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421 results for “cranial anatomy”
Fig. 29 in Cranial Anatomy Of Kryptobaatar Dashzevegi (Mammalia, Multituberculata), And Its Bearing On The Evolution Of Mammalian Characters
Fig. 29. Stereophotograph of the left lower jaw of Kryptobaatar dashzevegi PSSMAE 113 in lateral view.
Fig. 25 in Cranial Anatomy Of Kryptobaatar Dashzevegi (Mammalia, Multituberculata), And Its Bearing On The Evolution Of Mammalian Characters
Fig. 25. Stereophotograph of the floor of the endocranium of Kryptobaatar dashzevegi PSSMAE 123 in dorsal (A) and oblique dorsal (B) views, with accompanying line drawings. Gray pattern represents matrix; parallel lines denote breakage. Abbreviations: al anterior lamina; bo basioccipital; ce cavum epiptericum; ds dorsum sellae; exoc exoccipital; ff facial foramen; fica foramen for internal carotid artery; fpv foramen for pituitoorbital vein; fr frontal; fV3 foramen for mandibular nerve; hf hypophyseal fossa; iam internal acoustic meatus; jn jugular notch; jsp jugum sphenoidale; mef metoptic foramen mx maxilla; na nasal; opf optic foramen; or orbitosphenoid; ow orbital wing (pila preoptica); pan pila antotica; prc prootic canal; pm pila metoptica; sf subarcuate fossa; sphf sphenorbital fissure; tus tuberculum sellae.
Fig. 24 in Cranial Anatomy Of Kryptobaatar Dashzevegi (Mammalia, Multituberculata), And Its Bearing On The Evolution Of Mammalian Characters
Fig. 24. Schematic drawings of embryonic chondrocrania in left lateral view. A, generalized sauropsid; B, generalized multituberculate, as reconstructed from here; C, generalized monotreme D, generalized marsupial; E, generalized placental. Abbreviations: ais anterior intercavernous sinus; cev capsuloparietal emissary vein; ea ethmoidal artery; en ethmoidal nerve; ev ethmoidal vein; ips inferior petrosal sinus; nc nasal capsule oa ophthalmic artery; oc otic capsule; pan pila antotica; pis posterior intercavernous sinus; pm pila metoptica; pp pila preoptica; ps prootic sinus pv pituitoorbital vein; II optic nerve; III oculomotor nerve; IV trochlear nerve; V trigeminal nerve; VI abducens nerve, VII facial nerve.
Fig. 23 in Cranial Anatomy Of Kryptobaatar Dashzevegi (Mammalia, Multituberculata), And Its Bearing On The Evolution Of Mammalian Characters
Fig. 23. Pencil drawing of the left zygomatic arch of Kryptobaatar dashzevegi PSSMAE 113 in dorsal view, with accompanying line drawing. Abbreviations: fr frontal; ju jugal; lac lacrimal; mx maxilla; pa parietal; sq squamosal; tr temporal ridge.
Fig. 22 in Cranial Anatomy Of Kryptobaatar Dashzevegi (Mammalia, Multituberculata), And Its Bearing On The Evolution Of Mammalian Characters
Fig. 22. Pencil drawings of the right and left zygomatic arches (A and B) of Kryptobaatar dashzevegi PSSMAE 101 in dorsal view, with accompanying line drawings. Gray pattern represents matrix parallel lines denote breakage. Abbreviations: al anterior lamina; fr frontal; ju jugal; juf jugal facet lac lacrimal; lacf lacrimal foramen; mx maxilla; pa parietal; son supraorbital notch; sq squamosal.
Fig. 18 in Cranial Anatomy Of Kryptobaatar Dashzevegi (Mammalia, Multituberculata), And Its Bearing On The Evolution Of Mammalian Characters
Fig. 18. Stereophotograph of the left orbitotemporal region of the skull of Kryptobaatar dashzevegi PSSMAE 101 in oblique dorsolateral view, with accompanying line drawing. Gray pattern represents matrix; parallel lines denote breakage. Abbreviations: al anterior lamina; ali alisphenoid; fdv foramen for frontal diploic vein; fr frontal; frt foramen for ramus temporalis; lac lacrimal; man mandible; mx maxilla; na nasal; oiof orbital aperture of infraorbital canal; or orbitosphenoid; pa parietal; sgf supraglenoid foramen; spf sphenopalatine foramen; sq squamosal.
