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75 results for “Rhinocerotidae”
FIG. 4 in The Tapiridae, Rhinocerotidae and Suidae (Mammalia) of the Early Villafranchian site of Milia (Grevena, Macedonia, Greece)
FIG. 4. — The Milia Dicerorhinus jeanvireti Guérin, 1972 upper cheek teeth: A, tooth-rows of the skull MIL162, occlusal view; B, isolated P4/right MIL 868 (occlusal view) and ectoloph profile at 2 cm from the collar; C, isolated P4/left MIL 880 (occlusal view) and ectoloph profile at 2 cm from the collar; D, isolated M1/left MIL 614 (occlusal view) and ectoloph profile at 2 cm from the collar; E, M1/isolated right MIL 1569 (occlusal view) and ectoloph profile at 2 cm from the collar. Scale bars: 50 mm.
FIG. 15 in The Tapiridae, Rhinocerotidae and Suidae (Mammalia) of the Early Villafranchian site of Milia (Grevena, Macedonia, Greece)
FIG. 15. — Simpson diagram of lengths of the limb segments in the Dicerorhinus jeanvireti Guérin, 1972, D. megarhinus (de Christol, 1834), D. miguelcrusafonti Guérin & Santafe, 1978 and D. etruscus etruscus (Falconer, 1859). The variables on the X axis are in order, as the average of lengths. Abbreviations: 1, humerus; 2, radius; 3, Mc II; 4, Mc III; 5, Mc IV; 6, femur; 7, tibia; 8, Mt II; 9, Mt III; 10, Mt. IV.
FIG. 10 in The Tapiridae, Rhinocerotidae and Suidae (Mammalia) of the Early Villafranchian site of Milia (Grevena, Macedonia, Greece)
FIG. 10. — Simpson diagram of astragalus:mean values of the Milia Dicerorhinus jeanvireti Guérin, 1972, compared with average values of the D. jeanvireti, D. miguelcrusafonti Guérin & Santafe, 1978, D. megarhinus (de Christol, 1834) and D. etruscus etruscus (Falconer, 1859). The variables on the X axis are the same and in the same order as in Table 8 (see Appendices).
FIG. 14 in The Tapiridae, Rhinocerotidae and Suidae (Mammalia) of the Early Villafranchian site of Milia (Grevena, Macedonia, Greece)
FIG. 14. — Simpson diagram of Mt IV: values of the Milia Dicerorhinus jeanvireti specimen, compared to extreme values of D. jeanvireti and average values of D. megarhinus (de Christol, 1834), D. miguelcrusafonti Guérin & Santafe, 1978 and D. etruscus etruscus (Falconer, 1859). The variables on the X axis are the same and in the same order as in Table 12 (see Appendices).
FIG. 6 in The Tapiridae, Rhinocerotidae and Suidae (Mammalia) of the Early Villafranchian site of Milia (Grevena, Macedonia, Greece)
FIG. 6. — The Milia Dicerorhinus jeanvireti Guérin, 1972 radius, ulna and tibia: A, B, incomplete distal left radius MIL 657; A, proximal view; B, anterior view; C, left ulna SGP 2; D-F, right tibia MIL 819; D, front view; E, proximal view; F, posterior view. Scale bars: 50 mm.
FIG. 3 in The Tapiridae, Rhinocerotidae and Suidae (Mammalia) of the Early Villafranchian site of Milia (Grevena, Macedonia, Greece)
FIG. 3. — The Milia Dicerorhinus jeanvireti Guérin, 1972 skull MIL 162: A, ventral view; B, dorsal view; C, right side view; D, right side view, detail of the tympanico-occipital region; E, right side view, enlargement of the premaxillary area with I2/in situ; F, occipital view. Scale bar: 100 mm.
