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276 results for “Myotis myotis”
Fig. 3 in The natural interaction between Myotis nigricans (Schinz, 1821) and its trematodes: A histopathological analysis
Fig. 3. The non-parasitized intestine of Myotis nigricans. (A) and (B) Longitudinal sections of the jejunum. Details of voluminous, long, and sinuous villi and intestinal glands. (C) Intestinal glands and crypts open at the base of the villi, involved by the periglandular capillary plexus. (D) Intestinal glands and submucosa with circular muscular layers and longitudinal muscular layer. (E) Detail of villus epithelium, showing cylindrical simple, goblet cells and quiliferous vessel. (F) and (G) The ileum segment with numerous Peyer patches located between the submucosa and the intestinal glands. (H) A segment of the ilium with the view of vessels and circular and longitudinal muscle layers. Abbreviations and symbols: (Cml) Circular muscular layer; (Cr) cortical region; (Gc) Globet cells; (Ig) intestinal glands; (Lml), longitudinal muscle layer; (Pp) Payer patches; (Qv) quiliferous vessel; (Vi) Villi; (*) opening of intestinal glands.
Fig. 1 in The natural interaction between Myotis nigricans (Schinz, 1821) and its trematodes: A histopathological analysis
Fig. 1. Histological features of the non-parasitized liver of Myotis nigricans. (A) Detail of hepatic lobes, with a view to the centrilobular vein, a segment of the portal triad, and portal vein. (B) Centrilobular vein surrounded by sinusoids capillaries and rows of hepatocytes. (C) Hepatic capsule formed by cubic cells. (D) Hepatocytes with basophilic cytoplasm, few granulations vary in appearance from translucent to basophilic. Abbreviations: (Cv), Centrilobular vein, (Pv), Portal vein, (arrowhead), hepatocytes.
Fig. 2 in The natural interaction between Myotis nigricans (Schinz, 1821) and its trematodes: A histopathological analysis
Fig. 2. The non-parasitized gallbladder of Myotis nigricans. (A) Detail of the gallbladder mucosa epithelium formed by simple epithelium that varies from cubic to cylindrical. (B) Folds and pleats in gallbladder with mucosa epithelium. (C) General view of gallbladder isthmus. (D) Details of gallbladder isthmus and bile duct segment.
Fig. 3 in Myotis albescens (Chiroptera: Vespertilionidae)
Fig. 3.—Geographic distribution of Myotis albescens. Map redrawn from Wilson (2008) with modifications.
Fig. 2 in Myotis albescens (Chiroptera: Vespertilionidae)
Fig. 2.—Dorsal, ventral, and lateral views of skull and lateral view of mandible of an adult male Myotis albescens (OMNH [Sam Noble Oklahoma Museum of Natural History] 34543) from Aguas Calientes, Santa Bárbara Department, Jujuy Province, Argentina. Greatest length of skull is 13.67 mm.
Fig. 1 in Myotis albescens (Chiroptera: Vespertilionidae)
Fig. 1.—An adult male Myotis albescens from Brazil. Used with permission of the photographer Maricélio de Medeiros Guimãres (www.naturae.com.br).
Fig. 2 in Myotis yumanensis (Chiroptera: Vespertilionidae)
Fig. 2.—Dorsal, ventral, and lateral views of skull and lateral view of mandible of an adult female Myotis yumanensis (OMNH [Sam Noble Museum] 15766) from 2.5 miles N, 1 mile E Kenton, Cimarron Co., Oklahoma, United States. Greatest length of skull is 13.95 mm. Used with permission of the photographer M. A. Mares.
FIG. 9 in Review of Myotis (Chiroptera, Vespertilionidae) from northern South America, including description of a new species
FIG. 9. Map of northeastern Colombia and northern Venezuela showing known distribution of Myotis handleyi (stars).
FIG. 8 in Review of Myotis (Chiroptera, Vespertilionidae) from northern South America, including description of a new species
FIG. 8. Dorsal, ventral and lateral views (scale bar = 5 mm) of the cranium and lateral view of the mandible of the holotype of Myotis handleyi (USNM 370932). See table 5 for measurements.