Fig. 10 in Cranial Anatomy Of Kryptobaatar Dashzevegi (Mammalia, Multituberculata), And Its Bearing On The Evolution Of Mammalian Characters
Fig. 10. Stereophotograph of the skull of Kryptobaatar dashzevegi PSSMAE 101 in right lateral view. Gray pattern represents matrix; parallel lines denote breakage. Abbreviations: al anterior lamina ali alisphenoid; fbu foramen buccinatorium; fr frontal; iof infraorbital foramen; lac lacrimal; mc masseteric crest; mx maxilla; naf nasal foramen; ocon occipital condyle; ompf orbital opening of minor palatine foramen; opf optic foramen; or orbitosphenoid; pmx premaxilla; son supraorbital notch; spf sphenopalatine foramen; sq squamosal; tg temporal groove.
Fig. 13 in Cranial Anatomy Of Kryptobaatar Dashzevegi (Mammalia, Multituberculata), And Its Bearing On The Evolution Of Mammalian Characters
Fig. 13. Stereophotograph of the skull of Kryptobaatar dashzevegi PSSMAE 113 in right lateral view.
Fig. 19 in Cranial Anatomy Of Kryptobaatar Dashzevegi (Mammalia, Multituberculata), And Its Bearing On The Evolution Of Mammalian Characters
Fig. 19. Stereophotograph of the left orbitotemporal region of the skull of Kryptobaatar dashzevegi PSSMAE 113 in oblique dorsolateral view, with accompanying line drawing. Gray pattern represents matrix; parallel lines denote breakage. Abbreviations: al anterior lamina; ef ethmoidal foramen; fr frontal; ju jugal; lac lacrimal; mx maxilla; pa parietal; pop postorbital process (broken); spf sphenopalatine foramen; sq squamosal.
Fig. 4 in Cranial Anatomy Of Kryptobaatar Dashzevegi (Mammalia, Multituberculata), And Its Bearing On The Evolution Of Mammalian Characters
Fig. 4. The skull of Kryptobaatar dashzevegi PSSMAE 113 in (clockwise from upper left) dorsal ventral, anterior, posterior, right lateral, and left lateral views.
Fig. 16 in Cranial Anatomy Of Kryptobaatar Dashzevegi (Mammalia, Multituberculata), And Its Bearing On The Evolution Of Mammalian Characters
Fig. 16. Stereophotograph of the skull of Kryptobaatar dashzevegi PSSMAE 101 in posterior view with accompanying line drawing. Gray pattern represents matrix; parallel lines denote breakage. Abbreviations: aar atlas arch; ax axis; con (mandibular) condyle; cor coronoid process; exoc exoccipital lac lacrimal; lacf lacrimal foramen; mx maxilla; ocon occipital condyle; pc pterygoid crest; pet petrosal ptc posttemporal canal; sq squamosal; sup supraoccipital.
Fig. 14 in Cranial Anatomy Of Kryptobaatar Dashzevegi (Mammalia, Multituberculata), And Its Bearing On The Evolution Of Mammalian Characters
Fig. 14. Stereophotograph of the skull of Kryptobaatar dashzevegi PSSMAE 101 in ventral view with accompanying line drawing. Gray pattern represents matrix. Abbreviations: ali alisphenoid; ax axis; azr anterior zygomatic ridge; bo basioccipital; cp crista parotica; fhy fragment of hyoid arch; foi foramen ovale inferium; fv fenestra vestibuli; gl glenoid fossa; i3a alveolus for third upper incisor; inf incisive foramen; iof infraorbital foramen; jf jugular fossa; mpf minor palatine foramen; msy mandibular symphysis; muf muscular facet; mx maxilla; oiof orbital aperture of infraorbital canal; P3 third upper premolar; pal palatine; pat postpalatine torus; pef perilymphatic foramen; pmx premaxilla; ptc posttemporal canal; ptca pterygoid canal; rvnf recess for vascular and nervous foramina (prootic canal, ventral ascending canal, canal for ramus inferior, and facial canal); sth stylohyal; tpmx thickenings of premaxilla; ttf tensor tympani fossa; vo vomer.
Fig. 12 in Cranial Anatomy Of Kryptobaatar Dashzevegi (Mammalia, Multituberculata), And Its Bearing On The Evolution Of Mammalian Characters
Fig. 12. Stereophotograph of the skull of Kryptobaatar dashzevegi PSSMAE 101 in left lateral view, with accompanying line drawing. Gray pattern represents matrix; parallel lines denote breakage Abbreviations: aar atlas arch; al anterior lamina; ano nasal notch; ef ethmoidal foramen; fr frontal; izr intermediate zygomatic ridge; maf masseteric fossa; mafo masseteric fovea; mf mental foramen; mx maxilla; na nasal; ocon occipital condyle; opf optic foramen; or orbitosphenoid; otc orbitotemporal canal; pa parietal; pmx premaxilla; pop postorbital process (broken); ppr paroccipital process; ptc posttemporal canal; son supraorbital notch; spf sphenopalatine foramen; sq squamosal; sth stylohyal.
