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39 results for “Hippopotamidae”

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zenodo32/100

Figure 10 in Morphology and phylogenetic relationships of the earliest known hippopotamids (Cetartiodactyla, Hippopotamidae, Kenyapotaminae)

Figure 10. One of the eight most parsimonious phylogenetic trees (230 steps; consistency index = 0.470; retention index = 0.724) obtained by cladistic analysis (heuristic search) of the matrix including only cheek tooth characters (23 taxa and 66 characters – character 16 to character 81; see Appendices and online Supporting Information). Three other trees presented a similar topology within Hippopotamoidea, the four others displaying a topology compatible with Figure 9. Numbers at nodes are: Bremer index/ bootstrap index (1000 replicates,> 50% occurrences). AB, advanced bothriodontines; Hid, Hippopotamidae; Hoid, Hippopotamoidea; K, Kenyapotaminae; MMK, middle Miocene kenyapotamines; LMK, late Miocene kenyapotamines.

opennotspecifiedOct 2010View details →
zenodo32/100

Figure 7 in Morphology and phylogenetic relationships of the earliest known hippopotamids (Cetartiodactyla, Hippopotamidae, Kenyapotaminae)

Figure 7. Mandible and lower molars of Kenyapotaminae. A, Kenyapotamus coryndonae, KNM-NA 246, right mandibular corpus with P4, M1, distal half of M2, M3 (top, ventral view; bottom, internal view). B, K. coryndonae, KNM-BN 1320, fragmentary right M1 or M2 (left, labial view; right, occlusal view). C, Kenyapotamus ternani, KNM-MB 864, left lower M1 or M2 (occlusal view). D, K. coryndonae, KNM-NA 246, right M3 (occlusal view). E, K. cf. coryndonae, KNM-NA 250C, right M3 (occlusal view). F, K. ternani, KNM-FT 3322, left M3 (occlusal view). Localities: BN, Ngeringerowa; FT, Fort Ternan; MB, Maboko; NA, Nakali. Scale bars = 1 cm.

opennotspecifiedOct 2010View details →
zenodo32/100

Figure 1 in Hind limb myology of the common hippopotamus, Hippopotamus amphibius (Artiodactyla: Hippopotamidae)

Figure 1. Common hippo hind limb in lateral view. Asterisk (*) indicates the location of the patella deep to the fibres of the tensor fasciae latae.

opennotspecifiedFeb 2010View details →
zenodo32/100

Figure 5 in Morphology and phylogenetic relationships of the earliest known hippopotamids (Cetartiodactyla, Hippopotamidae, Kenyapotaminae)

Figure 5. Maxilla and upper molars of Kenyapotaminae. A, Kenyapotamus coryndonae, KNM-BN 1321, right M3, holotype with KNM-BN 2075 (left, labial view; middle, mesial view; right, occlusal view). B, K. aff. coryndonae, KNM-NA 251, right M3 (left, labial view; middle, mesial view; right, occlusal view). C, K. coryndonae, KNM-BN 1494, fragmentary palate with left M1 and right M2 (occlusal view). D, K. coryndonae, KNM-NA 188, right M1 (left, labial view; middle, mesial view; right, occlusal view). E, cf. Kenyapotamus, KNM-BN 1618, upper molar fragment (top, labial view; bottom, occlusal view). F, Kenyapotamus ternani, KNM-FT 3934, right M1 - holotype (left, labial view; middle, mesial view; right, occlusal view). G, K. cf. coryndonae, KNM-BN 1601, molar fragment (labial view). Localities: BN, Ngeringerowa, except KNM-BN 1618: lower members of the Ngorora Formation; FT, Fort Ternan; NA, Nakali. Scale bars = 1 cm.

opennotspecifiedOct 2010View details →
zenodo32/100

Figure 3 in Morphology and phylogenetic relationships of the earliest known hippopotamids (Cetartiodactyla, Hippopotamidae, Kenyapotaminae)

Figure 3. Lower incisors and canine of Kenyapotaminae. A, Kenyapotamus ternani, KNM-TH 31008, right lower canine fragment (left, lingual view; middle, proximal view; right, labial view). B, Kenyapotamus coryndonae, KNM-NA 247, apical fragment of lower incisor (left, lateral view; right, proximal view). C, Kenyapotamus coryndonae, KNM-BN 1289, lower incisor fragment (lateral view). Localities: BN, Ngeringerowa; NA, Nakali; TH, Kipsaramon (Baringo Paleontological Research Project). Scale bars = 1 cm.

opennotspecifiedOct 2010View details →
zenodo32/100

Figure 1 in Morphology and phylogenetic relationships of the earliest known hippopotamids (Cetartiodactyla, Hippopotamidae, Kenyapotaminae)

Figure 1. Occlusal views of upper dentition in Anthracotheriidae, Hippopotaminae, and palaeochoerids. A, Merycopotamus nanus, alveoli of right I1–C, and right P1–M3 (specimen number: Y47189, repository: Geological Survey of Pakistan, Museum of Natural History in Islamabad, Pakistan – GSP). B, Merycopotamus nanus, left* M2–M3 (Y47189, GSP). C, Anthracotherium sp., right P3–M3 (University of Montpellier 2 cast of ACQ 6608, Ecomusée des Phosphatières, Bach, France). D, Hexaprotodon garyam, right M3 (TM059-01-012, Centre National d'Appui à la recherche, Ndjamena, Chad – CNAR). E, Archaepotamus harvardi, left* P2–M3 (KNM-LP 8731, National Museums of Kenya, Nairobi – NMK). F, Ar. harvardi, left* M1–M2 (KNM-LT 23838, NMK). G, Palaeochoerus pusillus, right P4–M3 (Qu 15, Muséum National d'Histoire Naturelle, Paris, France – MNHN). H, Schizochoerus vallesensis, right P3–M3 (TRQ 1018, MNHN). I, Doliochoerus quercyi, left* M1? (Qu 7092, MNHN). * indicates reversed images for comparison purposes. Localities: Y, Potwar plateau, Pakistan; TM, Toros-Menalla, Chad; TRQ, Yassiören, Turkey; LP, Loperot, Kenya; LT, Lothagam, Kenya; Qu and ACQ, Quercy, France. Scale bars = 1 cm.

