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4,028 results for “Mammalia”

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zenodo32/100

FIGURE 20 in A new and most complete pampathere (Mammalia, Xenarthra, Cingulata) from the Quaternary of Bahia, Brazil

FIGURE 20. Pelvis of Holmesina cryptae sp. nov. (holotype, LPP-PV-001). A, dorsal; and B, lateral views. Abbreviations: ac, acetabulum; lsc, lateral synsacral crest; of, obturator foramen; sif, synsacroischial foramen; ssa, synsacral ala. Scale bar = 50 mm.

opennotspecifiedAug 2019View details →
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FIGURE 5 in A new and most complete pampathere (Mammalia, Xenarthra, Cingulata) from the Quaternary of Bahia, Brazil

FIGURE 5. Skull of Holmesina cryptae sp. nov. (holotype, LPP-PV-001), dorsal and ventral views. A, dorsal; and B, ventral views. Scale bar = 50 mm.

opennotspecifiedAug 2019View details →
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FIGURE 13 in A new and most complete pampathere (Mammalia, Xenarthra, Cingulata) from the Quaternary of Bahia, Brazil

FIGURE 13. Right hemimandible of Holmesina cryptae sp. nov. (paratype, LPP-PV-002). A, lateral; B, medial; and C, occlusal views. Scale bar = 50 mm.

opennotspecifiedAug 2019View details →
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FIGURE 9 in A new and most complete pampathere (Mammalia, Xenarthra, Cingulata) from the Quaternary of Bahia, Brazil

FIGURE 9. Ventrolateral view of the skull of Holmesina cryptae sp. nov. (paratype, LPP-PV-002) focusing the left auditory region. aptt, anteroventral process of tegmen tympany; as, alisphenoid; bb, bony bridge between tympanohyal and crista interfenestralis; bcc, basicochlear commissure; bo, basioccipital; bs, basisphenoid; cf, carotid foramen; cp, crista parotica; eam, external auditory meatus; eo, exoccipital; f, frontal; fo, foramen ovale; fr/sof, fused foramen rotundum and sphenorbital fissure; fm, foramen magnum; fs, facial sulcus; gf, glenoid fossa; hf, hypoglossal foramen; itc, infratemporal crest; Mf9, ninth upper molariform; mp, mastoid process (pop, paroccipital process of petrosal of Gaudin, Lyon (2017)); mx, maxilla; nc, nuchal crest; occ, occipital foramen; of, optic foramen; pcp, paracondylar process of exoccipital (= paroccipital process); pe, petrosal; pf, piriform fenestra; pgf, postglenoid foramen; pgp, postglenoid process; pr, promontorium of petrosal; pt, pterygoid; pt/pl, fused pterygoid and palatine; spf/cpf, fused sphenopalatine and caudal palatine foramina; smf, suprameatal foramen; stf, stylomastoid foramen; sq, squamosal; th, tympanohyal; ttf, tensor tympani fossa on epitympanic wing of petrosal; zp, zygomatic process of squamosal. Perspective figure, dimensions must be compared to Figs. 6 and 8. Based on Gaudin & Lyon (2017).

opennotspecifiedAug 2019View details →
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FIGURE 6 in A new and most complete pampathere (Mammalia, Xenarthra, Cingulata) from the Quaternary of Bahia, Brazil

FIGURE 6. Skull of Holmesina cryptae sp. nov. (paratype, LPP-PV-002), dorsal and ventral views. A, dorsal; and B, ventral views. Scale bar = 50 mm.

opennotspecifiedAug 2019View details →
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APPENDIX 4 in A new and most complete pampathere (Mammalia, Xenarthra, Cingulata) from the Quaternary of Bahia, Brazil

APPENDIX 4. Table of measurements of the caudal vertebrae of H. cryptae sp. nov. (holotype, LPP-PV-01). Cd, caudal vertebra.

opennotspecifiedAug 2019View details →
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APPENDIX 3 in A new and most complete pampathere (Mammalia, Xenarthra, Cingulata) from the Quaternary of Bahia, Brazil