FIG. 7 in Review of Myotis (Chiroptera, Vespertilionidae) from northern South America, including description of a new species
FIG. 7. Dorsal (A) and ventral (B) views of the skin of the holotype of Myotis handleyi (USNM 370932; scale bar = 10 mm). On the right side enlarged views of the dorsal (C) and ventral (D) pelage, highlighting the contrast between bases and tips. See table 5 for measurements.
FIG. 6 in Review of Myotis (Chiroptera, Vespertilionidae) from northern South America, including description of a new species
FIG. 6. Dorsal (A–C) and ventral (D–F) views of skins of specimens from upper elevations in Venezuela (A and D—USNM 370891; subsequently assigned to M. handleyi), and Colombia (B and E—AMNH 461860; subsequently assigned to M. caucensis), and lower elevation in Venezuela (C and F—USNM 373925; M. nigricans). See table 4 for measurements.
FIG. 5 in Review of Myotis (Chiroptera, Vespertilionidae) from northern South America, including description of a new species
FIG. 5. Dorsal, ventral, and lateral views (scale bar = 5 mm) of skulls of specimens from A, upper elevations in Venezuela (USNM 370891; subsequently assigned to M. handleyi); B, Colombia (AMNH 32787; subsequently assigned to M. caucensis); and C, lower elevation in Venezuela (USNM 373929; M. nigricans). See table 4 for measurements.
FIG. 3 in Review of Myotis (Chiroptera, Vespertilionidae) from northern South America, including description of a new species
FIG. 3. UPGMA dendrogram of Mahalanobis distances between samples analyzed (localities in parentheses) in the present study. See methodology for description of localities.
FIG. 4. A in Review of Myotis (Chiroptera, Vespertilionidae) from northern South America, including description of a new species
FIG. 4. A. Plots of multivariate individual scores in the first two discriminant functions. B. Corresponding vector correlations (> ±0.29) of craniometric characters with the first two eigenvectors. Samples: (1) Valle del Cauca, Colombia, 975 m; (2) Nariño, Colombia, 250 m; (3) Carabobo, Venezuela, 25 m; (4) Amazonas, Venezuela, ca. 100 m; (5) Monagas, Venezuela, 1190 m; (6) Aragua, Venezuela, ca. 1100 m; and (7) Distrito Federal, Venezuela, ca. 2100 m. See Materials and Methods for variable abbreviations.
FIG. 1 in Review of Myotis (Chiroptera, Vespertilionidae) from northern South America, including description of a new species
FIG. 1. Map of part of South America illustrating localities of Myotis nigricans samples (sensu LaVal, 1973) used in morphometric analyses. Samples: (1) Cochabamba, Bolivia, 2000 m; (2) Mato Grosso do Sul, Brazil, 10 m; (3) Paraná, Brazil, sea level; (4) Seropédica, Rio de Janeiro, Brazil, 33 m; (5) Tinguá, Rio de Janeiro, Brazil, 33–100 m; (6) São Paulo, Brazil, sea level; (7) Valle del Cauca, Colombia, 975 m; (8) Nariño, Colombia, 250 m; (9) Esmeraldas, Ecuador, 18 m; (10) Zamora-Chinchipe, Ecuador, ca. 850–915 m; (11) Amazonas, Peru, 665 m; (12) Amazonas, Venezuela, ca. 100 m; (13) Aragua, Venezuela, ca. 1100 m; (14) Carabobo, Venezuela, 25 m; (15) Distrito Federal, Venezuela, ca. 2100 m; and (16) Monagas, Venezuela, 1190 m.
