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Figure 3 in The SISBIOTA-Diptera Brazilian Network: A long-term survey of Diptera from unexplored Brazilian Western Arc of Amazon, Cerrado, and Pantanal
Figure 3 Different types of Malaise traps installed in various sampling sites. (a) in a dry, open area of vegetation in Poconé, Mato Grosso; (b) in a shaded area in open vegetation in Porto Murtinho, Mato Grosso; (c) in a shaded area of forest along a stream in Cacaulândia, Rondônia; (d) in a shaded area of forest in Cacaulândia, Rondônia; (e) classic Malaise trap supported by a metallic structure set up in rocky formation with shrubby vegetation in Chapada dos Guimarães, Mato Grosso; (f) six-meter-long Malaise trap in open vegetation in Poconé, Mato Grosso; (g) six-meter-long Malaise trap in open vegetation in Porto Murtinho, Mato Grosso do Sul.
Figure 2 in The SISBIOTA-Diptera Brazilian Network: A long-term survey of Diptera from unexplored Brazilian Western Arc of Amazon, Cerrado, and Pantanal
Figure 2 Collecting techniques used in the SISBIOTA-Diptera long-term survey. (a) CDC light trap; (b) manual collecting of cecidomyiid galls; (c) drift net; (d–e) classic light trap, with a white vertical sheet and different types of lights; (f–g) McPhail trap, filled with fermented fruit; (h) yellow and white pan traps near temporary ponds; (i) Pennsylvania light trap; (j) Shannon trap, baited with pieces of rotten fish or chicken; (k–m) three different types of Van Sommeren-Rydon (also known as Nymphalidae butterfly trap), modified to collect flies, baited with fermented fruit or decomposing fish; (n) net sweeping of vegetation.
Figure 14 in The SISBIOTA-Diptera Brazilian Network: A long-term survey of Diptera from unexplored Brazilian Western Arc of Amazon, Cerrado, and Pantanal
Figure 14 Outreach pamphlet of the SISBIOTA-Diptera, produced in 2015, highlighting the main results of 11 out of over 60 families reported from the material collected during the project.
Figure 8 in The SISBIOTA-Diptera Brazilian Network: A long-term survey of Diptera from unexplored Brazilian Western Arc of Amazon, Cerrado, and Pantanal
Figure 8 Diversity of species 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 6 in The SISBIOTA-Diptera Brazilian Network: A long-term survey of Diptera from unexplored Brazilian Western Arc of Amazon, Cerrado, and Pantanal
Figure 6 Diptera collected in the SISBIOTA-Diptera,habitus. (a) Tabanus importunus Wiedemann, 1828 (Tabanidae), female, Bodoquena, MS; (b) Rachicerus carrerai Pujol-Luz, 2019 (Xylophagidae), male, Bodoquena, MS; (c) Chrysotus sp. (Dolichopodidae), male, Corumbá, MS; (d) Empidini (Empididae), male, Corumbá, MS; (e) Eudorylas sp. (Pipunculidae), male, Corguinho, MS; (f) Palpada scutellaris (Fabricius, 1805) (Syrphidae), female, Porto Velho, RO; (g) Gaurax sp. (Chloropidae), male, Chapada dos Guimarães, MT; (h) Physegenua sp. (Lauxaniidae), male, Aquidauana, MS; (i) Glyphidops etele Aczél, 1961 (Neriidae), female, Cacaulândia, RO; (j) Phytobia cacaulandia Sousa & Couri, 2018 (Agromyzidae), male, Cacaulândia, RO; (k) Ropalomera sp. (Ropalomeridae), female, Chapada dos Guimarães, MT; (l) Pterocalla sp. (Ulidiidae), male, Porto Murtinho, MS; (m) Senopterina macularis (Fabricius, 1805) (Platystomatidae), male, Bodoquena, MS; (n) Trupanea bonariensis (Brèthes, 1908) (Tephritidae), female, Aquidauana, MS; (o) Noctiliostrebla morena Alcantara, Graciolli & Nihei, 2019 (Streblidae), male, Corumbá, MS; (p) Fannia heydenii (Wiedemann, 1830) (Fanniidae), female, Bodoquena, MS; (q) Polietina prima (Couri & Machado, 1990) (Muscidae), female, Cacaulândia, RO; (r) Chloroprocta idioidea (Robineau-Desvoidy, 1830) (Calliphoridae), male, Cacaulândia, RO; (s) Mesembrinella randa (Walker, 1849) (Mesembrinellidae), male, Monte Negro, RO; (t) Helicobia chapadensis Tibana & Lopes, 1984 (Sarcophagidae), male, Chapada dos Guimarães, MT; (u) Euepalpus flavicauda Townsend, 1908 (Tachinidae), male, Aquidauna, MS. Scale bar = 1 mm.
