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Fig. 2 in Effect of Bacillus sphaericus Neide on Anopheles (Diptera: Culicidae) and associated insect fauna in fish ponds in the Amazon
Fig. 2. Abundance over time of aquatic insects and values LNMH at C1 and C2, Manaus, Amazonas, Brazil.
Fig. 3 in Record of postmortem injuries caused by the Neotropical social wasp Agelaia fulvofasciata (Degeer) (Hymenoptera, Vespidae) on pig carcasses in the Eastern Amazon region: implications in forensic taphonomy
Fig. 3. Arrow pointing postmortem injuries (artifacts) produced by biotaphonomic activity of Agelaia fulvofasciata.
Figs 1–6 in Eimeria spp. (Apicomplexa: Eimeriidae) in Black Caiman Melanosuchus niger (Crocodilia: Alligatoridae) from the Amazon Region, Brazil, with a Description of Two New Coccidian Species
Figs 1–6. Nomarski interference micrographs of sporulated coccidia oocysts found in black caimans faeces × 1,000. 1–2 – Eimeria nigeri n. sp.; 3–4 – Eimeria portovelhensis n. sp.; 5–6 – Eimeria paraguayensis. FIL – filament from the area of the Stieda body, OR – oocyst residuum, OW – oocyst wall, RB – refractile body, SB – Stieda body, SR – sporocyst residuum.
Figure 1 in First report of Panstrongylus geniculatus (Latreille, 1811) (Hemiptera: Reduviidae) in a cave in the state of Rondônia, Western Amazon, Brazil
Figure 1. (A) Dorsal view of a female Panstrongylus geniculatus. (B) Detail of abdomem, ventral view. (C) Detail of the inner region of the cave. (D) Rock where the specimen was collected. (E) Cave opening detail. / (A) Vista dorsal de una hembra de Panstrongylus geniculatus. (B) Detalle del abdomen, vista ventral. (C) Detalle de la región interior de la cueva. (D) Roca donde se recolectó el espécimen. (E) Detalle de la apertura de la cueva.
Figure 1. A in First record of phoretic association between Cordylochernes scorpioides (Linnaeus) (Pseudoscorpiones: Chernetidae) and Hylettus coenobita (Erichson) (Coleoptera: Cerambycidae) in central Amazon
Figure 1. A. Longhorn beetle Hylletus coenobita (Erichson, 1847) with a female of Cordylochernes scorpioides (Linnaeus) attached to its right antenna. B. Same, close-up of the pseudoscorpion.
Figure 2. A in First record of parasitism in Avicularia purpurea Kirk, 1990 (Araneae: Theraphosidae: Aviculariinae) by Notocyphus aff. tyrannicus Smith, 1855 (Hymenoptera: Notocyphinae) in the Ecuadorian Amazon
Figure 2. A. Localities of A. purpurea in Ecuador. B. Juvenile individual of A. purpurea that presented the parasitic larvae of Notocyphus aff. tyrannicus. C. Live adult of N. aff. tyrannicus. Scale bar: 1 cm.
Figure 3. A in First record of parasitism in Avicularia purpurea Kirk, 1990 (Araneae: Theraphosidae: Aviculariinae) by Notocyphus aff. tyrannicus Smith, 1855 (Hymenoptera: Notocyphinae) in the Ecuadorian Amazon
Figure 3. A. Dorsal view of N. aff. tyrannicus. B. Front view. C. Side view. D. Cocoon of N. aff. tyrannicus. E. Silk shelter made by A. purpurea, note the cocoon at one end. F. Wing detail of N. aff. tyrannicus. Scale bar: 1 cm.
Figure 1 in First record of parasitism in Avicularia purpurea Kirk, 1990 (Araneae: Theraphosidae: Aviculariinae) by Notocyphus aff. tyrannicus Smith, 1855 (Hymenoptera: Notocyphinae) in the Ecuadorian Amazon
Figure 1. Locality where the specimen of A. purpurea parasitized by Notocyphus af. tyrannicus was collected. / Localidad de recolección del especímen de A. purpurea parasitado por Notocyphus af. tyrannicus.
Figure 2 in Effect of using forced and free oviposition methods to obtain eggs and larvae of Mansonia (Diptera: Culicidae) females from Rondonia, Brazil (western Amazon)
Figure 2 Number of wild females of different Mansonia species collected in Vila Teotônio, a rural region of Porto Velho, Rondonia, Brazil that laid eggs using free and forced oviposition methods in the laboratory. *Significant difference (P <0.05) in the expected frequency of females that oviposited.