APPENDIX 3. Table of measurements of precaudal vertebrae including synsacral caudal vertebrae of Holmesina cryptae sp. nov. (LPP-PV-001 and LPP-PV-002) and Pampatherium humboldtii (MCL 900). C, cervical vertebra; L, lumbar vertebra; S, synsacral vertebra; T, thoracic vertebra. *, also presents xenarthrous articulation.

opennotspecifiedAug 2019View details →
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APPENDIX 2 in A new and most complete pampathere (Mammalia, Xenarthra, Cingulata) from the Quaternary of Bahia, Brazil

APPENDIX 2. Figure of morphological diversity of osteoderms of Holmesina cryptae sp. nov. (holotype, LPP-PV-001). A–B, appendicular osteoderms; C, cephalic shield osteoderm; D–F scapular buckler osteoderms; G–I, pelvic buckler osteoderms; J, anterior semimovable osteoderm; K–Q, movable bands odteoderms; K–L, fused osteoderms of the border; M–N, osteoderms of the border; O–P, medial osteoderms; Q, osteoderms of the border; R–S, osteoderms of the border of the posterior semimovable band; T, osteoderms of the border of the carapace. Scale bar = 20 mm.

opennotspecifiedAug 2019View details →
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APPENDIX 3 in A new and most complete pampathere (Mammalia, Xenarthra, Cingulata) from the Quaternary of Bahia, Brazil

APPENDIX 3. Table of measurements of precaudal vertebrae including synsacral caudal vertebrae of Holmesina cryptae sp. nov. (LPP-PV-001 and LPP-PV-002) and Pampatherium humboldtii (MCL 900). C, cervical vertebra; L, lumbar vertebra; S, synsacral vertebra; T, thoracic vertebra. *, also presents xenarthrous articulation.

opennotspecifiedAug 2019View details →
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APPENDIX 2 in A new and most complete pampathere (Mammalia, Xenarthra, Cingulata) from the Quaternary of Bahia, Brazil

APPENDIX 2. Figure of morphological diversity of osteoderms of Holmesina cryptae sp. nov. (holotype, LPP-PV-001). A–B, appendicular osteoderms; C, cephalic shield osteoderm; D–F scapular buckler osteoderms; G–I, pelvic buckler osteoderms; J, anterior semimovable osteoderm; K–Q, movable bands odteoderms; K–L, fused osteoderms of the border; M–N, osteoderms of the border; O–P, medial osteoderms; Q, osteoderms of the border; R–S, osteoderms of the border of the posterior semimovable band; T, osteoderms of the border of the carapace. Scale bar = 20 mm.

opennotspecifiedAug 2019View details →
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APPENDIX 4 in A new and most complete pampathere (Mammalia, Xenarthra, Cingulata) from the Quaternary of Bahia, Brazil

APPENDIX 4. Table of measurements of the caudal vertebrae of H. cryptae sp. nov. (holotype, LPP-PV-01). Cd, caudal vertebra.

opennotspecifiedAug 2019View details →
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Figure 5 in A new endemic species of the subgenus Mus (Rodentia, Mammalia) on the Island of Cyprus

Figure 5: A: Minimum evolution tree based on the analysis of the D­Loop (926 sites). B: same phylogenetic inference on 761 bp of ABPa intron 2. Only the bootstrap values of each node superior to 50 are indicated.

opennotspecifiedJun 2005View details →
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Supplementary material 1 from: Bannikova AA, Jenkins PD, Solovyeva EN, Pavlova SV, Demidova TB, Simanovsky SA, Sheftel BI, Lebedev VS, Fang Y, Dalen L, Abramov AV (2019) Who are you, Griselda? A replacement name for a new genus of the Asiatic short-tailed shrews (Mammalia, Eulipotyphla, Soricidae): molecular and morphological analyses with the discussion of tribal affinities. ZooKeys 888: 133-158. https://doi.org/10.3897/zookeys.888.37982

