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FIGURE 2 in Re-assessment of the Late Jurassic eusauropod dinosaur Hudiesaurus sinojapanorum Dong, 1997, from the Turpan Basin, China, and the evolution of hyper-robust antebrachia in sauropods
FIGURE 2. Posterior cervical vertebra of Hudiesaurus sinojapanorum (IVPP V11120; holotype). A, right lateral view; B, left lateral view; C, anterior view; D, posterior view. Abbreviations: acc.proc, accessory process; ACDL, anterior centrodiapophyseal lamina; CPOF, centropostzygapophyseal fossa; CPOL, centropostzygapophyseal lamina; CPRF, centroprezygapophyseal fossa; CPRL, centroprezygapophyseal lamina; dia, diapophysis; lig, ossified intervertebral ligament; mp, metapophysis; mt, median tubercle; PCDL, posterior centrodiapophyseal lamina; POCDF, postzygapophyseal centrodiapophyseal fossa; PODL, postzygodiapophyseal lamina; poz, postzygapophysis; pp, parapophysis; PRCDF, prezygocentrodiapophyseal fossa; PRDL, prezygodiapophyseal lamina; PRDL.k, kink in PRDL; prz, prezygapophysis; SDF, spinodiapophyseal fossa; SPOF, spinopostzygapophyseal fossa; SPOL, spinopostzygapophyseal lamina; SPRL, spinoprezygapophyseal lamina; TPOL, interpostzygapophyseal lamina; TPRL, interprezygapophyseal lamina. Scale bars equal 100 mm.
FIGURE 8 in Re-assessment of the Late Jurassic eusauropod dinosaur Hudiesaurus sinojapanorum Dong, 1997, from the Turpan Basin, China, and the evolution of hyper-robust antebrachia in sauropods
FIGURE 8. Right humerus of Rhomaleopakhus turpanensis gen. et sp. nov. (IVPP V11121-1; holotype). A, proximal end view (damaged); B, distal end view. Abbreviations: l.adp, lateral anterodistal process; m.adp, medial anterodistal process. Scale bars equal 100 mm.
FIGURE 9 in Re-assessment of the Late Jurassic eusauropod dinosaur Hudiesaurus sinojapanorum Dong, 1997, from the Turpan Basin, China, and the evolution of hyper-robust antebrachia in sauropods
FIGURE 9. Right ulna and radius of Rhomaleopakhus turpanensis, gen. et sp. nov. (IVPP V11121-1; holotype). A–F, right ulna in anterior (A), lateral (B), posterior (C), posteromedial (D), proximal (E), and distal (F) views. G–L, right radius in anterior (G), lateral (H), posterior (I), medial (J), proximal (K), and distal (L) views. Note that in E, F, K, and L that anterior is towards the top of the page. Abbreviations: alp, anterolateral process of proximal ulna; amf, anteromedial fossa on distal ulna; amp, anteromedial process of proximal ulna; amr, anteromedial ridge on distal ulna; bev, beveled condyles of distal radius; con, concavity between olecranon and anteromedial processes on proximal ulna; dc, distal condyles; exp.p, posterior expansion of distal ulna; ole, olecranon process; plr, posterolateral ridge of distal radius; pmr, posteromedial ridge of proximal radius; post.pr., posterior process of proximal ulna; rad.f, radial fossa. Scale bars equal 200 mm (A–D, G–J) or 100 mm (E, F, K, L).
Figure 17 in A new early branching armored dinosaur from the Lower Jurassic of southwestern China
Figure 17. Life restoration of YUXISAURUS KOPCHICKI. The osteoderm arrangement is hypothetical but that includes many of the types of armor found with the skeleton.
Figure 15 in A new early branching armored dinosaur from the Lower Jurassic of southwestern China
Figure 15. 'Pup tent'-shaped osteoderm of YUXISAURUS KOPCHICKI in (A) posterior, (B) anterior, (C) ventral, (D) dorsal, and (E, F) side views. Scale bar equals 10 cm.
Figure 14 in A new early branching armored dinosaur from the Lower Jurassic of southwestern China
Figure 14. Six selected individual osteoderms of YUXISAURUS KOPCHICKI. Osteoderm 1 in (A) dorsal, (B) ventral, (C) posterior, and (D) anterior views; osteoderm 2 in (E) dorsal, (F) ventral, and (G) lateral views; osteoderm 3 in (H) dorsal, (I) ventral, and (J) lateral views; osteoderm 4 in (K) dorsal, (L) ventral, and (N) lateral views; osteoderm 5 in (N) dorsal, (O) anterior, and (P) lateral views; osteoderm 6 in (Q) dorsal, (R) ventral, and (S) lateral views. Scale bar equals 5 cm.
