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156 results for “Plio-Pleistocene”

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Fig. 15 in The hind limb skeleton and cursorial adaptations of the Plio-Pleistocene rabbit Hypolagus beremendensis

Fig. 15. Morphology of left cuboid of Hypolagus beremendensis (Kormos, 1930), ISEZ MF/2220/cu/1, Węże 1, Pliocene, Poland, in dorsal (A), plantar (B), medial (C), lateral (D), proximal (E), and distal (F) views, and explanatory drawings with articular surfaces marked (A2–F2).

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Fig. 3 in The hind limb skeleton and cursorial adaptations of the Plio-Pleistocene rabbit Hypolagus beremendensis

Fig. 3. Box plots of selected coxal indices. Median, range and 50%−segment of values are given. Values above the 90th and below the 10th percentile are plotted as points. Species abbreviations: Hber, Hypolagus beremendensis; Ocun, Oryctolagus cuniculus; Pfur, Pentalagus furnessi; Sflo, Sylvilagus floridanus; Leur, Lepus europaeus.

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Fig. 22 in The hind limb skeleton and cursorial adaptations of the Plio-Pleistocene rabbit Hypolagus beremendensis

Fig. 22. Box plots of the intramembral indices. Note the relatively low values of coxo−femoral index (A) and Ifoot2 index (D), as well as the relatively high Ifoot1 index (C) for Hypolagus beremendensis. Median, range and 50%−segment of values are given. Values above the 90th and below the 10th percentile are plotted as points. Species abbreviations: Hber, Hypolagus beremendensis; Ocun, Oryctolagus cuniculus; Pfur, Pentalagus furnessi; Sflo, Sylvilagus floridanus; Leur, Lepus europaeus.

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Fig. 1 in The hind limb skeleton and cursorial adaptations of the Plio-Pleistocene rabbit Hypolagus beremendensis

Fig. 1. Scheme of hind limb measurements (see Table 1 for descriptions and abbreviations). Measurements for phalanges (not figured) are the same as for metatarsals.

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Fig. 14 in The hind limb skeleton and cursorial adaptations of the Plio-Pleistocene rabbit Hypolagus beremendensis

Fig. 14. Box plots of navicular indices. Median, range and 50%−segment of values are given. Values above the 90th and below the 10th percentile are plotted as points. Species abbreviations: Hber, Hypolagus beremendensis; Ocun, Oryctolagus cuniculus; Pfur, Pentalagus furnessi; Sflo, Sylvilagus floridanus; Leur, Lepus europaeus.

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Fig. 21 in The hind limb skeleton and cursorial adaptations of the Plio-Pleistocene rabbit Hypolagus beremendensis

Fig. 21. Proportions of bones of the foot of Leporidae, metatarsal bone III (black bar), used as 100% for each species. Species abbreviations: Hber, Hypolagus beremendensis; Ocun, Oryctolagus cuniculus; Pfur, Pentalagus furnessi; Sflo, Sylvilagus floridanus; Leur, Lepus europaeus.

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Fig. 7 in The hind limb skeleton and cursorial adaptations of the Plio-Pleistocene rabbit Hypolagus beremendensis

Fig. 7. Box plots of tibial indices. Median, range and 50%−segment of values are given. Values above the 90th and below the 10th percentile are plotted as points. Species abbreviations: Hber, Hypolagus beremendensis; Ocun, Oryctolagus cuniculus; Pfur, Pentalagus furnessi; Sflo, Sylvilagus floridanus; Leur, Lepus europaeus.

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Fig. 11 in The hind limb skeleton and cursorial adaptations of the Plio-Pleistocene rabbit Hypolagus beremendensis

Fig. 11. Box plots of calcaneal indices. Median, range and 50%−segment of values are given. Values above the 90th and below the 10th percentile are plotted as points. Species abbreviations: Hber, Hypolagus beremendensis; Ocun, Oryctolagus cuniculus; Pfur, Pentalagus furnessi; Sflo, Sylvilagus floridanus; Leur, Lepus europaeus.

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Fig. 19 in The hind limb skeleton and cursorial adaptations of the Plio-Pleistocene rabbit Hypolagus beremendensis

Fig. 19. Morphology of right metatarsal IV (A–D) and left metatarsal V (E–H) of Hypolagus beremendensis (Kormos, 1930), ISEZ MF/2224/mt4/1, Rębielice Królewskie 1 and ISEZ MF/2225/mt5/12, Rębielice Królewskie 2, late Pliocene, Poland, in plantar (A, E), dorsal (B, F), medial (C, G), and lateral (D, H) views, and explanatory drawings with articular surfaces marked (A2–H2).