: Explanation note: Figure S1. The phylogenetic relationships in Blarinella as reconstructed in MrBayes based on the extended alignment of cytb. Figure S2. The phylogenetic relationships in Blarinella as reconstructed in MrBayes based on the alignment of ApoB. Table S1. GenBank accession numbers of sequences retrieved from GenBank and newly collected sequences used in the study (marked in bold). Table S2. Primers for cytb amplification and sequencing. Table S3. The best-fit substitution models employed for each of the five partitions found by IQTREE.

opencc-zeroNov 2019View details →
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Fig. 2 in BSeptal compass^ and Bseptal formula^: a new method for phylogenetic investigations of the middle ear region in the squirrel-related clade (Rodentia: Mammalia)

Fig. 2 Septal compass: general graphical illustration of the anatomy of the right middle ear region with the relative position of the primary septa (I–III) and the secondary septa (A, B, a). One asterisk (a*) indicates the Blateral secondary septum^ of MacPhee (1981), two asterisks (**) indicate the Banterior septum^ of Wible (2009). cty cavum tympani (=tympanic cavity), fsa fossa subarcuata (=subarcuate fossa), rec recessus epitympanicus (=epitympanic recess)

opennotspecifiedJul 2015View details →
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Fig. 1 in BSeptal compass^ and Bseptal formula^: a new method for phylogenetic investigations of the middle ear region in the squirrel-related clade (Rodentia: Mammalia)

Fig. 1 Application of the septal compass. a Skull and right middle ear region in lateral view of Petaurista petaurista. b The right ear region of Euxerus erythropus in ventral view. The relative position of all septa is gathered by using several different orientated clipping planes. c Lateral

opennotspecifiedJul 2015View details →
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Fig. 6 in Skeletogenesis and sequence heterochrony in rodent evolution, with particular emphasis on the African striped mouse, Rhabdomys pumilio (Mammalia)

Fig. 6 Camera lucida drawings of the right hand (shown at left) and foot, in dorsal views, of Rhabdomys pumilio. Autopodial elements: as = astragalus, ca = calcaneus, ce = centrale, dc = distal carpal, dt = distal tarsal, f = fibula, mc = metacarpal, mt = metatarsal, nv = navicular, pi = pisiform, r = radius, sc = scaphoid, u = ulna, t = tibia, tr = triquetrum. Scales: 2 mm

opennotspecifiedMar 2010View details →
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Fig. 3 in Skeletogenesis and sequence heterochrony in rodent evolution, with particular emphasis on the African striped mouse, Rhabdomys pumilio (Mammalia)

Fig. 3 Cleared and double-stained rodents prepared at the Paläontologisches Institut, Zürich. Left: Octodon degus. Right: Rhabdomys pumilio. Scale: 2 mm

opennotspecifiedMar 2010View details →
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Fig. 4 in Skeletogenesis and sequence heterochrony in rodent evolution, with particular emphasis on the African striped mouse, Rhabdomys pumilio (Mammalia)

Fig. 4 Ossification of elements of the left hand (respective up- per row) and foot (lower row), in dorsal views, of Rhabdomys pumilio; black = ossified, grey = calcified. Number of specimens examined (N)= 1, except at stages a (N =16), f (6), g (2), n (9), y (4), and z (2)

opennotspecifiedMar 2010View details →
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Fig. 1 in Skeletogenesis and sequence heterochrony in rodent evolution, with particular emphasis on the African striped mouse, Rhabdomys pumilio (Mammalia)

Fig. 1 Phylogenetic relationships among the species includ- ed in this study, reconstructed from Steppan et al. (2004), Bininda-Emonds et al. (2007), and Blanga-Kanfi et al. (2009)

opennotspecifiedMar 2010View details →
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Fig. 2 A in Skeletogenesis and sequence heterochrony in rodent evolution, with particular emphasis on the African striped mouse, Rhabdomys pumilio (Mammalia)

Fig. 2 A sample of ontogenetic series prepared for this study at the Paläontologisches Institut und Museum, Zürich. a Cavia porcellus. b Rhabdomys pumilio. c Octodon degus. Scales: 2 mm

opennotspecifiedMar 2010View details →

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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