opennotspecifiedOct 2010View details →
zenodo32/100

Figure 8 in Hind limb myology of the common hippopotamus, Hippopotamus amphibius (Artiodactyla: Hippopotamidae)

Figure 8. Lateral view of hind foot skeleton in the ox, common hippo and pig. The hippo has four weight-bearing digits, whereas pigs and ruminants have reduced lateral digits.

opennotspecifiedFeb 2010View details →
zenodo32/100

Figure 4 in Hind limb myology of the common hippopotamus, Hippopotamus amphibius (Artiodactyla: Hippopotamidae)

Figure 4. Muscle maps for the common hippo tibia and fibula: A, cranial; B, lateral; C, caudal; D, medial.

opennotspecifiedFeb 2010View details →
zenodo32/100

Figure 2 in Hind limb myology of the common hippopotamus, Hippopotamus amphibius (Artiodactyla: Hippopotamidae)

Figure 2. Common hippo hind limb in medial view with the fascia lata removed: dark grey indicates muscles dissected in specimen no. 25308, and light grey indicates muscle origins described by Gratiolet (1867) and Windle & Parsons (1903). As a result of necropsy damage, origins were not preserved in specimen no. 25308, but this information was available in the existing literature. Asterisk (*) indicates the location of the patella deep to the fibres of the tensor fasciae latae.

opennotspecifiedFeb 2010View details →
zenodo28/100

• Afrotropical Region. in Hippopotamidae

• Afrotropical Region.

opennotspecifiedAug 2011View details →
zenodo28/100

• 170-550 cm. in Hippopotamidae

• 170-550 cm.

opennotspecifiedAug 2011View details →
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Plato 12 in Hippopotamidae

Plato 12 Specıes Acoounts

opennotspecifiedAug 2011View details →
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Figure 9 in Hind limb myology of the common hippopotamus, Hippopotamus amphibius (Artiodactyla: Hippopotamidae)

Figure 9. Common hippo pes in plantar view.

opennotspecifiedFeb 2010View details →
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Figure 3 in Hind limb myology of the common hippopotamus, Hippopotamus amphibius (Artiodactyla: Hippopotamidae)

Figure 3. Muscle maps for the common hippo femur: A, cranial; B, lateral; C, caudal; D, medial.

opennotspecifiedFeb 2010View details →
zenodo28/100

Figure 6 in Hind limb myology of the common hippopotamus, Hippopotamus amphibius (Artiodactyla: Hippopotamidae)

Figure 6. Muscle maps for the common hippo pes: A, dorsal; B, plantar.

opennotspecifiedFeb 2010View details →
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Figure 5 in Hind limb myology of the common hippopotamus, Hippopotamus amphibius (Artiodactyla: Hippopotamidae)

Figure 5. Common hippo leg in cranial view.

opennotspecifiedFeb 2010View details →
zenodo28/100

Figure 6 in The phylogeny and taxonomy of Hippopotamidae (Mammalia: Artiodactyla): a review based on morphology and cladistic analysis

Figure 6. Strict consensus tree of the three most parsimonious trees obtained from the cladistic analysis (length = 81, CI = 0.6420, RI = 0.7752). In italic-bold, the bootstrap results are given as an indication of clade robustness.

opencc-by-4.0Jan 2005View details →
zenodo28/100

Figure 3. Cranial character states. A in The phylogeny and taxonomy of Hippopotamidae (Mammalia: Artiodactyla): a review based on morphology and cladistic analysis

Figure 3. Cranial character states. A, lateral view of a Hexaprotodon liberiensis skull. B, Lateral view of a Hippopotamus amphibius skull. C, lateral view of a Hex. mingoz skull. D, three dorsal views of the braincase (from bottom to top: in Hex. harvardi, in Hex. mingoz, in Hip. amphibius). E, four schematic anterior views of the left orbit (from right to left: in Hex. protamphibius, in Hex. harvardi, in Hip. gorgops, in Hex. sivalensis).

opencc-by-4.0Jan 2005View details →
zenodo20/100

Figure 2. Dental nomenclature. A in Morphology and phylogenetic relationships of the earliest known hippopotamids (Cetartiodactyla, Hippopotamidae, Kenyapotaminae)

Figure 2. Dental nomenclature. A, tooth orientation: the top arrow indicates the mesiolingual direction. B, structures identifiable on cingula/-ids. On upper molars, isolated pre-ectostyle, ectostyle, and postectostyle are also named parastyle, mesostyle, and metastyle, respectively. C, sketch of a right upper molar in occlusal view. D, sketch of a right lower molar (M3) in occlusal view. E, sketch of a right upper premolar in occlusal view. F, sketch of a right lower premolar in occlusal view. Abbreviations: Para., paracone; Proto., protocone; Meta., metacone; Metaul., metaconule; Metad., metaconid; Protod., protoconid; Entod., entoconid; Hypod., hypoconid; Hypoulid., hypoconulid; -c., -crista; -cul., -cristule; -cid., -cristid; -culid., -cristulid. See also Supporting Information Figures S1 and S2.

opennotspecifiedOct 2010View details →

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