Figure 16 in A new early branching armored dinosaur from the Lower Jurassic of southwestern China
Figure 16. Phylogenetic relationships of YUXISAURUS within Thyreophora. (A) Strict consensus of the six most parsimonious trees (MPTs) recovered from analysis of the modified Norman, 2021 data set. (B) Strict consensus of the two MPTs recovered from analysis of the modified Maidment et al., 2020 data set. Bremer support values are shown adjacent to the nodes.
Figure 11 in A new early branching armored dinosaur from the Lower Jurassic of southwestern China
Figure 11. Right humerus of YUXISAURUS KOPCHICKI in (A) anterior, (B) lateral, (C) posterior, (D) medial, (E) proximal, and (F) distal views. Abbreviations: dpc, deltopectoral crest; f, fossa; h, humeral head; it, internal tuberosity; rc, radial condyle; tb, tubercle; uc, ulnar condyle. Scale bar equals 10 cm.
Figure 12 in A new early branching armored dinosaur from the Lower Jurassic of southwestern China
Figure 12. Distal end of right femur of YUXISAURUS KOPCHICKI in (A) posterior, (B) ventral, (C) lateral, (D) medial, and (E) dorsal views. Abbreviations: d, depression; icg, intercondylar groove; lc, lateral condyle; mc, medial condyle; nc, notch. Scale bar equals 10 cm.
Figure 13 in A new early branching armored dinosaur from the Lower Jurassic of southwestern China
Figure 13. Cervical and pectoral osteoderms of YUXISAURUS KOPCHICKI. Tripartite compound osteoderm (TPO) 1 in (A) anterior, (B) dorsal, and (C) posterior views. TPO 2 in (D) anterior, (E) dorsal, and (F) posterior views. Bipartite osteoderm (BPO) 1 in (G) anterior, (H) dorsal, and (I) medial views; BPO 2 in (J) anterior, (K) dorsal, and (L) posterior views; BPO 3 in (M) anterior, (N) dorsal, and (O) posterior views; BPO 4 in (P) anterior, (Q) posterior, and (R) dorsal views; and BPO 5 in (S) anterior, (T) posterior, and (U) dorsal views. Blade-like cervical spines in anterior and posterior views (V, W). Abbreviations: ls, lateral spine; mds, middle scute; ms, medial scute. Scale bar equals 10 cm.
Figure 10 in A new early branching armored dinosaur from the Lower Jurassic of southwestern China
Figure 10. Scapulae of YUXISAURUS KOPCHICKI. Distal part of right scapula in (A) lateral, (B) medial, (C) ventral, and (D) dorsal views. Proximal part of left scapula in (E) lateral, (F) medial, (G) ventral, and (H) dorsal views. Abbreviation: d, depression. Scale bar equals 10 cm.
Figure 7 in A new early branching armored dinosaur from the Lower Jurassic of southwestern China
Figure 7. Mandibular remains of YUXISAURUS KOPCHICKI. Posterior part of left hemimandible in (A) lateral, (B) ventral, (C) medial, and (D) dorsal views. Posterior part of right hemimandible in (E) lateral, (F) ventral, (G) medial, and (H) dorsal views. Abbreviations: af, adductor fossa; an, angular; c, concavity; cor, coronoid; cor.em, coronoid eminence; pr, prearticular; sa, surangular; sf, surangular foramen. Scale bar equals 5 cm.
Figure 8 in A new early branching armored dinosaur from the Lower Jurassic of southwestern China
Figure 8. Articulated series of the anterior-most cervical vertebrae (atlas, axis, and cervicals 3 and 4) of YUXISAURUS KOPCHICKI in (A) left lateral, (B) dorsal, (C) right lateral, (D) ventral, (E) posterior, and (F) anterior views. Atlas in (G) ventral view with interpretative diagram beneath. Abbreviations: ard, arrowlike depression; cvr, cervical rib; ns, neural spine; pap, parapophysis; poz, postzygapophysis; prz, prezygapophysis; ri, ridge; tp, transverse process. Scale bar equals 5 cm.
