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FIGURE 13 in A first account of Chyromyidae (Diptera: Acalyptratae) from continental Central and South America and some Caribbean Islands, with descriptions of new species
FIGURE 13. Tethysimyia litophila sp. nov,. A. holotype, male. B. same head dorsal view. C. same, hypopygium in situ, posterior view. D. paratype, female, abdomen, posterodorsal view.
FIGURE 12 in A first account of Chyromyidae (Diptera: Acalyptratae) from continental Central and South America and some Caribbean Islands, with descriptions of new species
FIGURE 12. Tethysimyia chilensis sp. nov., A. holotype, male after critical point drying. B. same abdomen, enlarged. C. paratype, male hypopygium, lateral. Abbreviations as in FIGUREs 2 and 8. Scale bar = 0.1mm.
FIGURE 21. Tethysimyia species D in A first account of Chyromyidae (Diptera: Acalyptratae) from continental Central and South America and some Caribbean Islands, with descriptions of new species
FIGURE 21. Tethysimyia species D, female, specimen from French Guiana. A. habitus, lateral view. B. head, anterodorsal view.
FIGURE 8 in A first account of Chyromyidae (Diptera: Acalyptratae) from continental Central and South America and some Caribbean Islands, with descriptions of new species
FIGURE 8. Tethysimyia bonairensis sp. nov. A. holotype, male habitus. B same, postabdomen in situ, enlarged, lateral view. C. female paratype, head, dorsal view.
FIGURE 7 in A first account of Chyromyidae (Diptera: Acalyptratae) from continental Central and South America and some Caribbean Islands, with descriptions of new species
FIGURE 7. Aphaniosoma sp. A. habitus male. B. postabdomen, lateral view, and apex of wing, enlarged.
FIGURE 4 in A first account of Chyromyidae (Diptera: Acalyptratae) from continental Central and South America and some Caribbean Islands, with descriptions of new species
FIGURE 4. Gymnochiromyia tropica sp. nov., A. holotype, male in alcohol. B. same, abdomen enlarged. C. same, after critical point drying. D. paratype female. E. same, dorsal view.
FIGURE 1 in An annotated checklist of recent non-marine Ostracoda (Crustacea) from Argentina, South America
FIGURE 1. Map of Argentina showing the number of recent non-marine ostracod species recorded per region. Regions' boundaries are outlined in black.
FIGURE 3 in A New Species of Eriosema (Leguminosae, Papilionoideae, Phaseoleae) from the savannas of northern South America
FIGURE 3. Leaflet indumentum of Eriosema parvifolium and morphologically most similar taxa. Eriosema crinitum var. crinitum: A) Indumentum on the adaxial surface. B) Indumentum of the abaxial surface. Eriosema crinitum var. stipulare: C) Indumentum of the adaxial surface. D) Indumentum of the abaxial surface. Eriosema parvifolium: E) Indumentum of the adaxial surface. F) Indumentum of the abaxial surface. Photos by Renan Pavan.
FIGURE 1. Eriosema parvifolium. A in A New Species of Eriosema (Leguminosae, Papilionoideae, Phaseoleae) from the savannas of northern South America
FIGURE 1. Eriosema parvifolium. A) Flowering branch. B) Connate stipules. C) Terminal leaflet. D) Indumentum of the abaxial surface of the leaflet. E) Petals: Standard, wing petals, and keel petals. F) Calyx opened out. G) Detail of the calyx indumentum; H) Staminal sheath (9+1). I) Stamens and Gynoecium. J) Gynoecium with densely sericeous ovary and glabrous style.
Figure 15 in Integrative taxonomy reveals hidden diversity in the Catharus fuscater (Passeriformes: Turdidae) complex in Central and South America
Figure 15. Ventral and dorsal views of the adult male plumages in C. b. berlepschi, C. b. caniceps, C. o. tenebris ssp. nov., C. b. nebulus ssp. nov., and C. mentalis. Photograph by M.R.H.
Figure 13 in Integrative taxonomy reveals hidden diversity in the Catharus fuscater (Passeriformes: Turdidae) complex in Central and South America
Figure 13. Dorsal and ventral views of the adult plumages in C. hellmayri, C. arcanus sp. nov., C. mirabilis, and C. f. sanctaemartae. Photograph by M.R.H.
Figure 12 in Integrative taxonomy reveals hidden diversity in the Catharus fuscater (Passeriformes: Turdidae) complex in Central and South America
Figure 12. Heat map showing frequency distributions of song contours within each population. Dyadic, triadic, and tetradic song contour names follow Fig. 5. Single-note songs are shown in the first column (A) and songs with five or six notes were combined into a single category, shown in the last column (FIVESIX). Open (white) circles denote song contours that were not detected in C. [f.] hellmayri, despite it having a much larger sample size than other taxa. Closed (black) circles denote contours that were only detected in one taxon.