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Fig. 18 in The hind limb skeleton and cursorial adaptations of the Plio-Pleistocene rabbit Hypolagus beremendensis

Fig. 18. Morphology of right metatarsal II (A–D) and left metatarsal III (E–H) of Hypolagus beremendensis (Kormos, 1930), ISEZ MF/2220/mt2/9, Węże 1, ISEZ MF/2224/mt3/10, Rębielice Królewskie 1, late Pliocene, Poland, in plantar (A, E), dorsal (B, F), lateral (C, H), and medial (D, G) views, and explanatory drawings with articular surfaces marked (A2–H2).

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Fig. 4 in The hind limb skeleton and cursorial adaptations of the Plio-Pleistocene rabbit Hypolagus beremendensis

Fig. 4. Morphology of femur and patella of Hypolagus beremendensis (Kormos, 1930) from the Pliocene of Poland (A–D) and femur of extant Leporidae (E–H). A. Proximal extremity of left femur, ISEZ MF/2220/fe/69, Węże 1, in caudal (A1) cranial (A2), lateral (A3), medial (A4) views. B. Distal extremity of right femur, ISEZ MF/2220/fe/15, Węże 1, in caudal (B1), cranial (B2), lateral (B3), medial (B4), distal (B5) views. C. Shaft of right femur, ISEZ MF/2224/fe/9, Rębielice Królewskie 1, in caudal view. D. Left patella, ISEZ MF/2220/pa/1, Węże 1, in cranial (D1), lateral (D2), caudal (D3), and medial (D4) views. Outline of left femur for Oryctolagus cuniculus (E), Pentalagus furnessi (F), Sylvilagus floridanus (G), and Lepus europaeus (H). Note morphology of the first trochanter (arrow a) and femoral neck (arrow b).

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Linked collectors and determiners for: Four New Bat Species (Rhinolophus hildebrandtii Complex) Reflect Plio-Pleistocene Divergence of Dwarfs and Giants across an Afromontane Archipelago.

Natural history specimen data linked to collectors and determiners held within, "Four New Bat Species (Rhinolophus hildebrandtii Complex) Reflect Plio-Pleistocene Divergence of Dwarfs and Giants across an Afromontane Archipelago". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/eb1f92d6-b231-49e8-942a-23a304304304">https://bionomia.net/dataset/eb1f92d6-b231-49e8-942a-23a304304304</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/eb1f92d6-b231-49e8-942a-23a304304304">https://gbif.org/dataset/eb1f92d6-b231-49e8-942a-23a304304304</a>. Formatted as a Frictionless Data package.

opencc-zeroJan 2024View details →
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Fig. 3. Paleogeographic maps for the Plio-Pleistocene Pontocaspian region. A in Quaternary time scales for the Pontocaspian domain: Interbasinal connectivity and faunal evolution

Fig. 3. Paleogeographic maps for the Plio-Pleistocene Pontocaspian region. A) Middle Pliocene; B) Late Pliocene; C) Early Pleistocene; D) Middle Pleistocene. Based on Vinogradov, 1961, 1969 and Abdurakhmanov et al. (2002).

opencc-by-4.0Jan 2019View details →
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Fig. 2 in New Records of Plio-Pleistocene Koalas from Australia: Palaeoecological and Taxonomic Implications

Fig. 2. Phascolarctid gen et sp. indet. dentary (QMF52287) from site QML7, Chinchilla, eastern Australia. (A) External view, (B) Internal view, and (C) Occlusal view.

opencc-by-4.0May 2009View details →
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Fig. 3 in New Records of Plio-Pleistocene Koalas from Australia: Palaeoecological and Taxonomic Implications

Fig. 3. Morphometrics of fossil koala specimens. (A) Depth versus width of dentaries of modern Phascolarctos cinereus from eastern Queensland (Appendix), fossil Cundokoala (?Ph.) yorkensis (SAMP24904) from Corra Lynn Cave (South Australia), and phascolarctid gen et. sp. indet (QMF52287) from Chinchilla, eastern Australia. Note that the depth of the Chinchilla koala dentary is a minimum measurement because the specimen is broken along the alveolar border (Fig. 2). (B) Anterior versus posterior width of Phascolarctos spp. M2 (See Appendix for list of modern Ph. cinereus specimens examined).