Figure 5 in A new early branching armored dinosaur from the Lower Jurassic of southwestern China
Figure 5. Photographs (left) and line drawings (right) of the braincase of YUXISAURUS KOPCHICKI in (A) dorsal, (B) ventral, (C) anterior, and (D) posterior views. Abbreviations: bo, basioccipital; bp, basipterygoid process; bs, basisphenoid; cp, cultriform process (parasphenoid rostrum); fm, foramen magnum; nt, 'V'-shaped notch; n. V, exit of trigeminal nerve; oc, occipital condyle; os, orbitosphenoid; pa, parietal; pap, paroccipital process; po, postorbital; pt, pterygoid; q, quadrate; qd, quadrate depression; sq, squamosal. Scale bar equals 5 cm.
Figure 1 in A new early branching armored dinosaur from the Lower Jurassic of southwestern China
Figure 1. Geographical and stratigraphic location of YUXISAURUS KOPCHICKI CVEB21701. (A) Location of the quarry yielding YUXISAURUS KOPCHICKI, with a red star indicating the locality. (B) Sediments of the Fengjiahe Formation at the quarry site. (C) Stratigraphic column of the Fengjiahe Formation in the Jiaojiadian area (modified from Bai, 1999).
Figure 6 in A new early branching armored dinosaur from the Lower Jurassic of southwestern China
Figure 6. Possible skull roof fragment of YUXISAURUS KOPCHICKI in (A) dorsal, (B) lateral, and (C) ventral views. Abbreviations: cd, channel-like depression; d, dome. Scale bar equals 5 cm.
Figure 9 in A new early branching armored dinosaur from the Lower Jurassic of southwestern China
Figure 9. Dorsal vertebrae of YUXISAURUS KOPCHICKI. D1 in (A) left lateral, (B) dorsal, (C) anterior, (D) posterior, and (E) ventral views. D2 in (F) left lateral, (G) dorsal, (H) anterior, (I) posterior, and (J) ventral views. D3 in (K) left lateral, (L) dorsal, (M) anterior, (N) posterior, and (O) ventral views. D4 in (P) left lateral, (Q) dorsal, (R) anterior, (S) posterior, and (T) ventral views. D5 in (U) left lateral, (V) dorsal, (W) anterior, (X) posterior, and (Y) ventral views. Abbreviations: f, fossa; k, keel; nc, neural canal; pap, parapophysis; prz, prezygapophysis; tp, transverse process. Scale bar equals 5 cm.
Figure 3 in A new early branching armored dinosaur from the Lower Jurassic of southwestern China
Figure 3. Right maxilla of YUXISAURUS KOPCHICKI in (A) lateral, (B) medial, (C) dorsal, and (D) ventral views. Maxillary tooth row in (E) lingual view with the last tooth in (F) lingual view. Abbreviations: af, antorbital fenestra; afo, antorbital fossa; fenestra; aso, anterior supraorbital; ju, jugal; mrl, maxillary ramus of the lacrimal; mso, mesosupraorbital; orb, orbital; aso anterior supraorbital; prf, prefrontal. Scale bar equals 5 cm.
Figure 2 in A new early branching armored dinosaur from the Lower Jurassic of southwestern China
Figure 2. Skeletal reconstruction of YUXISAURUS KOPCHICKI showing some of the main preserved elements from the holotype (highlighted in blue), with details of the skull bones (A), cervical vertebrae (B), dorsal vertebrae (C), left scapula (D), right humerus (E), and left femur (F). Scale bars equal 5 cm (A–C) or 10 cm (D–F). The facial region and distal scapula are mirrored. Osteoderms have been omitted for convenience.
Figure 4 in A new early branching armored dinosaur from the Lower Jurassic of southwestern China
Figure 4. Photographs (left) and line drawings (right) of the braincase and partial skull roof of YUXISAURUS KOPCHICKI in left lateral (A) and right lateral (B) views. Abbreviations: aud, auditory recess; bo, basioccipital; bp, basipterygoid process; bs, basisphenoid; cp, cultriform process (parasphenoid rostrum); fm, foramen magnum; ls, laterosphenoid; n. V, exit of trigeminal nerve; n. XII, exit of cranial nerve XII; oc, occipital condyle; os, orbitosphenoid; oto, otoccipital; pa, parietal; pap, paroccipital process; po, postorbital; pr, prootic; pt, pterygoid; q, quadrate; sq, squamosal. Scale bar equals 5 cm.
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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)
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.