Figure 11 in Integrative taxonomy reveals hidden diversity in the Catharus fuscater (Passeriformes: Turdidae) complex in Central and South America
Figure 11. Taxonomic variation in the structure of 'blurred calls', visualized in RavenPro 1.5 (Cornell University). The black line divides calls that modulate upward in frequency (left) and downward in frequency (right); both types were detected in C. [f.] berlepschi.
Figure 10 in Integrative taxonomy reveals hidden diversity in the Catharus fuscater (Passeriformes: Turdidae) complex in Central and South America
Figure 10. Taxonomic variation in the structure of 'contact calls', visualized in RavenPro 1.5 (Cornell University). No recording of contact calls in C. [f.] mentalis was available.
Figure 9 in Integrative taxonomy reveals hidden diversity in the Catharus fuscater (Passeriformes: Turdidae) complex in Central and South America
Figure 9. Taxonomic variation in the structure of 'punctuation calls', visualized in RavenPro 1.5 (Cornell University). We recognize three groups based on shared acoustic structure: (Type 1) pulsed/rippling: C. [f.] hellmayri, Undescribed 1, C. [f.] mirabilis; (Type 2) long/sinuous: C. [f.] sanctaemartae, C. [f.] fuscater, C. [f.] berplepschi; (Type 3) short/simple: Undescribed 2, C. [f.] opertaneus, Undescribed 3, C. [f.] mentalis.
Figure 8 in Integrative taxonomy reveals hidden diversity in the Catharus fuscater (Passeriformes: Turdidae) complex in Central and South America
Figure 8. Side view of polychromatic adult plumages in C. [f.] mentalis (from left to right): 1, FMNH 433742, a 'grey' male with enlarged testes; 2, FMNH 433738, a 'brown' male with enlarged testes; 3, FMNH 364458, a 'brown' male with testes not enlarged; 4, FMNH 433740, an adult female with an enlarged ovary. Adults of both colour types (FMNH 433742, 433738) were collected at the same site in November 2001. Photograph by M.R.H.
Figure 7 in Integrative taxonomy reveals hidden diversity in the Catharus fuscater (Passeriformes: Turdidae) complex in Central and South America
Figure 7. Time-calibrated Bayesian Inference (BI) tree reconstructed from ND2 sequences of 37 samples of C. [fuscater] with the GTR+I+G substitution model (see Methods). The topology was consistent with the maximum likelihood (ML) and maximum parsimony (MP) trees. Molecular clock estimates of lineage divergence times were calibrated with ND2 rates from Lerner et al. (2011) and node bars indicate the 95% highest posterior density interval. Branch lengths are proportional to substitutions per site. Support values for well-supported nodes are shown to the upper left of the node (MP/ML/BI). Support values are not shown for nodes with <70 bootstrap support (MP/ML) or <0.90 posterior probability (BI).
Figure 6 in Integrative taxonomy reveals hidden diversity in the Catharus fuscater (Passeriformes: Turdidae) complex in Central and South America
Figure 6. Maximum likelihood (ML) phylogeny of the C. [fuscater] complex based on a matrix of 2199 UCEs assembled from 24 samples. Black circles denote 100% bootstrap support for critical nodes supporting monophyly of taxonomic groups, with one exception (92%) as noted. Colour scheme of terminal taxa is standardized across figures.
Figure 3 in Integrative taxonomy reveals hidden diversity in the Catharus fuscater (Passeriformes: Turdidae) complex in Central and South America
Figure 3. Genetic sampling locations in southern Ecuador and northern Peru. Satellite imagery created in Google Earth Pro. The Ecuador-Peru border is shown with a thin yellow line in the upper left portion of the map. Diamonds denote sampling locations for UCE and ND2 data. Circles denote sampling locations for ND2 data only. Shape size is correlated with the number of samples (1–3). Abra de Porculla (Porculla Pass) is a mountain pass in northern Peru, within the elevational range of the C. [fuscater] complex, which permits dispersal between the western and eastern slopes. The Río Huancabamba and Río Chinchipe both flow into the Río Marañón, which flows east into the Amazon Basin (denoted by arrows).
Figure 1 in Integrative taxonomy reveals hidden diversity in the Catharus fuscater (Passeriformes: Turdidae) complex in Central and South America
Figure 1. Geographic distribution of the C. [fuscater] complex in Central and South America. Lines point to type localities. Diamonds denote sampling locations for UCE and ND2 data. Triangles denote sampling locations for UCE data only. Circles denote sampling locations for ND2 data only. Shape size is correlated with the number of samples (1–3). The colour-blind friendly palette used here is standardized across figures.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.