Text-fig. 7. a–e, h, i – Myotis cf. reductus: a – BSP 1974 XIV 1209, left M2, Erkertshofen 2, occlusal view; b – BSP 1974 XIV 1208, right M1, Erkertshofen 2, occlusal view; c – left maxillary fragment with M1–2, NMA P28/0345, Petersbuch 28, ventral view; d – BSP 1974 XIV 1199, left C inf., Erkertshofen 2, lingual (c1) and occlusal (c2) views; e – SNSB-BSPG 1962 XIX 4200, left mnd without teeth; Erkertshofen 1, occlusal (e1) and lateral (e2) views; h – BSP 1974 XIV 1202, left p4, Erkertshofen 2, occlusal view; i – PCMRCh87, right m3, Petersbuch 2, occlusal view; f, g – cf. Myotis sp., right C inf., Petersbuch 2, lingual view: f – PCMRCh25, g – PCMRCh88; j – M. aff. reductus, NMA P62/0331, right dentary fragment with p4–m1, Petersbuch 62, occlusal view. in The Early Miocene Bats (Chiroptera, Mammalia) From The Karstic Sites Of Erkertshofen And Petersbuch 2 (Southern Germany)
Text-fig. 7. a–e, h, i – Myotis cf. reductus: a – BSP 1974 XIV 1209, left M2, Erkertshofen 2, occlusal view; b – BSP 1974 XIV 1208, right M1, Erkertshofen 2, occlusal view; c – left maxillary fragment with M1–2, NMA P28/0345, Petersbuch 28, ventral view; d – BSP 1974 XIV 1199, left C inf., Erkertshofen 2, lingual (c1) and occlusal (c2) views; e – SNSB-BSPG 1962 XIX 4200, left mnd without teeth; Erkertshofen 1, occlusal (e1) and lateral (e2) views; h – BSP 1974 XIV 1202, left p4, Erkertshofen 2, occlusal view; i – PCMRCh87, right m3, Petersbuch 2, occlusal view; f, g – cf. Myotis sp., right C inf., Petersbuch 2, lingual view: f – PCMRCh25, g – PCMRCh88; j – M. aff. reductus, NMA P62/0331, right dentary fragment with p4–m1, Petersbuch 62, occlusal view.
FIG. 14. — Myotis blythii longicaninus n in Pliocene small mammals (Mammalia, Lipotyphla, Chiroptera, Lagomorpha, Rodentia) from Muselievo (North Bulgaria)
FIG. 14. — Myotis blythii longicaninus n. ssp.; A, right upper canine, Ms364-1, occlusal view; I, the same, buccal view; J, the same, lingual view; B, left P4, Ms365-1, occlusal view; C, right M1, Ms366-1, occlusal view; D, left M2, Ms367-1, occlusal view; E, right M3, Ms368, occlusal view; F, right fragment of mandible with p4, Ms352 (holotype), occlusal view; G, the same, labial view; H, the same, lingual view. Scale bar: 1 mm.
FIG. 15. — Myotis blythii longicaninus n in Pliocene small mammals (Mammalia, Lipotyphla, Chiroptera, Lagomorpha, Rodentia) from Muselievo (North Bulgaria)
FIG. 15. — Myotis blythii longicaninus n. ssp.; A, right fragment of mandible with m2-m3, Ms350, occlusal view; B, the same, labial view; C, the same, lingual view; D, left lower canine, Ms370-1, buccal view; E, the same, occlusal view; F, the same, lingual view; G, left m1, Ms372-1, lingual view; H, the same, occlusal view; I, the same, buccal view. Scale bar: 1 mm.
Text-fig. 9. Bats from Late Miocene deposits, North Caucasus. a – Myotis sp. 1, right M2, GIN-1143-411; b – Myotis sp. 1, M2, dex, GIN-1143-412; c – Myotis sp. 2, m1 or m2, dex, GIN-1144- 311; e – Myotis sp. 2, M2, dex, GIN-1144-312; d – Eptesicus sp., M1 or M2, sin, GIN-1143-413. a, b, d – Volchaya Balka; c, e – Gaverdovsky. in Late Miocene (Early Turolian) Vertebrate Faunas And Associated Biotic Record Of The Northern Caucasus: Geology, Taxonomy, Palaeoenvironment, Biochronology
Text-fig. 9. Bats from Late Miocene deposits, North Caucasus. a – Myotis sp. 1, right M2, GIN-1143-411; b – Myotis sp. 1, M2, dex, GIN-1143-412; c – Myotis sp. 2, m1 or m2, dex, GIN-1144- 311; e – Myotis sp. 2, M2, dex, GIN-1144-312; d – Eptesicus sp., M1 or M2, sin, GIN-1143-413. a, b, d – Volchaya Balka; c, e – Gaverdovsky.
Data and code for: Roost selection by male northern long-eared bats (Myotis septentrionalis) in a managed fire-adapted forest
<p>Data and code for: Roost selection by male northern long-eared bats (<em>Myotis septentrionalis</em>) in a managed fire-adapted forest</p>
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.