FIG. 13 in The Tapiridae, Rhinocerotidae and Suidae (Mammalia) of the Early Villafranchian site of Milia (Grevena, Macedonia, Greece)
FIG. 13. — Simpson diagram of Mt III: Values of the Milia Dicerorhinus jeanvireti Guérin, 1972 specimen, compared to extreme values of D. jeanvireti and average values of D. megarhinus (de Christol, 1834), D. miguelcrusafonti Guérin & Santafe, 1978 and D. etruscus etruscus (Falconer, 1859). The variables on the X axis are the same and in the same order as in Table 11 (see Appendices).
FIG. 8 in The Tapiridae, Rhinocerotidae and Suidae (Mammalia) of the Early Villafranchian site of Milia (Grevena, Macedonia, Greece)
FIG. 8. — Simpson diagram of Mc III: Values of the Milia Dicerorhinus jeanvireti Guérin, 1972 specimen, compared to extreme values of D. jeanvireti and average values of D. megarhinus (de Christol, 1834), D. miguelcrusafonti Guérin & Santafe, 1978 and D. etruscus etruscus (Falconer, 1859). The variables on the X axis are the same and in the same order as in Table 6 (see Appendices).
FIG. 12 in The Tapiridae, Rhinocerotidae and Suidae (Mammalia) of the Early Villafranchian site of Milia (Grevena, Macedonia, Greece)
FIG. 12. — The Milia Dicerorhinus jeanvireti Guérin, 1972 metatarsals: A-F, Right Mt III MIL 368; A, proximal view; B, anterior view; C, lateral view; D, posterior view; E, medial view; F, cross section in the middle of the diaphysis, G-J, left Mt IV MIL 204; G, anterior view; H, medial view; I, proximal view; J, cross section in the middle of the diaphysis. Scale bar: 50 mm.
FIG. 2 in The Tapiridae, Rhinocerotidae and Suidae (Mammalia) of the Early Villafranchian site of Milia (Grevena, Macedonia, Greece)
FIG. 2. — The Milia Tapirus arvernensis arvernensis Croizet & Jobert, 1828: A-C, fragment of right juvenile hemi-mandible MIL 649; A, occlusal view; B, buccal view; C, lingual view; D, E, right calcaneum MIL 1282 of adult; D, medial view, E, posterior view. Scale bar: 50 mm.
FIG. 16 in The Tapiridae, Rhinocerotidae and Suidae (Mammalia) of the Early Villafranchian site of Milia (Grevena, Macedonia, Greece)
FIG. 16. — The Milia Sus arvernensis arvernensis Croizet & Jobert, 1828: A-C, right maxilla with P4/-M3/ MIL 207; A, occlusal view; B, lateral view; C, medial view; D, left mandible fragment with M/2 MIL 696, occlusal view; E, F, rostral fragment of mandible with part of the canine, MIL 1283 dex; E, lateral view; F, front view showing details of the canine section. Scale bars: 50 mm.
FIG. 5 in The Tapiridae, Rhinocerotidae and Suidae (Mammalia) of the Early Villafranchian site of Milia (Grevena, Macedonia, Greece)
FIG. 5. — The Milia Dicerorhinus jeanvireti Guérin, 1972 mandibles: A-D, right mandible with M/2-M/3 MIL 244; A, lateral view; B, medial view; C, dorsal view of symphysis; D, anterior view of the symphysis; E, mandible with right and left complete tooth rows, GSP1, occlusal view. Scale bar: 50 mm.
FIG. 3. — Brachypotherium minor n in Brachypotherium minor n. sp., and other Rhinocerotidae from the Early Miocene of Buluk, Northern Kenya
FIG. 3. — Brachypotherium minor n. sp. from Buluk: A-E, upper I1s in labial view; A, WS-11 (male?); B, WS-147 (male?); C, WS-12862 (female?); D, WS-139 (female?); E, WS-12860 (female?); F, P4-M2, WS-49467; G, P3-M1, WS-12858; H, P3-M3, WS-12633; I, M1- M3, WS-133; J1, mandible WS-45979, medial view; J2, same, occlusal view of p4-m2; K, p2 WS-12850; L, left female i2 WS-12864, lateral view; M, right astragalus WS-12853; N1, right astragalus WS-12854, cranial view; N2, same, plantar view; N3, same, distal view. Scale bar: A-I, J2-N, 10 cm; J1, 1.25 cm.
