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62 results for “Sirenia”
FIG. 15 in Mammalian Diversity And Matses Ethnomammalogy In Amazonian Peru Part 2: Xenarthra, Carnivora, Perissodactyla, Artiodactyla, And Sirenia
FIG. 15. Adult skulls of five sympatric mustelid species illustrating taxonomic differences in size and shape: Galictis vittata (A, MUSM 15157), Eira barbara (B, MUSM 13149), Mustela africana (C, AMNH 61813), Pteronura brasiliensis (D, AMNH 74431), Lontra longicaudis (E, AMNH 98589). All illustrated specimens are from eastern Peru, but only MUSM 13149 and MUSM 15157 are from the Yavarí-Ucayali interfluve.
FIG. 12 in Mammalian Diversity And Matses Ethnomammalogy In Amazonian Peru Part 2: Xenarthra, Carnivora, Perissodactyla, Artiodactyla, And Sirenia
FIG. 12. Dorsal views of adult skulls of Atelocynus microtis (A, AMNH 98639) and Speothos venaticus (B, AMNH 98560). Both specimens are from northeastern Peru, but neither is from the Yavarí-Ucayali interfluve.
FIG. 11 in Mammalian Diversity And Matses Ethnomammalogy In Amazonian Peru Part 2: Xenarthra, Carnivora, Perissodactyla, Artiodactyla, And Sirenia
FIG. 11. Matses girl with pet two-toed sloth on the upper Quebrada Chobayacu, ca. 1975 (photo by Steven Romanoff).
FIG. 7 in Mammalian Diversity And Matses Ethnomammalogy In Amazonian Peru Part 2: Xenarthra, Carnivora, Perissodactyla, Artiodactyla, And Sirenia
FIG. 7. Dorsal and ventral cranial views of Bradypus variegatus infuscatus (A, B, AMNH 76497) and B. v. variegatus (C, D, AMNH 95105). Both skulls lack the premaxillae, which are only loosely attached in bradypodid sloths and are often lost in specimen preparation. Cranial sutures are fused in AMNH 76497, whereas most sutures persist in AMNH 95105 (a younger adult); the conspicuous shape differences between these specimens, however, are not age dependent.
FIG. 4 in Mammalian Diversity And Matses Ethnomammalogy In Amazonian Peru Part 2: Xenarthra, Carnivora, Perissodactyla, Artiodactyla, And Sirenia
FIG. 4. Ventral view of posterior palate of Dasypus novemcinctus (A, AMNH 268229) and D. pastasae (B, AMNH 268228). In D. novemcintus the lateral margins of the palatines are rounded, whereas the lateral palatine margins are keeled in D. pastasae.
FIG. 3 in Mammalian Diversity And Matses Ethnomammalogy In Amazonian Peru Part 2: Xenarthra, Carnivora, Perissodactyla, Artiodactyla, And Sirenia
FIG. 3. Crania of four armadillo species that occur in the Yavarí-Ucayali interfluve, illustrating taxonomic differences in size and shape: Dasypus novemcinctus (A, AMNH 268229); D. pastasae (B, AMNH 268228); Cabassous unicinctus (C, AMNH 74113); Priodontes maximus (D, AMNH 93418). All illustrated specimens are adults, but AMNH 93418 is not from the Yavarí-Ucayali interfluve.
FIG. 1 in Mammalian Diversity And Matses Ethnomammalogy In Amazonian Peru Part 2: Xenarthra, Carnivora, Perissodactyla, Artiodactyla, And Sirenia
FIG. 1. The Yavarí-Ucayali interfluve (shaded) in relation to surrounding geographical features of western Amazonia.
FIG. 14 in Mammalian Diversity And Matses Ethnomammalogy In Amazonian Peru Part 2: Xenarthra, Carnivora, Perissodactyla, Artiodactyla, And Sirenia
FIG. 14. Adult skulls of five sympatric felid species, illustrating taxonomic differences in size and shape: Puma concolor (A, AMNH 73221), Pu. yagouaroundi (B, AMNH 215137), Leopardus wiedii (C, AMNH 74428), L. pardalis (D, MUSM 13150), Panthera onca (E, AMNH 98683). All illustrated specimens are from western South America, but only MUSM 13150 is from the Yavarí-Ucayali interfluve. Old adult male skulls of Pa. onca and L. pardalis can be substantially larger and proportionately wider than the young adults illustrated here.
FIG. 2 in Mammalian Diversity And Matses Ethnomammalogy In Amazonian Peru Part 2: Xenarthra, Carnivora, Perissodactyla, Artiodactyla, And Sirenia
FIG. 2. Faunal inventory sites and collecting localities within the Yavarí-Ucayali interfluve (see appendix 2 for geographic coordinates and other information). Inset: Faunal inventory sites in or near the Tamshiyacu- Tahuayo watersheds (EBQB = Estación Biológica Quebrada Blanco).
