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Fig. 16 in Systematics Of Funnel-Eared Bats (Chiroptera: Natalidae)

Fig. 16. Geographic variation of Chilonatalus micropus. SAP: San Andrés and Providencia islands, Colombia (12 females, 24 males); Jam: Jamaica (19 females, 29 males); Hisp: Hispaniola (2 females, 4 males). Mean braincase breadth of the sample from Hispaniola was larger but the difference was not statistically significant. The sample from Jamaica was larger in most external dimensions (Tukey, P, 0.05), most notably in length of 5th metacarpal, length of penis, and length of natalid organ. Symbols: black dots, means; vertical gray bars, two standard deviations around the mean; vertical black line, two standard errors around the mean.

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Fig. 18 in Systematics Of Funnel-Eared Bats (Chiroptera: Natalidae)

Fig. 18. Morphometric variation among two island populations of Chilonatalus tumidifrons. Islands: Aba 5 Abaco (1 female, 19 males); Sal 5 San Salvador (12 females, 20 males). On average, males from Abaco had significantly deeper braincases than males from San Salvador (Tukey, P, 0.05). Symbols: black dots, means; vertical gray bars, two standard deviations around the mean; vertical black line, two standard errors around the mean.

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Fig. 21. A in Systematics Of Funnel-Eared Bats (Chiroptera: Natalidae)

Fig. 21. A, Plot of means (black dots), two standard deviations around the mean (gray bars), and two standard errors of the mean (vertical black lines) of greatest skull length of Natalus espiritosantensis from five geographic areas: (A) Bolivia (5 females, 6 males); (B) SW Brazil [Mato Grosso do Sul], Paraguay (4 females, 6 males); (C) SE Brazil (Espirito Santo, Goiás, Minas Gerais, São Paulo; 7 females, 7 males); (D) NE Brazil (Ceará, Bahia, Rio Grande do Norte; 4 females, 2 males); (E) N Brazil (Pará; 2 males). Although the observed mean greatest skull length of males from NE Brazil was smaller, the difference was not statistically significant (MANOVA, P. 0.01). B, Plot of canonical scores for 6 cranial measurements of N. espiritosantensis from five geographic areas (same as above). Variable loadings are listed in table 12. The lack of morphometric separation between distant geographic units of N. espiritosantensis is congruent with the morphological homogeneity of the species (see text).

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Fig. 38 in Systematics Of Funnel-Eared Bats (Chiroptera: Natalidae)

Fig. 38. Plot of wing-tip shape index vs. relative size of the uropatagium in 11 species of Natalidae. Five different ecomorphs are formed by the intersection of these two indices. The genus Natalus is the most diverse in flight morphology, with most species clustering in the intermediate wing tip and large uropatagium ecomorph and two outliers: (1) Natalus primus, which clusters with two species of Chilonatalus, and (2) Natalus lanatus, whose broad wing tip is unique among natalids.

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Fig. 17 in Systematics Of Funnel-Eared Bats (Chiroptera: Natalidae)

Fig. 17. Holotype of Chilonatalus tumidifrons (USNM 122024, male, San Salvador, the Bahamas). Scale bar 5 5 mm.

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Fig. 26 in Systematics Of Funnel-Eared Bats (Chiroptera: Natalidae)

Fig. 26. Sexual and geographic variation in four cranial dimensions of Natalus lanatus from the Atlantic and Pacific versants of the Mexican highlands. Geographic areas: A 5 Atlantic (Veracruz; 8 males, 5 females); P 5 Pacific (Chihuahua, Durango, Jalisco, Nayarit; 18 males, 19 females). Symbols: black dots, means; vertical gray bars, two standard deviations around the mean; vertical black line, two standard errors around the mean. Females have narrower breadths across canines in both geographic areas (MANOVA, P, 0.05) whereas individuals (regardless of sex) from the Atlantic versant have longer forearms and wider skulls than individuals from the Pacific versant (Tukey, P, 0.05).

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Fig. 12 in Systematics Of Funnel-Eared Bats (Chiroptera: Natalidae)

Fig. 12. Geographic variation of Nyctiellus lepidus. Cuba (N 5 17) includes specimens from La Habana, Isla de la Juventud, and Granma. The Bahamas (N 5 37) include specimens from Cat, Eleuthera, Little Exuma, Long. All specimens are male. Specimens from Cuba have slightly longer forearms but have narrower skulls and smaller rostra (Tukey, P, 0.05). Symbols: black dots, means; vertical gray bars, two standard deviations around the mean; vertical black line, two standard errors around the mean.

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Fig. 11 in Systematics Of Funnel-Eared Bats (Chiroptera: Natalidae)

Fig. 11. Geographic distribution of Nyctiellus lepidus (squares), Chilonatalus macer (upright triangles), C. micropus (circles), and C. tumidifrons (upside down triangles). Open symbols indicate localities represented by bone remains only. Names of localities are listed in appendix 1. Gray shading on land indicates relief, with darknes increasing with altitude.

