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Fig. 31. A. Superficial and B in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites
Fig. 31. A. Superficial and B. deep views of the hyoid musculature of Glossophaga soricina. C. Superficial and D. deep views of the hyoid musculature of Vampyressa pusilla (redrawn from Griffiths 1982: figs. 3, 4, 18, 19).
Fig. 30 in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites
Fig. 30. Diagramatic representation of the general conditions of the occipitopollicalus muscle complex with a key below (redrawn from Strickler, 1978: fig. 31). The solid line represents tendon, the dashed line is muscle, and the wavy line is elastic tissue. A. Condition in most phyllostomines, glossophagines, Carollia, and many stenodermatines. B. Condition in Phyllostomus and mormoopids. C. Condition in desmodontines, Artibeus, Chiroderma, and Noctilio.
Fig. 27 in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites
Fig. 27. Anterior view of the upper central and lateral incisors in A. Desmodus rotundus (AMNH 174303). Desmodus has only one pair of incisors. B. Phyllostomus hastatus (AMNH 267905). C. Glossophaga soricina (AMNH 209354). D. Artibeus jamaicensis (AMNH 266337). E. Ametrida centurio (AMNH 187225). F. Centurio senex (AMNH 256846) G. Stenoderma rufum (AMNH 208982). Scale bar = 5 mm.
Fig. 23 in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites
Fig. 23. Anterior views of the chins of representative phyllostomids and outgroup taxa. A. Desmodus rotundus (AMNH 267503). B. Phyllostomus hastatus (AMNH 202308). C. Lonchophylla robusta (AMNH 267452). D. Choeroniscus intermedius (AMNH 266122). E. Rhinophylla pumilio (AMNH 267163). F. Uroderma bilobatum (AMNH 268564). G. Pteronotus davyi (AMNH 214413). Scale bar = 1 mm.
Fig. 24 in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites
Fig. 24. Ventral view of the palate and mesopterygoid fossa in selected taxa illustrating palate length and shape of the palatal emargination. A. Carollia perspicillata (AMNH 130722) B. Pygoderma bilobatum (AMNH 248339) C. Sphaeronycteris toxophyllum (AMNH 209741) D. Stenoderma rufum (AMNH 208982) E. Ametrida centurio (AMNH 187224). Scale bar = 5 mm.
Fig. 22 in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites
Fig. 22. Anterodorsal view of the sella in A. Vampyrum spectrum (AMNH 202292) and B. Lonchorhina aurita (AMNH 199218). Note the position of this structure relative to the nostrils in both taxa Scale bar = 5 mm.
Fig. 38 in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites
Fig. 38. Closeup dorsal views of the clusters of horny papillae, including central, anterior, flanking and posterior, in selected phyllostomids. A. Vampyrum spectrum (AMNH 202292). B. Lonchorhina aurita (AMNH 149218). C. Phyllostomus hastatus (AMNH 233176). D. Erophylla sezekorni (AMNH 186977). E. Platalina genovensium (AMNH 257108). F. Glossophaga soricina (AMNH 214417). G. Ametrida centurio (AMNH 267375). Scale bar = 1 mm.
Fig. 20 in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites
Fig. 20. Anterior view of the noseleaf in A. Erophylla sezekorni (AMNH 194202) B. Lonchophylla robusta (AMNH 267452) C. Choeroniscus intermedius (AMNH 266122). Scale bar = 5 mm.
Fig. 26 in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites
Fig. 26. Lateral view of skull contrasting the gently sloping rostrum of A. Mesophylla macconnelli (AMNH 268539) to the more foreshortened ''apelike'' rostrum in B. Ametrida centurio (AMNH 267274).
Fig. 16 in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites
Fig. 16. Magnified views (×100) of plastic impressions of hair shafts in the outgroup taxon Mormoops and two phyllostomids. The detail of the basal bulb is at 430× magnification and represents a ''typical basal bulb'' (Benedict, 1957: plate 24l) of the kind found in Desmodus (the drawing is of Rhinolophus). Note the ''alternate annular'' arrangement of the scales in Lonchorhina (see character 3; drawn after Benedict, 1957: plates 24l, 29v, 30a, v).