FIG. 10 in Mammalian Diversity And Matses Ethnomammalogy In Amazonian Peru Part 2: Xenarthra, Carnivora, Perissodactyla, Artiodactyla, And Sirenia
FIG. 10. Collecting localities of specimens of Bradypus variegatus examined for this report. See appendix 3 for geographic coordinates.
FIG. 17 in Mammalian Diversity And Matses Ethnomammalogy In Amazonian Peru Part 2: Xenarthra, Carnivora, Perissodactyla, Artiodactyla, And Sirenia
FIG. 17. Tapir trap, ready for action near Estirón, 2017 (photo by D.W.F.). A flexible pole (a) is tightly lashed to a tree with an epiphyte-stem binding (b); a sharp bamboo blade (c, partially sheathed with palm leaflets) is firmly attached to the other end, which is bent away from the tree and held in place by a camouflaged trigger mechanism (d). The trigger mechanism (close-up in figure 18) is released by a trip-wire (e).
FIG. 16 in Mammalian Diversity And Matses Ethnomammalogy In Amazonian Peru Part 2: Xenarthra, Carnivora, Perissodactyla, Artiodactyla, And Sirenia
FIG. 16. Adult skulls of four sympatric procyonid species, illustrating taxonomic differences in size and shape: Potos flavus (A, AMNH 268249), Bassaricyon alleni (B, AMNH 98709), Nasua nasua (C, AMNH 76642), Procyon cancrivorus (D, AMNH 94247). All illustrated crania are from western South America, but only AMNH 268249 is from the Yavarí-Ucayali interfluve.
FIG. 22 in Mammalian Diversity And Matses Ethnomammalogy In Amazonian Peru Part 2: Xenarthra, Carnivora, Perissodactyla, Artiodactyla, And Sirenia
FIG. 22. Red brocket trussed for carrying (photo by Steven Romanoff; upper Quebrada Chobayacu, ca. 1975). Here the tumpline is made from stems of the ayaşh epiphyte (Heteropsis spp. [Araceae]), a less desirable material for this purpose than the inner bark of the tote tree (see. fig. 19).
FIG. 20 in Mammalian Diversity And Matses Ethnomammalogy In Amazonian Peru Part 2: Xenarthra, Carnivora, Perissodactyla, Artiodactyla, And Sirenia
FIG. 20. Use of the tumpline for carrying white-lipped peccary carcass (photo by D.W.F.; Estirón, 2013).
FIG. 9 in Mammalian Diversity And Matses Ethnomammalogy In Amazonian Peru Part 2: Xenarthra, Carnivora, Perissodactyla, Artiodactyla, And Sirenia
FIG. 9. Dorsal views of mandibles of Bradypus variegatus infuscatus (A, AMNH 76497) and B. v. variegatus (B, AMNH 95105).
FIG. 13 in Mammalian Diversity And Matses Ethnomammalogy In Amazonian Peru Part 2: Xenarthra, Carnivora, Perissodactyla, Artiodactyla, And Sirenia
FIG. 13. Ventral views of adult skulls of Atelocynus microtis (A, AMNH 98639) and Speothos venaticus (B, AMNH 98560). Note the absence of M2 in Speothos.
FIG. 5. Matses woman butchering a in Mammalian Diversity And Matses Ethnomammalogy In Amazonian Peru Part 2: Xenarthra, Carnivora, Perissodactyla, Artiodactyla, And Sirenia
FIG. 5. Matses woman butchering a long-nosed armadillo (Dasypus sp.) on the upper Quebrada Chobayacu, ca. 1975 (photo by Steven Romanoff).
FIG. 8 in Mammalian Diversity And Matses Ethnomammalogy In Amazonian Peru Part 2: Xenarthra, Carnivora, Perissodactyla, Artiodactyla, And Sirenia
FIG. 8. Lateral views of skulls and mandibles of Bradypus variegatus infuscatus (A, AMNH 76497) and B. v. variegatus (B, AMNH 95105).
FIG. 6 in Mammalian Diversity And Matses Ethnomammalogy In Amazonian Peru Part 2: Xenarthra, Carnivora, Perissodactyla, Artiodactyla, And Sirenia
FIG. 6. Cut-away diagram illustrating how Dasypus pastasae is captured by Matses hunters (see text for explanation).
Figure2 in Analysis of Behavioural Patterns of the Amazonian Manatee, Trichechus manatus manatus, under Human Care (Mammalia:Sirenia)
Figure2. Distribution of respiratory frequencies (diving phases) for each manatee
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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