Figure 3 in Effect of using forced and free oviposition methods to obtain eggs and larvae of Mansonia (Diptera: Culicidae) females from Rondonia, Brazil (western Amazon)
Figure 3 Number of eggs (A) and larvae (B) obtained in the laboratory from wild females of diferente Mansonia species collected in Vila Teotônio, a rural region of Porto Velho, Rondonia, Brazil. Different letters indicate significant differences (P <0.05) between species. Red lines indicate the mean.
Figure 3 in Bacterial community associated with Culex quinquefasciatus Say, 1823 (Diptera: Culicidae) from an urban area in the Amazon, Brazil
Figure 3 Phylogenetic tree based on maximum likelihood method using MEGA 11. The numbers shown next to the branches correspond to the percentage of replicate trees that the taxa were clustered together in the bootstrap test (1000 replicates).
Figure 2 in Bacterial community associated with Culex quinquefasciatus Say, 1823 (Diptera: Culicidae) from an urban area in the Amazon, Brazil
Figure 2 Heatmap of sequences with taxonomic assignment to genus level. The color gradient (yellow to purple) represents abundance. Yellow: higher bacterial abundance. Purple: lowest bacterial abundance. Abundance legend corresponds log10(%).
Figure 1 in Bacterial community associated with Culex quinquefasciatus Say, 1823 (Diptera: Culicidae) from an urban area in the Amazon, Brazil
Figure 1 Bar chart of the relative abundance of each bacterial genus per sample. The black bar comprises the genera that show relative abundance of less than 1%.
Fig. 4 in A survey of necrophagous blowflies (Diptera: Oestroidea) in the Amazonas-Negro interfluvial region (Brazilian Amazon)
Fig. 4. Relative abundance of necrophagous blowflies in each of the three interfluvial collecting sites.
Fig. 3 in A survey of necrophagous blowflies (Diptera: Oestroidea) in the Amazonas-Negro interfluvial region (Brazilian Amazon)
Fig. 3. Species abundance distribution of necrophagous blowflies in the Amazonas-Negro interfluvial region.
Figure 10 in The SISBIOTA-Diptera Brazilian Network: A long-term survey of Diptera from unexplored Brazilian Western Arc of Amazon, Cerrado, and Pantanal
Figure 10 Comparison of species richness rankings of the top 10 families collected and identified of Mato Grosso, Mato Grosso do Sul, Rondônia, the three states combined, and Brazil. Horizontal lines and bars represent equal ranking; each family is represented by a different color.
Figure 7 in The SISBIOTA-Diptera Brazilian Network: A long-term survey of Diptera from unexplored Brazilian Western Arc of Amazon, Cerrado, and Pantanal
Figure 7 Diversity of genera in each Diptera family in the material collected and identified of the three states combined (Mato Grosso, Mato Grosso do Sul, and Rondônia) in the SISBIOTA-Diptera.
Figure 13 in The SISBIOTA-Diptera Brazilian Network: A long-term survey of Diptera from unexplored Brazilian Western Arc of Amazon, Cerrado, and Pantanal
Figure 13 Number of articles resulting from the SISBIOTA-Diptera published between 2012 and 2022 (2023 is still in course, so it was not included in the graph).
Figure 12 in The SISBIOTA-Diptera Brazilian Network: A long-term survey of Diptera from unexplored Brazilian Western Arc of Amazon, Cerrado, and Pantanal
Figure 12 Number of articles per Diptera families resulting from the SISBIOTA-Diptera published between the first publication in 2012 and 2022.
Figure 4 in The SISBIOTA-Diptera Brazilian Network: A long-term survey of Diptera from unexplored Brazilian Western Arc of Amazon, Cerrado, and Pantanal
Figure 4 Mist net for trapping and examining bats for collecting bat flies (Streblidae). (a) setting up a mist net in a flooded area in the Pantanal, in Poconé, Mato Grosso; (b) mist net set on the flooded area, indicated with red arrows, in Poconé, Mato Grosso; (c) mist net set on drier area, in the Pantanal, in Corumbá, Mato Grosso do Sul; (d) Noctilio albiventris Desmarest, 1818 (Chiroptera: Noctilionidae) trapped with mist net and examined for bat flies, in Corumbá, Mato Grosso do Sul.
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)
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.