Fig. 34 in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites
Fig. 34. Dorsal surface of the tongue in selected phyllostomids. Lowest inset is of a lateral circumvallate papilla. A. Phyllostomus hastatus (AMNH 233176). Upper inset: basketlike papilla. B. Uroderma bilobatum (AMNH 171294). C. Ametrida centurio (AMNH 247645). Scale bar = 2 mm.
Fig. 11 in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites
Fig. 11. Consensus tree from Honeycutt and Sarich (1987a; redrawn from fig. 3) based on immunological, chromosomal, and morphological data.
Fig. 12. A in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites
Fig. 12. A. Hypothesis of stenodermatine generic relationships proposed by Owen (1987) based on his study of continuous and discrete craniodental and external characters (redrawn from Owen, 1987: fig. 17). B. Result of Owen's (1991; redrawn from fig. 1) study designed to clarify relationships among Dermanura, Enchisthenes, and Koopmania, which was based on a reanalysis of selected characters from Owen (1987). C. Lim's (1993; redrawn from fig. 6) ''working hypothesis'' of stenodermatine relationships using discrete craniodental and external characters. Note that Artibeus includes Dermanura, Enchisthenes, and Koopmania. D. Lim's (1993; redrawn after fig. 3) reanalysis of Owen's (1991) data set.
Fig. 8 in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites
Fig. 8. Hood and Smith's (1982; redrawn from fig. 5) hypothesis of higherlevel relationships among phyllostomid bats based on morphology of the female reproductive tract.
Fig. 42 in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites
Fig. 42. Diagramatic dorsal view (left) and longitudinal section of one hemisphere (right) of the chiropteran brain illustrating the progressive coverage of the median longitudinal fissure and inferior colliculi (ic). A. Complete exposure of the median longitudinal fissure and inferior colliculi. B. Partial coverage of both the fissure and inferior colliculi. C. Complete coverage of the fissure and colliculi Note that the cerebellar vermis covers the inferior colliculi, but the relationship of the inferior colliculi to each other does not change (redrawn from Schober and Brauer, 1974: fig. 99)
Fig. 9 in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites
Fig. 9. Pierson's (1986; redrawn after fig. 35) proposed phylogeny of phyllostomid relationships based on transferrin immunology. This tree does not include all the taxa used by Pierson (1986) see the text for discussion of additional relationships. Asterisks indicate taxa for which antisera were unavailable.
Fig. 14 in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites
Fig. 14. Gimenez (1993) used the topology of Baker et al. (1989) to partition her analyses of lingual morphology. A. Cladogram of relationships from Gimenez's (1993; redrawn from fig. 22) analysis of desmodontines, vampyrines, Macrotus, Micronycteris, and Phyllostominae. B. Gimenez's (1993; redrawn from fig. 24) proposed relationships among Stenodermatini genera. C. Gimenez's (1993; redrawn from fig. 25) proposed relationships among Glossophagini genera.
Fig. 7. A in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites
Fig. 7. A. Griffiths' (1982; redrawn from fig. 33) hypothesis of relationships among nectarfeeding phyllostomids based on hyoid and lingual data and additional consideration of karyological and dental data. The open base of the cladogram signifys the possible relationship of the lonchophylline clade to other nonnectarfeeding phyllostomids. Asterisks indicate taxa whose placement was based soley on craniodental data. B. Haiduk and Baker's (1982; redrawn from fig. 8) tree depicting relationships among nectarfeeding phyllostomids based on Gbanded chromosome morphology. C. Haiduk and Baker's (1982; redrawn from fig. 9) reanalysis of Griffiths' (1982) original data, without consideration of char
Fig. 25 in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites
Fig. 25. Ventral view of the basicranium in A. Glossophaga soricina and B. Choeroniscus intermedius. The difference in inflation of the pterygoids is indicated by the arrows. Redrawn from Phillips (1971: fig. 45).
Fig. 19 in Phylogeny Of Phyllostomid Bats (Mammalia: Chiroptera): Data From Diverse Morphological Systems, Sex Chromosomes, And Restriction Sites
Fig. 19. Anterior view of the noseleaf in A. Desmodus rotundus (AMNH 267503). B. Vampyrum spectrum (AMNH 202292). C. Phyllostomus hastatus (AMNH 233176). Scale bar = 5 mm.
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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.