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4,028 results for “Mammalia”

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Fig. 15. A in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites

Fig. 15. A. Gimenez et al.'s (1996; redrawn from fig. 3) cladogram depicting relationships among nectar feeders based on lingual characters. B. Gimenez et al.'s (1996; redrawn from fig. 4) cladogram depicting relationships among nectar feeders based on lingual and hyoid characters.

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Fig. 41 in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites

Fig. 41. Semidiagrammatic illustrations of the dorsal brain in three phyllostomids illustrating the range of variation in coverage of the inferior colliculi (ic) by the cerebellar vermis. A. Mimon crenulatum. B. Mesophylla macconnelli. C. Lichonycteris obscura (drawn from McDaniel, 1976: figs. 2, 20, 42).

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Fig. 46 in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites

Fig. 46. Results of a heuristic search of 17 hyoid characters for 27 taxa. The tree shown here is a strict consensus of 24 most parsimonious trees, each of 40 steps (CI = 0.625, RI = 0.893)

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Fig. 6 in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites

Fig. 6. Gardner's (1977a; redrawn from fig. 8) ''arbitrarily derived'' tree of phyllostomid relationships based on chromosomal similarities. Asterisks indicate taxa that were karyotypically unknown and whose placement was conjectural.

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Fig. 44 in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites

Fig. 44. Results of a heuristic search of 38 pelage and integument characters for all 63 taxa. The tree shown here is a strict consensus of more than 30,000 most parsimonious trees, each of 183 steps (CI = 0.503, RI = 0.789).

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Fig. 40 in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites

Fig. 40. Diagram illustrating the two different types of attachment of the ovary to the uterus via the ovarian ligament: A. to the external oviductal entry, or B. to the lateral uterine wall (redrawn from Hood and Smith, 1983: fig. 15).

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Fig. 21 in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites

Fig. 21. Anterior view of the noseleaf in A. Carollia perspicillata (AMNH 266144) B. Uroderma bilobatum (AMNH 268564) C. Ariteus flavescens (AMNH 214944). Scale bar = 2 mm.

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Fig. 32 in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites

Fig. 32. Dorsal surface of the tongue in selected noctilionoids. A. Pteronotus davyi (AMNH 175276). Insets from top to bottom: basketlike papilla, basin­shaped medial posterior mechanical papilla, lateral circumvallate papilla. B. Noctilio leporinus (AMNH 175534) C. Desmodus rotundus (AMNH 210962). Scale bar = 2 mm.

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Fig. 28 in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites

Fig. 28. Occlusal view of M1­M3 in selected phyllostomids. A. Desmodus rotundus (AMNH 174303). Only M1 is present. B. Chrotopterus auritus (AMNH 267852). C. Brachyphylla cavernarum (AMNH 208181). D. Phyllonycteris poeyi (USNM 103542). E. Monophyllus redmani (AMNH 236662). F. Artibeus jamaicensis (AMNH 266331). Scale bar = 1 mm.

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Fig. 33 in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites

Fig. 33. Dorsal surface of the tongue in selected phyllostomids. Lowest inset is of a lateral circumvallate papilla. A. Phyllonycteris poeyi (AMNH 23762). B. Glossophaga soricina (AMNH 237911) Lonchophylla thomasi (AMNH 266107). Upper inset: basketlike papilla. Scale bar = 2 mm.

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Fig. 1 in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites

Fig. 1. The pace of discovery of currently recognized phyllostomid taxa described from 1750 to 1993. A. Genera. B. Species. There has been a steady decrease in the rate of description of new genera since the early 1800s, but the pace of description of new species has not declined at the same rate. We used dates of publication from Koopman (1993).

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Fig. 39 in Cranial Anatomy Of Kryptobaatar Dashzevegi (Mammalia, Multituberculata), And Its Bearing On The Evolution Of Mammalian Characters

Fig. 39. Cladogram of phylogenetic relationships within Mammaliaformes based on analyses by Rougier et al. (1996a) and Hu et al. (1997).

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Fig. 38 in Cranial Anatomy Of Kryptobaatar Dashzevegi (Mammalia, Multituberculata), And Its Bearing On The Evolution Of Mammalian Characters

Fig. 38. Cladogram of phylogenetic relationships within Multituberculata (a), based on the analysis in Rougier et al. (1997), with an enlargement of the tree section containing Kryptobaatar and its nearest relatives, all of which are Mongolian Late Cretaceous taxa with the exception of Pentacosmodon from the North American Paleocene (b). A similar Mongolian Late Cretaceous grouping was called Djadochtatheria by Kielan­Jaworowska and Hurum (1997). In their phylogeny, Kryptobaatar is in a clade Djadochtatheriidae, with Djadochtatherium, Catopsbaatar, and Tombaatar.

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Fig. 35 in Cranial Anatomy Of Kryptobaatar Dashzevegi (Mammalia, Multituberculata), And Its Bearing On The Evolution Of Mammalian Characters

Fig. 35. Reconstruction of the skull of Kryptobaatar dashzevegi in posterior view. Abbreviations bo basioccipital; exoc exoccipital; fr frontal; lac lacrimal; man mandible; pa parietal; pet petrosal; sq squamosal; sup supraoccipital.

