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Figure 3Pheidole cangussu n in Additions to the taxonomy of Pheidole (Hymenoptera: Formicidae) from the southern grasslands of Brazil
Figure 3Pheidole cangussu n. sp. Major worker, holotype, CASENT0742941:(A) full-face view (B) lateral view (C) hypostomal margin (D) dorsal view. Minor worker, paratype, CASENT0742942: (E) full-face view (F) profile view (G) dorsal view. Scale bar 0.5 mm. 3D model and rotation video (Supp 5 and 6 [online only]).
Figure 7 Pheidole obapara n in Additions to the taxonomy of Pheidole (Hymenoptera: Formicidae) from the southern grasslands of Brazil
Figure 7 Pheidole obapara n. sp. Major worker, holotype, CASENT0790158:(A) full-face view (B) lateral view (C) hypostomal margin (D) dorsal view. Minor worker, paratype, CASENT0790159: (E) full-face view (F) profile view (G) dorsal view. Scale bar 0.2 mm. 3D model and rotation video (Supp 11 and 12 [online only]).
Figure 13 in Additions to the taxonomy of Pheidole (Hymenoptera: Formicidae) from the southern grasslands of Brazil
Figure 13 Map of South Brazil showing the localities for the aberrans group species records in grassland areas.
Figure 18 in Additions to the taxonomy of Pheidole (Hymenoptera: Formicidae) from the southern grasslands of Brazil
Figure 18 Map of South Brazil showing the localities for the tristis group species records in grassland areas.
Fig. 2 in (Hem.: Pentatomidae) in flooded rice crop in Southern Brazil Mapping of spatiotemporal distribution of Tibraca limbativentris Stal
Fig. 2. Interpolation maps by multiquadric equations of spatiotemporal distribution of occurrence categories of Tibraca limbativentris [I = no insect (green), II = adult (red), III = nymphs (pink), IV = adult + nymphs (blue)] in flooded rice crop in Southern Brazil, 2011/2012 crop season. *Thematic maps: (A) 11/19/11 [V4]; (B) 12/03/11 [V6]; (C) 12/17/11 [V8/V9]; (D) 01/07/12 [V11]; (E) 01/21/12 [R1]; (F) 02/02/12 [R5]; (G) 02/15/12 [R9]; (H) 02/29/12 [post-harvest = crop residues destroyed]. Phenological stage according to Counce et al. (2000).
Fig. 2 in Houseflies speaking for the conservation of natural areas: a broad sampling of Muscidae (Diptera) on coastal plains of the Pampa biome, Southern Brazil
Fig. 2. Sample coverage curves based on the number of individuals of Muscidae per region in the Coastal Plain (CPPB) of Rio Grande do Sul, Brazil. The grey shaded area represents the confidence intervals. (a) region 1; (b) region 2; (c) region 3; (d) region 4; (e) region 5; (f) CPPB total.
Fig. 3 in Houseflies speaking for the conservation of natural areas: a broad sampling of Muscidae (Diptera) on coastal plains of the Pampa biome, Southern Brazil
Fig. 3. Compositional differences between Muscidae (Insecta, Diptera) assemblages of all five regions of the Coastal Plain of Pampa Biome (Rio Grande do Sul, Brazil) shown by the unweighted pair-group method using arithmetic averages (UPGMA) cluster analysis.
Fig. 12 in Comparative morphology and identification key for females of nine Sarcophagidae species (Diptera) with forensic importance in Southern Brazil
Fig. 12. Spermathecae. (A) Oxysarcodexia paulistanensis, lateral view; scale: 0.05 mm; (B) Oxysarcodexia riograndensis, lateral view; scale: 0.05 mm; (C) Peckia (Pattonella) intermutans, lateral view; scale: 0.05 mm; (D) Peckia (Pattonella) resona, lateral view; scale: 0.05 mm; (E) Peckia (Euboettcheria) australis, lateral view; scale: 0.05 mm; (F) Peckia (Euboettcheria) florencioi, ventral view; scale: 0.05 mm; (G) Peckia (Sarcodexia) lambens, ventral view; scale: 0.05 mm; (H) Microcerella halli, lateral view; scale: 0.1 mm; (I) Sarcophaga (Bercaea) africa, lateral view; scale: 0.05 mm.
Fig. 10 in Comparative morphology and identification key for females of nine Sarcophagidae species (Diptera) with forensic importance in Southern Brazil
Fig. 10. External female morphology of Sarcophaga (Bercaea) africa. (A) Habitus, lateral view; scale: 2 mm; (B) abdomen, dorsal view; scale: 2 mm; (C) abdominal terminal segments, ventral view; scale: 0.5 mm; (D) abdomen, ventral view; scale: 1 mm.
Fig. 7 in Comparative morphology and identification key for females of nine Sarcophagidae species (Diptera) with forensic importance in Southern Brazil
Fig. 7. External female morphology of Peckia (Euboettcheria) florencioi. (A) Habitus, lateral view; scale: 2 mm; (B) abdomen, dorsal view; scale: 1 mm; (C) abdominal terminal segments, ventral view; scale: 0.5 mm; (D) abdomen, ventral view, scale: 1 mm.