Figure 5 in The SISBIOTA-Diptera Brazilian Network: A long-term survey of Diptera from unexplored Brazilian Western Arc of Amazon, Cerrado, and Pantanal
Figure 5 Diptera collected in the SISBIOTA-Diptera, habitus. (a) Nephrotoma sp. (Tipulidae), female, Bodoquena, MS; (b) Clogmia sp. (Psychodidae), male, Poconé, MT; (c) Stenochironomus sp. (Chironomidae), male, Aquidauana, MS; (d) Olbiogaster sp. (Anisopodidae), female, Bodoquena, MS; (e) Enicoscolus cf.hardy Fitzgerald, 1997 (Bibionidae), female, Bodoquena, MS; (f) Rhipidita sp. (Ditomyiidae), male, Monte Negro, RO; (g) Diadocidia sp. (Diadocidiidae), female, Porto Velho, RO; (h) Aphrastomyia shannoni Lane, 1956 (Mycetophilidae), male, Porto Velho, RO; (i) Placoceratias gorgasi Matile, 1990 (Keroplatidae), male, Chapada dos Guimarães, MT; (j) Lygistorrhina barrettoi Lane, 1956 (Lygistorrhinidae), male, Bodoquena, MS; (k) Insulestremia sinclairi Jaschhof, 2004 (Cecidomyiidae), male, Bodoquena, MS; (l) Amydrostylus triadicophallus Lamas et al. 2015 (Mythicomyiidae), male, Porto Murtinho, MS; (m) Cerozodus platylobus Camargo, Vieira & Rafael, 2022 (Asilidae), male, Cuiabá, MT; (n) Anthrax trimaculatus Macquart, 1848 (Bombyliidae), female, Porto Murtinho, MS; (o) Messiasia zikani d'Andretta, 1951 (Mydidae), female, Bodoquena, MS; (p) Cerocatus sp. (Therevidae), female, Corguinho, MS; (q) Chrysopilus kafkai Cegolin & Santos, 2021 (Rhagionidae), male, Bodoquena, MS (modified from Cegolin et al. 2020; (r) Pantophthalmus tabaninus Thunberg, 1919 (Pantophthalmidae), female, Porto Velho, RO; (s) Pseudocyphomyia mimetica Kertész, 1916 (Stratiomyidae), male, Monte Negro, RO; (t) Solva sp. (Xylomyidae), female, Rio Verde, MS. Scale bar = 1 mm.
Figure 6 in Spatiotemporal distribution and population structure of Clibanarius symmetricus (Randall, 1840) (Crustacea, Diogenidae) in an Amazon estuary
Figure 6. Frequency distribution of cephalothoracic shield length (in mm) classes of the Clibanarius symmetricus specimens collected in the Marapanim estuary, Pará, Brazil. The vertical line represents the onset of sexual maturity (3.6 mm).
Figure 2 in Spatiotemporal distribution and population structure of Clibanarius symmetricus (Randall, 1840) (Crustacea, Diogenidae) in an Amazon estuary
Figure 2. Median Clibanarius symmetricus density by season (a), sector (b), site (c), and midlittoral zone (d) in the Marapanim River estuary (PA), between August 2006 and July 2007, based on the results of the PERMANOVA.
Figure 1 in Spatiotemporal distribution and population structure of Clibanarius symmetricus (Randall, 1840) (Crustacea, Diogenidae) in an Amazon estuary
Figure 1. Geographical location of the study area, showing the 4 sampling sites in the Marapanim estuary: A1 and A2 (western margin), B1 and B2 (eastern margin).
Figure 4 in Spatiotemporal distribution and population structure of Clibanarius symmetricus (Randall, 1840) (Crustacea, Diogenidae) in an Amazon estuary
Figure 4. Frequency of occurrence of Clibanarius symmetricus specimens of nonovigerous females (F), ovigerous females (OF), males (M), and intersex individuals (INT) collected each month between August 2006 and July 2007, in the Marapanim estuary, Pará, Brazil.
Figure 3 in Spatiotemporal distribution and population structure of Clibanarius symmetricus (Randall, 1840) (Crustacea, Diogenidae) in an Amazon estuary
Figure 3. Mean Clibanarius symmetricus density, and the temperature and salinity recorded in the Marapanim estuary, Pará, Brazil, between August 2006 and July 2007.
