction of the extinct dire wolf (Aenocyon dirus). To view this model in 3D, please see the online version of this article.
FIGURE 11 in Designing scientifically-grounded paleoart for augmented reality at La Brea Tar Pits
FIGURE 11. Low poly reconstruction of a male extinct American lion (Panthera atrox). To view this model in 3D, please see the online version of this article.
FIGURE 12 in Designing scientifically-grounded paleoart for augmented reality at La Brea Tar Pits
FIGURE 12. Low poly reconstruction of the extinct saber-toothed cat (Smilodon fatalis). To view this model in 3D, please see the online version of this article.
FIGURE 8 in Designing scientifically-grounded paleoart for augmented reality at La Brea Tar Pits
FIGURE 8. Low poly reconstruction of the extinct western camel (Camelops hesternus). To view this model in 3D, please see the online version of this article.
FIGURE 4 in Designing scientifically-grounded paleoart for augmented reality at La Brea Tar Pits
FIGURE 4. Stages in the development of a low poly dire wolf model. A. Mesh showing the overall 3D shape of the model. B. Rigging showing the model's skeleton. Colors represent the "weights" of different bones and joints on the overall model's deformation while moving. C. The 2D texture file. D. The finished, rigged model with texture correctly wrapped around the mesh.
FIGURE 17 in Designing scientifically-grounded paleoart for augmented reality at La Brea Tar Pits
FIGURE 17. Low poly reconstruction of the extinct Columbian mammoth (Mammuthus columbi). To view this model in 3D, please see the online version of this article.
FIGURE 7 in Designing scientifically-grounded paleoart for augmented reality at La Brea Tar Pits
FIGURE 7. Low poly reconstruction of the extinct ancient bison (Bison antiquus). To view this model in 3D, please see the online version of this article.
FIGURE 3. A. Low immersion conditions used a handheld smartphone. B. High immersion conditions used a in Designing scientifically-grounded paleoart for augmented reality at La Brea Tar Pits
FIGURE 3. A. Low immersion conditions used a handheld smartphone. B. High immersion conditions used a smartphone inserted into an inexpensive headset. C. To provide binocular vision in the headset, the smartphone screen is split into two smaller images, greatly reducing available screen space and resolution.
FIGURE 6 in Designing scientifically-grounded paleoart for augmented reality at La Brea Tar Pits
FIGURE 6. Low poly reconstruction of the extinct dwarf pronghorn (Capromeryx minor). To view this model in 3D, please see the online version of this article.
FIGURE 2. A in Designing scientifically-grounded paleoart for augmented reality at La Brea Tar Pits
FIGURE 2. A. Mural of La Brea Tar Pits painted by Charles Knight in 1925. B. Mural of La Brea Tar Pits painted by Mark Hallett in 1988 ©Mark Hallett. The Hallett image is not published under the terms of the CC-BY license of this article. For permission to reuse, please contact Mark Hallett.
FIGURE 5 in Designing scientifically-grounded paleoart for augmented reality at La Brea Tar Pits
FIGURE 5. Low poly reconstruction of the extinct teratorn (Teratornis merriami). To view this model in 3D, please see the online version of this article.
FIGURE 13 in Designing scientifically-grounded paleoart for augmented reality at La Brea Tar Pits
FIGURE 13. Low poly reconstruction of the extinct short-faced bear (Arctodus simus). To view this model in 3D, please see the online version of this article.
FIGURE 20. Snapcodes for A in Designing scientifically-grounded paleoart for augmented reality at La Brea Tar Pits
FIGURE 20. Snapcodes for A. saber-toothed cat, B. dire wolf, and C. Shasta ground sloth. Using the popular Snapchat app, these codes activate interactive AR experiences.
FIGURE 16 in Designing scientifically-grounded paleoart for augmented reality at La Brea Tar Pits
FIGURE 16. Low poly reconstruction of the extinct Harlan's ground sloth (Paramylodon harlani). To view this model in 3D, please see the online version of this article.
FIGURE 10 in Designing scientifically-grounded paleoart for augmented reality at La Brea Tar Pits
FIGURE 10. Low poly reconstruction of a generic extinct American lion (Panthera atrox). To view this model in 3D, please see the online version of this article.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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)
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.
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.