Fig. 5 in Comparative morphology and identification key for females of nine Sarcophagidae species (Diptera) with forensic importance in Southern Brazil
Fig. 5. External female morphology of Peckia (Pattonella) resona. (A) Habitus, lateral view; scale: 2 mm; (B) abdomen, dorsal view; scale: 2 mm; (C) abdominal terminal segments, ventral view; scale: 1 mm; (D) abdomen, ventral view; scale: 2 mm.
Fig. 4 in Comparative morphology and identification key for females of nine Sarcophagidae species (Diptera) with forensic importance in Southern Brazil
Fig. 4. External female morphology of Peckia (Pattonella) intermutans. (A) Habitus, lateral view; scale: 1 mm; (B) abdomen, dorsal view; scale: 2 mm; (C) abdominal terminal segments, ventral view; scale: 1 mm; (D) abdomen, ventral view; scale: 2 mm.
Fig. 9 in Comparative morphology and identification key for females of nine Sarcophagidae species (Diptera) with forensic importance in Southern Brazil
Fig. 9. External female morphology of Microcerella halli. (A) Habitus, lateral view; scale: 2 mm; (B) abdomen, dorsal view; scale: 2 mm; (C) abdominal terminal segments, ventral view; scale: 1 mm; (D) abdomen, ventral view; scale: 1 mm.
Fig. 2 in Soil seed bank pattern of Adesmia tristis Vogel from Campos de Cima da Serra ecosystem in southern Brazil
Fig. 2. Compilation of Adesmia tristis seedlings/m2 in plots with disorders (cuts) and preserved plots (undisturbed) from Pró-Mata, PUCRS, municipality of São Francisco de Paula, in 2009.
Figure 3 in Comparison of soil invertebrate communities in organic and conventional production systems in Southern Brazil
Figure 3. Non-metric multidimensional scaling (NMDS) plot showing the relationship between macrofauna taxa (black text) and soil chemical and physical properties (red text) of samples taken in four land-use system in Quitandinha, Brazil. NF = Native forest, OH = Organic horticulture, RT = Reduced tillage, CH = Conventional horticulture.
Figure 2 in Harvestmen (Arachnida: Opiliones) from the Atlantic Forest of the Fernão Dias Environmental Protection Area, southern Minas Gerais, Brazil
Figure 2. Harvestmen records at the Fernão Dias EPA, Gonçalves municipality, southern Minas Gerais state: A) Ampheres luteus (Giltay, 1928). B) Megapachylus anomalus (Mello-Leitão, 1922). C) Gonyleptes pseudogranulatus (Soares, 1946). D) Munequita sp. / Registros de opiliones de la APA Fernão Dias, municipio de Gonçalves, sur del estado de Minas Gerais: A) Ampheres luteus (Giltay, 1928). B) Megapachylus anomalus (Mello-Leitão, 1922). C) Gonyleptes pseudogranulatus (Soares, 1946). D) Munequita sp.
Figure 1 in Harvestmen (Arachnida: Opiliones) from the Atlantic Forest of the Fernão Dias Environmental Protection Area, southern Minas Gerais, Brazil
Figure 1. Sampling areas for harvestmen (Arachnida) in the Atlantic Forest of the Fernão Dias EPA in the municipality of Gonçalves, southern Minas Gerais state, in mixed and seasonal semideciduous forests. / Áreas de muestreo para opiliones (Arachnida) en la Mata Atlántica de la APA Fernão Dias en el municipio de Gonçalves, sur del estado de Minas Gerais, en bosques semideciduos mixtos y estacionales.
Figure 2 in Social wasps (Hymenoptera: Vespidae) associated with Eucalyptus sp. plantations from an Altitude Field in Southern Minas Gerais State, Brazil
Figure 2. Aerial view of the sampled region, exemplifying the replacement of native vegetation by the monoculture of Eucalyptus spp. / Vista aérea de la región muestreada, ejemplificando el reemplazo de la vegetación nativa por el monocultivo de Eucalyptus spp.
Figure 1 in Social wasps (Hymenoptera: Vespidae) associated with Eucalyptus sp. plantations from an Altitude Field in Southern Minas Gerais State, Brazil
Figure 1. Limits of the sampled area in Morro do Ferro, municipality of Poços de Caldas, Minas Gerais, Brazil. / LÍmites del área de muestreo en Morro do Ferro, municipio de Poços de Caldas, Minas Gerais, Brasil.
Fig. 2 in Biotic factors are more important than abiotic factors in regulating the abundance of Plutella xylostella L., in Southern Brazil
Fig. 2. Abundance of Plutella xylostella on broccoli (A) and cauliflower crops (B) in the county of Colombo, Paraná State, Southern Brazil.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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
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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.