opencc-by-4.0May 2009View details →
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Fig. 4 in New Records of Plio-Pleistocene Koalas from Australia: Palaeoecological and Taxonomic Implications

Fig. 4. Photographs of fossil koala teeth from eastern Australia. (A) QMF52288, LM2 of Phascolarctos sp., site QML1384, Mt. Etna. (B) QMF52289, RM1, 2 or 3 metacone fragment of Ph.?stirtoni, Chinchilla. (C) QMF52290, RM2 protocone fragment of Ph.?stirtoni, Marmor.

opencc-by-4.0May 2009View details →
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Fig. 1 in New Records of Plio-Pleistocene Koalas from Australia: Palaeoecological and Taxonomic Implications

Fig. 1. Oligocene-Pleistocene fossil localities where koalas have been recovered, including present study sites (Chinchilla, Marmor and Mt. Etna). Shaded area indicates historic (i.e., post-European settlement in Australia) geographic range of the modern Koala, Phascolarctos cinereus.

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Text-fig. 5. Amphibians: a, b – Latonia sp. from Nasrettinhoca 2: a – left ilium in lateral (a1) and medial (a2) views, and junctura ilioischiadica (a3), EUNHM PV-13223; b – left ilium in lateral (b1) and medial (b2) views, EUNHM PV-13224; c – right angular of Palaeobatrachus sp. from Mercan 1, in medial (c1) and dorsal (c2) views, EUNHM PV-13225; d – left ilium of Pelobates sp. from Nasrettinhoca 2 in lateral (d1) and medial (d2) views, EUNHM PV-13226; e – right ilium of Bufotes viridis s. l. from Nasrettinhoca 2, in lateral (e1) and medial (e2) views, EUNHM PV-13227; f – left angular of Pelophylax sp. from Mercan 1, in dorsal view, EUNHM PV-13228; g – right ilium of Pelophylax sp. from Mercan 1, in lateral (g1) and medial (g2) views, EUNHM PV-13229; h – right ilium of Pelophylax sp. from Hoyhoytepe 1, in lateral (h1) and medial (h2) views, EUNHM PV-13234; i – left angular of Ranidae indet. from Hamamkarahisar A, in dorsal view, EUNHM PV-13237. Scale equals 1 mm. in Plio-Pleistocene Amphibians And Reptiles From Central Turkey: New Faunas And Faunal Records With Comments On Their Biochronological Position Based On Small Mammals

Text-fig. 5. Amphibians: a, b – Latonia sp. from Nasrettinhoca 2: a – left ilium in lateral (a1) and medial (a2) views, and junctura ilioischiadica (a3), EUNHM PV-13223; b – left ilium in lateral (b1) and medial (b2) views, EUNHM PV-13224; c – right angular of Palaeobatrachus sp. from Mercan 1, in medial (c1) and dorsal (c2) views, EUNHM PV-13225; d – left ilium of Pelobates sp. from Nasrettinhoca 2 in lateral (d1) and medial (d2) views, EUNHM PV-13226; e – right ilium of Bufotes viridis s. l. from Nasrettinhoca 2, in lateral (e1) and medial (e2) views, EUNHM PV-13227; f – left angular of Pelophylax sp. from Mercan 1, in dorsal view, EUNHM PV-13228; g – right ilium of Pelophylax sp. from Mercan 1, in lateral (g1) and medial (g2) views, EUNHM PV-13229; h – right ilium of Pelophylax sp. from Hoyhoytepe 1, in lateral (h1) and medial (h2) views, EUNHM PV-13234; i – left angular of Ranidae indet. from Hamamkarahisar A, in dorsal view, EUNHM PV-13237. Scale equals 1 mm.

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Text-fig. 4. Small mammals from Middle Pleistocene site of Yenişarbademli (Central Turkey). a–e – Microtus ex gr. arvalis-socialis: a – m1 and fragmentary m2 sin., EUNHM PV-13210; b – fragmentary m3 sin., EUNHM PV-13211; c – M3 dex., EUNHM PV- 13212a; d, e – fragmentary M3 dex., EUNHM PV-13212b, EUNHM PV-13212c; f – cf. Chionomys nivalis, M3 dex., EUNHM PV-13213; g–j – Lagurus transiens: g, h – fragmentary m1 sin., EUNHM PV-13214-13215; i – m2 sin., EUNHM PV-13216; j – fragmentary M2 dex., EUNHM PV-13217; k – Clethrionomys cf. acrorhiza, fragmentary m3 sin., EUNHM PV-13218 in labial (k2) and lingual (k3) views; l – Ochotona sp., non-pussiloid form, p3 dex., EUNHM PV-13219; m–o – Microtus cf. guentheri: m – fragmentary m1 sin., EUNHM PV-13220; n – m3 sin., EUNHM PV-13221; o – M3 dex., EUNHM PV-13222. Scales for occlusal (larger), and lateral (smaller) views equal 1 mm. in Plio-Pleistocene Amphibians And Reptiles From Central Turkey: New Faunas And Faunal Records With Comments On Their Biochronological Position Based On Small Mammals