FIG. 4 in Brachypotherium minor n. sp., and other Rhinocerotidae from the Early Miocene of Buluk, Northern Kenya
FIG. 4. — Rhinocerotidae gen. et sp. indet. from Buluk: A1, P4 WS-13, buccal; A2, same, occlusal views; B1, M2 WS-12843, buccal; B2, same, occlusal views; C, right lower dp4-m2, WS- 144, occlusal view. Scale bar: 10 cm.
FIG. 2. — Brachypotherium minor n in Brachypotherium minor n. sp., and other Rhinocerotidae from the Early Miocene of Buluk, Northern Kenya
FIG. 2. — Brachypotherium minor n. sp., holotype skull KNM WS-46072 from Buluk in: A, dorsal; B, occipital; C, left lateral views; D, occlusal view of left P2-M3. Scale bar: A-C, 20 cm; D, 10 cm.
FIG. 5 in First report of Brachypotherium Roger, 1904 (Rhinocerotidae, Mammalia) in the Middle Miocene of Greece
FIG. 5. — Plot comparing the length versus breadth of the m2 of Brachypotherium Roger, 1904 from various localities (dimensions in mm); the dental measurements are taken from Colbert (1935), Heissig (1972, 1976), Hooijer & Patterson (1972), Fortelius (1990) and Cerdeño (1993).
FIG. 3 in First report of Brachypotherium Roger, 1904 (Rhinocerotidae, Mammalia) in the Middle Miocene of Greece
FIG. 3. — Brachypotherium brachypus (Lartet, 1851), Chryssavgi, CHR, Macedonia, Greece; Late Astaracian, MN 7+8 (Middle Mio- cene); A-C, left M1, 2, CHR-501 in lingual (A), labial (B) and occlusal (C) views; D-F, right M3, CHR-500, in mesial (D), distal (E) and occlusal (F) views. Scale bar: 2 cm.
FIG. 2. — A in First report of Brachypotherium Roger, 1904 (Rhinocerotidae, Mammalia) in the Middle Miocene of Greece
FIG. 2. — A, Locality Chryssavgi (CHR), indicating the position where small (a) and large (b) mammals were found; B, C, undetermined tibia found in the position b, in situ (B) and after preparation (C); D, undetermined vertebra found in the position b. Scale bar: 10 cm.
FIG. 4 in Alicornops (Mammalia, Rhinocerotidae) dans le Miocène supérieur des Collines Bugti (Balouchistan, Pakistan): implications phylogénétiques
FIG. 4. — Arbre de consensus strict des six arbres également parcimonieux (1330 pas; IC = 0,2639; IR = 0,4745) obtenus avec Hsearch de PAUP 4.0b10 (« stepwise addition », 100 réplications; Swofford 1998). Les nombres encerclés (de 1 à 22) sont les numéros des noeuds. Les nombres situés au-dessous des branches correspondent aux valeurs de bootstrap (500 réplications; commande Bootstrap de PAUP 4.0b10; Swofford 1998). Les espèces dont l'attribution générique est discutée dans le texte apparaissent en caractères gras. Abréviations: Ea, Elasmotheriina; Ma, Menoceratina.
FIG. 3 in Alicornops (Mammalia, Rhinocerotidae) dans le Miocène supérieur des Collines Bugti (Balouchistan, Pakistan): implications phylogénétiques
FIG. 3. — Alicornops complanatum (Heissig, 1972) n. comb., rangée dentaire inférieure gauche, avec p2-m3 (MNHN-MHNT Pak 1606), Sartaaf, Miocène supérieur des Collines Bugti (Balouchistan, Pakistan); A, vue occlusale; B, vue labiale. Échelle: 2 cm.
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