Fig. 8 in Cranial Anatomy Of Kryptobaatar Dashzevegi (Mammalia, Multituberculata), And Its Bearing On The Evolution Of Mammalian Characters
Fig. 8. Stereophotograph of the skull of Kryptobaatar dashzevegi PSSMAE 101 in dorsal view with accompanying line drawing. Gray pattern represents matrix; parallel lines denote breakage. Abbreviations: al anterior lamina; ano nasal notch; con (mandibular) condyle; cor coronoid process; exoc exoccipital; fdac foramen of dorsal ascending canal; fr frontal; frt foramen for ramus temporalis; ju jugal; juf jugal facet; lac lacrimal; mx maxilla; na nasal; naf nasal foramen; pa parietal; pmx premaxilla sgf supraglenoid foramen; sq squamosal; sup supraoccipital.
Fig. 11 in Cranial Anatomy Of Kryptobaatar Dashzevegi (Mammalia, Multituberculata), And Its Bearing On The Evolution Of Mammalian Characters
Fig. 11. Stereophotograph of the skull of Kryptobaatar dashzevegi PSSMAE 113 in right lateral view.
Fig. 3 in Cranial Anatomy Of Kryptobaatar Dashzevegi (Mammalia, Multituberculata), And Its Bearing On The Evolution Of Mammalian Characters
Fig. 3. The skull and lower jaws of Kryptobaatar dashzevegi PSSMAE 101 in (clockwise from upper left) dorsal, ventral, anterior, posterior, right lateral, and left lateral views.
Fig. 6 in Cranial Anatomy Of Kryptobaatar Dashzevegi (Mammalia, Multituberculata), And Its Bearing On The Evolution Of Mammalian Characters
Fig. 6. Stereophotograph of the skull and lower jaws of Kryptobaatar dashzevegi PSSMAE 101 in anterior view, with accompanying line drawing. Gray pattern represents matrix; parallel lines denote breakage. Abbreviations: con (mandibular) condyle; fr frontal; gl glenoid fossa; iof infraorbital foramen mf mental foramen; mx maxilla; na nasal; pmx premaxilla; sq squamosal.
Fig. 1 in Cranial Anatomy Of Kryptobaatar Dashzevegi (Mammalia, Multituberculata), And Its Bearing On The Evolution Of Mammalian Characters
Fig. 1. Map of Mongolia (A) with inset of southcentral region (B) indicating the major fossil localities visited by the joint expeditions of the Mongolian Academy of Sciences and the American Museum of Natural History. The specimens of Kryptobaatar dashzevegi described here come from Ukhaa Tolgod and Tugrugeen Shireh.
Figure 6 in The cranial anatomy of Kombuisia frerensis Hotton (Synapsida, Dicynodontia) and a new phylogeny of anomodont therapsids
Figure 6. Time-calibrated strict consensus cladogram, depicting the survivorship of multiple anomodont lineages across the Permian–Triassic boundary. The stratigraphic ranges of the included anomodont species are plotted on a stratigraphic column that uses the well-established Permian–Triassic assemblage zones from the South African Karoo Basin (Rubidge, 1995) and the international marine stages (Gradstein et al., 2004) as basis. Stratigraphic ranges of the South African taxa are taken from Rubidge (1995) and Angielczyk & Kurkin (2003a), with the addition of Lanthanostegus (Modesto et al., 2002, 2003c) and Colobodectes (Modesto et al., 2003b). The stratigraphic range of Emydops is extended to fit the maximal range as proposed by Angielczyk, Fröbisch & Smith (2005). The stratigraphic position of the holotypic and only specimen of Cistecephaloides boonstrai (Cluver, 1974) is here considered to be in the upper part of the Cistecephalus AZ (Kitching, 1977). Correlation and stratigraphic ranges of the non-South African anomodont taxa from Russia, Scotland and Tanzania are based on Benton & Walker (1985), Gay & Cruickshank (1999), Angielczyk & Kurkin (2003a), Angielczyk (2004), Golubev (2005) and Rubidge (2005). Solid bars represent the known stratigraphic ranges, whereas open and grey bars indicate ghost lineages. Grey bars indicate the ghost lineages of survivors that cross the Permian–Triassic boundary.
Figure 5 in The cranial anatomy of Kombuisia frerensis Hotton (Synapsida, Dicynodontia) and a new phylogeny of anomodont therapsids
Figure 5. Strict consensus cladogram of the six most parsimonious trees (332 steps; CI: 0.494; RI: 0.764; RC: 0.377). Italic numbers indicate bootstrap values above 50% and bold numbers indicate Bremer decay values. No Bremer decay values are shown for nodes that collapse at one extra step. Selected clade names are labelled and discussed in the text.
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