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967 results for “cerrado”
Figure 1 in Arsenura and Titaea (Lepidoptera: Saturniidae: Arsenurinae): new records for the Cerrado of Northeast Brazil
Figure 1. Adults of Arsenura beebei (A), Arsenura armida armida (B), Arsenura sylla maranhensis (C), Titaea tamerlan amazonensis (D) and Titaea timur (A) (Lepidoptera: Saturniidae: Arsenurinae) collected in the Mirador State Park, Maranhão, Brazil, with a light trap.
Fig. 2 in Diversity of Hemiptera (Arthropoda: Insecta) and their natural enemies on Caryocar brasiliense (Malpighiales: Caryocaraceae) trees in the Brazilian Cerrado
Fig. 2. Correlation of soil pH, soil aluminum level, tree height, and crown width with diversity indices, numbers of individuals, and numbers of species of sucking insects and their natural enemies per Caryocar brasiliense tree in the 3 areas of Montes Claros, Minas Gerais, Brazil. Symbols represent the mean values.
Fig. 1 in Diversity of Hemiptera (Arthropoda: Insecta) and their natural enemies on Caryocar brasiliense (Malpighiales: Caryocaraceae) trees in the Brazilian Cerrado
Fig. 1. Correlation of diversity indices, numbers of individuals, and numbers of species between sucking insects and their natural enemies; between number of sucking insects and total numbers of ants, green lacewings, predatory thrips, and lady beetles per Caryocar brasiliense tree in the 3 areas of Montes Claros, Minas Gerais, Brazil. Symbols represent the mean values.
Fig. 4 in Diversity of Hemiptera (Arthropoda: Insecta) and their natural enemies on Caryocar brasiliense (Malpighiales: Caryocaraceae) trees in the Brazilian Cerrado
Fig. 4. Correlation between tree height and crown width with total numbers of ants, predator thrips, and lady beetles per Caryocar brasiliense tree in the 3 areas of Montes Claros, Minas Gerais, Brazil. Symbols represent the mean values.
Fig. 3 in Diversity of Hemiptera (Arthropoda: Insecta) and their natural enemies on Caryocar brasiliense (Malpighiales: Caryocaraceae) trees in the Brazilian Cerrado
Fig. 3. Correlation of soil pH, soil aluminum level, tree height, and crown width with numbers of Dikrella caryocar and Aphis gossypii individuals per Caryocar brasiliense tree in the 3 areas of Montes Claros, Minas Gerais, Brazil. Symbols represent the mean values.
Figure 6. Response curve showing how each environmental variable affected the Maxent prediction. Variables A, B in PhylOgeOgraphy and pOtential distributiOn OF Sturnira lilium and S. giannae (ChirOptera: PhyllOstOmidae) With range eXtensiOn FOr S. giannae in the CerradO and Pantanal biOmes
Figure 6. Response curve showing how each environmental variable affected the Maxent prediction. Variables A, B, and C were the ones that most affected the potential distribution of S. giannae, and D, E, and F most affected the potential distribution of S. lilium. The curves show the average response of the 10 replicate Maxent runs (red) and the standard deviation (blue).
Figure 2 in PhylOgeOgraphy and pOtential distributiOn OF Sturnira lilium and S. giannae (ChirOptera: PhyllOstOmidae) With range eXtensiOn FOr S. giannae in the CerradO and Pantanal biOmes
Figure 2. Detail of the teeth in S. lilium (A and D – MN 82228) and S. giannae (B and E – MN 84766, C and F – MN 82217). The shape of the upper internal incisor unicuspid in S. lilium (A) and unicuspid or bicuspid in S. giannae (respectively B, C). Metaconid of first inferior molar (m1) wide mesodistally and short cervico-occlusal (D, E, and F). Metaconid of second inferior molar (m2) large mesodistally in S. lilium (D) and in S. giannae (F), or short mesodistally and long cervico-occlusally (E) in S. giannae. Scale bars: 1 mm.
Figure 4 in PhylOgeOgraphy and pOtential distributiOn OF Sturnira lilium and S. giannae (ChirOptera: PhyllOstOmidae) With range eXtensiOn FOr S. giannae in the CerradO and Pantanal biOmes
Figure 4. Map showing the distribution and location of analyzed samples of S. giannae in gray circles and blue boundaries, and of S. lilium in black circles and green boundaries. The blue star is the type locality of S. giannae, and the green star is the type locality of S. lilium. The dotted black line marks the extent of S. giannae 's territory in Brazil: Mato Grosso State (1) Barão de Melgaço, and Maranhão State (2) Alto Parnaíba. Other localities are in the Appendix 1.
Figure 1 in Tritrophic relations and spatial distribution of fruit flies (Diptera: Tephritidae) in the Cerrado and Caatinga regions in Piauí, Brazil
Figure 1 Inventory area on fruit flies, showing the distribution of sampling points and the main characteristic environments of the region in the municipality of Bom Jesus-PI, July 2018 to May 2019.
Figure 2 in Tritrophic relations and spatial distribution of fruit flies (Diptera: Tephritidae) in the Cerrado and Caatinga regions in Piauí, Brazil
Figure 2 (A) Spatial distribution of fruit plants, (B) fruit flies (Diptera: Tephritidae), (C) parasitoids Hymenoptera and (D) tritrophic relationship in sampling of native and exotic fruits (municipality of Bom Jesus -PI, July 2018 to May 2019).