Figure 1 in A new species of Ami Pérez-Miles, 2008 (Araneae: Mygalomorphae: Theraphosidae) from the Amazon rainforest, Brazil
Figure 1. Ami valentinae sp. nov., body, male. A) Carapace, dorsal view; B) sternum, chelicerae, labium, coxae and trochanters, ventral view; C) sternum, ventral view; D) eye group. Scale bar: A–C 2.0 mm; D 0.5 mm.
Figure 2 in A new species of Ami Pérez-Miles, 2008 (Araneae: Mygalomorphae: Theraphosidae) from the Amazon rainforest, Brazil
Figure 2. Ami valentinae sp. nov., left male palp. A) Prolateral view, the arrow shows spine in prolateral of tibial palp; B) retrolateral view; C) palpal bulb, prolateral view, the arrow shows curved prolateral inferior keel; D) palpal bulb, retrolateral view; E) left embolus, the arrows show granular area; F) left palp, dorsal view, the arrow shows two distal conical processes on retrolateral surface; G) left leg I showing tibial apophyses and proventral view, the arrow shows apical spine. Scale bar: A–D and F–G 0.5 mm; E 0.1 mm.
Figure 1 in Damage caused by social wasps (Hymenoptera: Vespidae) to commercial fruits in the Brazilian Amazon region
Figure 1. Fruit damage by social wasps. A, B, C, E. Polybia liliacea (Fabricius, 1804), Polybia dimidiata (Olivier, 1792), Synoeca surinama (Linnaeus, 1767), and Synoeca virginea (Fabricius, 1804) on guava fruits. D. Murici fruit damaged by social wasps. F. Synoeca virginea causing damage to starfruit. / Figura 1. Daño a la fruta causado por avispas sociales. A, B, C, E. Polybia liliacea (Fabricius, 1804), Polybia dimidiata (Olivier, 1792), Synoeca surinama (Linnaeus, 1767) y Synoeca virginea (Fabricius, 1804) en frutos de guayaba. D. Fruta Murici dañada por avispas sociales. F. Synoeca virginea causando daño a la carambola.
Fig. 1 in New records of mealybugs (Hemiptera: Pseudococcidae) infesting rosettes of Conilon coffee plants in the state of Rondônia, South-Western Amazon, Brazil
Fig. 1. Ferrisia dasylirii and Planococcus minor in rosettes of Conilon coffee trees in the state of Rondônia, South-Western Amazon, Brazil. (A-B) Colonies of F. dasylirii on peduncles of coffee fruits. (C) Fruits covered by sooty mold on top of F. dasylirii honeydew. (D) Branch with damage (scattered grain) of F. dasylirii. (E) Dorsal view of an F. dasylirii adult female. (F) Imatures and adult females of P. minor. Photos (A-C) and (E-F) Rondelli VM; (D) Dias JRM.
Fig. 3 in Use of baits for the evaluation of underground termites (Blattodea: Rhinotermitidae) in different habitats of the southern Amazon region
Fig. 3. Queen of Heterotermes tenuis (center circle) in early stage of egg production (circle on lef), and colony formation inside the cardboard bait in southern Amazonia.
Fig. 2 in Use of baits for the evaluation of underground termites (Blattodea: Rhinotermitidae) in different habitats of the southern Amazon region
Fig. 2. Predominant termites in this study in southern Amazonia: (A) Nasutitermes sp. soldier; (B) Heterotermes tenuis soldier.
Fig. 1 in Use of baits for the evaluation of underground termites (Blattodea: Rhinotermitidae) in different habitats of the southern Amazon region
Fig. 1. Spatial arrangement of Termitrap® baits within plots for subterranean termite survey in different environments in southern Amazonia.
Figure 2 in Spinal deformities in Amazon sailfin catfish Pterygoplichthys pardalis (Siluriformes: Locariidae), an introduced fish in the Palizada River (Southeastern Mexico)
Figure 2. - Lateral view of deformed Amazon sailfin catfish Pterygoplichthys pardalis from the Palizada River, Campeche (Mexico). A: Kyphosis; B: Scoliosis.
Figure 3. - Dorsal view X in Spinal deformities in Amazon sailfin catfish Pterygoplichthys pardalis (Siluriformes: Locariidae), an introduced fish in the Palizada River (Southeastern Mexico)
Figure 3. - Dorsal view X-ray radiographs of deformed Amazon sailfin catfish Pterygoplichthys pardalis from the Palizada River, Campeche (Mexico). A: Normal specimen; B: Specimen with scoliosis; C: Specimen with kyphosis-scoliosis.
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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.
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.