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Fig. 9 in Systematics Of Funnel-Eared Bats (Chiroptera: Natalidae)

Fig. 9. Ventral view of the rostral end of the skull in two species of Natalus: A, Natalus mexicanus, showing I1 located rostral to I2; and B, Natalus stramineus, showing I1 at level with I2.

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Fig. 8 in Systematics Of Funnel-Eared Bats (Chiroptera: Natalidae)

Fig. 8. Ventral view of the posterior palate in two species of Natalus: A–B, Natalus tumidirostris, showing caudal margin of palate (a) always rostral to sphenorbital fissure (b); and C, Natalus espiritosantensis, showing caudal margin of palate caudal to sphenorbital fissure.

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Fig. 7 in Systematics Of Funnel-Eared Bats (Chiroptera: Natalidae)

Fig. 7. Dorsal view of the postorbital region and base of the rostrum in two species of Natalus: A, Natalus jamaicensis, showing parallel sides of postorbital region and concave maxilla; B, Natalus major, showing sides of postorbital region diverging anteriorly and convex maxilla.

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Fig. 6 in Systematics Of Funnel-Eared Bats (Chiroptera: Natalidae)

Fig. 6. Medial view of the feet in two species of Natalus: A, Natalus lanatus, showing ungual tufts; and B, Natalus mexicanus, showing no ungual tufts.

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Fig. 2 in Systematics Of Funnel-Eared Bats (Chiroptera: Natalidae)

Fig. 2. Distribution of the family Natalidae. Solid dots indicate collection localities of extant specimens; open dots indicate collection localities of bone remains (e.g., fossils and subfossils) only. The distribution of Natalidae spans the intertropics of the New World, being notably absent from the western Amazon basin, Puerto Rico, and the southern Lesser Antilles. Natalids are more common in the northern Neotropics. Light gray shading shows land above 600 m.

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Fig. 5 in Systematics Of Funnel-Eared Bats (Chiroptera: Natalidae)

Fig. 5. Schematic dorsal view of the heads of three natalids: A, Chilonatalus macer, showing large, elliptical natalid organ and straight lateral and medial margins of ear; B, Chilonatalus micropus, showing small, hemispherical natalid organ, straight medial margin of ear, and concave lateral margin of ear; and C, Natalus tumidirostris, showing wedge-shaped natalid organ and concave medial and lateral margin of ear.

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Fig. 3 in Systematics Of Funnel-Eared Bats (Chiroptera: Natalidae)

Fig. 3. Dorsal view of the left half of the uropatagium of two natalids: A, Nyctiellus lepidus, showing naked free margin of uropatagium; and B, Chilonatalus macer, showing fringe of hairs on free margin of uropatagium. Scale bar 5 20 mm.

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Fig. 37 in Systematics Of Funnel-Eared Bats (Chiroptera: Natalidae)

Fig. 37. Plot of canonical scores of forearm length and six cranial variables of Natalus tumidirostris from nine geographic areas: A 5 Colombia; B 5 Perijá (Zulia); C 5 Paraguaná; D 5 Curaçao; E 5 Continental Falcón; F 5 Coastal Cordillera; G 5 Guyana Shield (Bolívar); H 5 Sucre; I 5 Trinidad. Variable loadings are shown in table 23. Four areas contain morphometrically divergent populations: (1) Curaçao, characterized by bats of overall small size; (2) Paraguaná, characterized by bats with short forearms and large skulls; (3) Perijá, Characterized by bats with long forearms and small skulls; and (4) Trinidad, characterized by bats with overall large body size.

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Fig. 45 in Systematics Of Funnel-Eared Bats (Chiroptera: Natalidae)

Fig. 45. Relationship of penis length with length of the tibia in Natalidae. Familywide, penis length is not correlated with length of the tibia. Natalids, however, cluster into two groups that differ in the relative size of their natalid organ. *Includes four species of Natalus.

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Fig. 43 in Systematics Of Funnel-Eared Bats (Chiroptera: Natalidae)

Fig. 43. Distribution of relative penis length in 11 species of Natalidae. Black dots are means and vertical gray bars are two standard deviations around the mean. Most natalids have an intermediate-length penis but the genus Chilonatalus includes species with short or long penises.

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Fig. 29 in Systematics Of Funnel-Eared Bats (Chiroptera: Natalidae)

Fig. 29 (continued). B, Plot of canonical scores for seven cranial measurements of N. mexicanus from nine geographic areas (same as above, San Andrés and Providencia not included). Variable loadings are listed in table 17. Three most divergent groups are distinguished: (1) individuals from the Yucatan characterized by overall small skulls; (2) individuals from Isthmic Mexico, characterized by large skulls and long rostra; and (3) individuals from Panama, characterized by large skulls and short rostra.

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Fig. 4 in Systematics Of Funnel-Eared Bats (Chiroptera: Natalidae)

Fig. 4. Schematic lateral view of the heads of two natalids: A, Chilonatalus micropus, showing dermal outgrowths on the muzzle; and B, Natalus tumidirostris, showing lack of dermal outgrowths on the muzzle.

opencc-by-4.0Jun 2011View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

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behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

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electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

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behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record