Figure 4 in Seasonality and distribution of Coleoptera families (Arthropoda, Insecta) in the Cerrado of Central Brazil
Figure 4. Circular graph of abundance of Coleoptera and the main families (Melolonthidae, Carabidae, Scarabaeidae, Bostrichidae, and Chrysomelidae) captured using a light trap in an area of cerrado sensu stricto in Planaltina/DF, Brazil, from June 2015 to May 2016. The areas in blue represent the rainy season (October to March) and the areas in green represent the dry season (April to September).
Figure 1 in Seasonality and distribution of Coleoptera families (Arthropoda, Insecta) in the Cerrado of Central Brazil
Figure 1. Map of Brazil showing the collection point in the Federal District and the light trap used for Coleoptera sampling.
Fig. 6 in Elbella luteizona (Mabille, 1877) (Lepidoptera, Hesperiidae: Pyrginae) in Brazilian Cerrado: larval morphology, diet, and shelter architecture
Fig. 6. Elbella luteizona, scanning electron microscopy of egg. (A) Dorso-lateral view, Mp = micropylar region; (B) horizontal and vertical carinae forming cells, lateral view; (C) basal region, with incomplete carinae, lateral view; (D) micropylar region, dorsal view; (E) arrow indicating aeropyles (Ae), dorsal view.
Fig. 1 in Elbella luteizona (Mabille, 1877) (Lepidoptera, Hesperiidae: Pyrginae) in Brazilian Cerrado: larval morphology, diet, and shelter architecture
Fig. 1. Elbella luteizona host plants in the Cerrado, Distrito Federal, Brazil. (A) Byrsonima coccolobifolia; (B) Myrsine guianensis.
Figs. 2 A-F in Plasticidade morfológica de Myrcia splendens (S.w.) CD. (Myrtaceae) ocorrente em Mata Atlântica e Cerrado
Figs. 2 A-F. Características foliares e do lenho distintivas entre as populações de Myrcia splendens A, C, E. floresta; B, D, F. cerrado. A, B. folhas expandidas evidenciando, da esquerda para direita, menor área, área média e maior área foliar encontrada em cada ambiente; C-F. Características anatômicas do lenho; C, D. variação na freqüência e diâmetro tangencial dos vasos; E, F. comprimento do elemento de vaso. Barras: Figs. 2 A, B = 1 cm; Figs. 2 C-E = 200 µm.
Figure 6 Hybosa acutangula Boheman, 1855 in Description of larva, pupa, and genitalia of Hybosa acutangula Spaeth, 1913 (Coleoptera: Chrysomelidae: Cassidinae) from the Brazilian Cerrado
Figure 6 Hybosa acutangula Boheman, 1855. Genitalia: a, female, tignum, dorsal view; b, female, spermatheca, lateral view; c, male, aedeagus, ventral view; d, male, aedeagus, lateral view; e, male, aedeagus, dorsal view. DCT, ductus; MDL, medianl lobe; TGM, tegmen; VSC, vasculum. Scale bar = 500Μm.
Figure 2 Hybosa acutangula Boheman, 1855 in Description of larva, pupa, and genitalia of Hybosa acutangula Spaeth, 1913 (Coleoptera: Chrysomelidae: Cassidinae) from the Brazilian Cerrado
Figure 2 Hybosa acutangula Boheman, 1855. Fifth instar larvae:a, dorsal view;b, ventral view.AFK,anal fork; ASP,abdominal spiracles; ATB, anal tube; SCL, scolus; TSP,thoracic spiracle. Scale bar = 1 mm.
Figure 7 a in Description of larva, pupa, and genitalia of Hybosa acutangula Spaeth, 1913 (Coleoptera: Chrysomelidae: Cassidinae) from the Brazilian Cerrado
Figure 7 a. Husk of a parasitized pupae of Hybosa acutangula Boheman, 1855, opening made by emergence of adult wasp highlighted; Chalcididae which emerged from H. acutangula pupae, b. Brachymeria sp.; c. Conura sp.
Figure 4 Hybosa acutangula Boheman, 1855 in Description of larva, pupa, and genitalia of Hybosa acutangula Spaeth, 1913 (Coleoptera: Chrysomelidae: Cassidinae) from the Brazilian Cerrado
Figure 4 Hybosa acutangula Boheman, 1855. Fifth instar larvae, mouthparts: a, left mandible, ventral view; b, right mandible, ventral view; c, labium, ventral view. LBM, labium; LBP, labial palpus; LGL, ligula; MAL, mala; MDT, mandibular teeth; MXP, maxillary palpus; PPG, palpiger. PRM, prementum; PSM, postmentum. Scale bar = 1 mm.
Figure 3 Hybosa acutangula Boheman, 1855 in Description of larva, pupa, and genitalia of Hybosa acutangula Spaeth, 1913 (Coleoptera: Chrysomelidae: Cassidinae) from the Brazilian Cerrado
Figure 3 Hybosa acutangula Boheman, 1855. Fifth instar larvae, frontal view of the head. ANT, antenna; ECS, epicranial suture; LBR, labrum; STM, stemma. Scale bar = 1 mm.
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
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)
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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.