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Fig. 36 in Cranial Anatomy Of Kryptobaatar Dashzevegi (Mammalia, Multituberculata), And Its Bearing On The Evolution Of Mammalian Characters

Fig. 36. Reconstruction of the skull of Kryptobaatar dashzevegi in left lateral view (A) with the major cranial arteries (white outline) and veins (black) added (B). Zygomatic arch is cut to show vessels in the floor of the orbit. Vessels in shadow pass through intramural canals, with the exception of the part of the ramus superior immediately rostral to the dorsalmost ramus temporalis branch which is endocranial. Abbreviations: adm arteria diploëtica magna (and accompanying vein); ea ethmoidal artery (and accompanying vein); ef ethmoidal foramen; fbu foramen buccinatorium; fdac foramen of dorsal ascending canal; fdv foramen for frontal diploic vein; fma foramen masticatorium; frt foramen for ramus temporalis; ioa infraorbital artery (and accompanying vein); iof infraorbital foramen; lhv lateral head vein; mef metoptic foramen (which transmitted pituito­orbital vein); oa ophthalmic artery; oca occipital artery (and accompanying vein); ompf orbital opening of minor palatine foramen; opf optic foramen; otc orbitotemporal canal; psa proximal stapedial artery; ptc posttemporal canal; ptv posttrigeminal vein; ri ramus inferior; rio ramus infraorbitalis (and accompanying vein); rm ramus mandibularis (and accompanying vein); rs ramus superior (and accompanying vein); rso ramus supraorbitalis (and accompanying vein); rt ramus temporalis (and accompanying vein); sgf supraglenoid foramen; son supraorbital notch; spa sphenopalatine artery (and accompanying vein); spf sphenopalatine foramen sphf sphenorbital fissure; tc transverse canal; tcv transverse canal vein.

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Fig. 32 in Cranial Anatomy Of Kryptobaatar Dashzevegi (Mammalia, Multituberculata), And Its Bearing On The Evolution Of Mammalian Characters

Fig. 32. Reconstruction of the skull of Kryptobaatar dashzevegi in dorsal view. Abbreviations: al anterior lamina; exoc exoccipital; fr frontal; ju jugal; lac lacrimal; mx maxilla; na nasal; pa parietal pmx premaxilla; sq squamosal; sup supraoccipital.

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Fig. 34 in Cranial Anatomy Of Kryptobaatar Dashzevegi (Mammalia, Multituberculata), And Its Bearing On The Evolution Of Mammalian Characters

Fig. 34. Reconstruction of the skull of Kryptobaatar dashzevegi in ventral view. Abbreviations: al anterior lamina; ali alisphenoid; bo basioccipital; bs basisphenoid; exoc exoccipital; fr frontal; mx maxilla; pal palatine; pet petrosal; pmx premaxilla; pt pterygoid; sq squamosal; vo vomer.

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Fig. 37 in Cranial Anatomy Of Kryptobaatar Dashzevegi (Mammalia, Multituberculata), And Its Bearing On The Evolution Of Mammalian Characters

Fig. 37. Reconstruction of the right basicranium of Kryptobaatar dashzevegi in ventral view (A) with the major cranial arteries (white outline) and veins (black) added (B). Abbreviations: adm arteria diploëtica magna (and accompanying vein); ali alisphenoid; aptca artery of pterygoid canal; cp crista parotica; ctpp caudal tympanic process of petrosal; er epitympanic recess; fma foramen masticatorium; foi foramen ovale inferium; fv fenestra vestibuli; gica groove for internal carotid artery; gl glenoid fossa; gpsa groove for proximal stapedial artery; ica internal carotid artery; jf jugular fossa; jfo jugular foramen; lhv lateral head vein; lpt lateral pterygopalatine trough;

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Fig. 31 in Cranial Anatomy Of Kryptobaatar Dashzevegi (Mammalia, Multituberculata), And Its Bearing On The Evolution Of Mammalian Characters

Fig. 31. Reconstruction of the skull of Kryptobaatar dashzevegi in anterior view. Abbreviations: fr frontal; lac lacrimal; man mandible; mx maxilla; na nasal; pmx premaxilla; sq squamosal.

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Fig. 27 in Cranial Anatomy Of Kryptobaatar Dashzevegi (Mammalia, Multituberculata), And Its Bearing On The Evolution Of Mammalian Characters

Fig. 27. Reconstruction of the floor of the endocranium of Kryptobaatar dashzevegi. Parallel lines represent the cut edge of the braincase. Abbreviations: al anterior lamina; bo basioccipital; ce cavum epiptericum; ds dorsum sellae; exoc exoccipital; fica foramen for internal carotid artery; fpv foramen for pituito­orbital vein; fr frontal; hf hypophyseal fossa; iam internal acoustic meatus; jfo jugular foramen; jsp jugum sphenoidale; mef metoptic foramen; ocon occipital condyle; opf optic foramen; or orbitosphenoid; pa parietal; pan pila antotica; pet petrosal; pm pila metoptica; pop postorbital process prc prootic canal; sf subarcuate fossa; son supraorbital notch; sphf sphenorbital fissure; sq squamosal sup supraoccipital.

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