Text-fig. 4. Small mammals from Middle Pleistocene site of Yenişarbademli (Central Turkey). a–e – Microtus ex gr. arvalis-socialis: a – m1 and fragmentary m2 sin., EUNHM PV-13210; b – fragmentary m3 sin., EUNHM PV-13211; c – M3 dex., EUNHM PV- 13212a; d, e – fragmentary M3 dex., EUNHM PV-13212b, EUNHM PV-13212c; f – cf. Chionomys nivalis, M3 dex., EUNHM PV-13213; g–j – Lagurus transiens: g, h – fragmentary m1 sin., EUNHM PV-13214-13215; i – m2 sin., EUNHM PV-13216; j – fragmentary M2 dex., EUNHM PV-13217; k – Clethrionomys cf. acrorhiza, fragmentary m3 sin., EUNHM PV-13218 in labial (k2) and lingual (k3) views; l – Ochotona sp., non-pussiloid form, p3 dex., EUNHM PV-13219; m–o – Microtus cf. guentheri: m – fragmentary m1 sin., EUNHM PV-13220; n – m3 sin., EUNHM PV-13221; o – M3 dex., EUNHM PV-13222. Scales for occlusal (larger), and lateral (smaller) views equal 1 mm.

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Text-fig. 3. Arvicolids from Plio-Pleistocene sites of Eskişehir-Sivrihisar region (Central Turkey). a–c – Promimomys cf. insuliferus from Nasrettinhoca 2: a – M3 dex., EUNHM PV-13200; b – fragmentary M2 sin., EUNHM PV-13201; c – M1 sin., EUNHM PV-13202; d – Promimomys sp. from Hamamkarahisar B, M1 sin., EUNHM PV-13203; e–i – Mimomys cf. hajnackensis: e, f – Hoyhoytepe 2, m1–m2 from the same mandibular tooth row: e – m1 sin., EUNHM PV-13204; f – m2 sin., EUNHM PV-13205; g, h – Mercan 1: g – M1 dex., EUNHM PV-13206; h – M3 sin., EUNHM PV-13207; i – Hoyhoytepe 3, M3 sin., EUNHM PV-13208; j – Mimomys ex gr. stehlini-hintoni from Mercan 2, M1 dex., EUNHM PV-13209 in lingual view (j2) and labial (j3) views. Scales for occlusal (larger), and lateral (smaller) views equal 1 mm. in Plio-Pleistocene Amphibians And Reptiles From Central Turkey: New Faunas And Faunal Records With Comments On Their Biochronological Position Based On Small Mammals

Text-fig. 3. Arvicolids from Plio-Pleistocene sites of Eskişehir-Sivrihisar region (Central Turkey). a–c – Promimomys cf. insuliferus from Nasrettinhoca 2: a – M3 dex., EUNHM PV-13200; b – fragmentary M2 sin., EUNHM PV-13201; c – M1 sin., EUNHM PV-13202; d – Promimomys sp. from Hamamkarahisar B, M1 sin., EUNHM PV-13203; e–i – Mimomys cf. hajnackensis: e, f – Hoyhoytepe 2, m1–m2 from the same mandibular tooth row: e – m1 sin., EUNHM PV-13204; f – m2 sin., EUNHM PV-13205; g, h – Mercan 1: g – M1 dex., EUNHM PV-13206; h – M3 sin., EUNHM PV-13207; i – Hoyhoytepe 3, M3 sin., EUNHM PV-13208; j – Mimomys ex gr. stehlini-hintoni from Mercan 2, M1 dex., EUNHM PV-13209 in lingual view (j2) and labial (j3) views. Scales for occlusal (larger), and lateral (smaller) views equal 1 mm.

opencc-by-4.0Dec 2019View details →

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