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Figures 12-18 from: Câmara JT, Rafael JA (2017) New species of Metachela Coquillett from the Atlantic Forest, Brazil and a key to the Neotropical species (Diptera, Empididae). ZooKeys 714: 129-140. https://doi.org/10.3897/zookeys.714.11503
Figures 12-18 - Metachela spinulosa sp. n., holotype male. 12 Habitus, dorsolateral view 13 Right fore femur, anteroventral view 14 Right fore tibia, anteroventral view 15 Abdomen from segments 7–11, lateral view 16 Cercus, dorsal view 17 Subepandrial sclerite and epandrium, dorsal view 18 Hypandrium and epandrium, ventral view.
Figures 1-7 from: Câmara JT, Rafael JA (2017) New species of Metachela Coquillett from the Atlantic Forest, Brazil and a key to the Neotropical species (Diptera, Empididae). ZooKeys 714: 129-140. https://doi.org/10.3897/zookeys.714.11503
Figures 1-7 - Metachela danitakiyae sp. n., 1–2 holotype male 3–7 paratype ♂ 1 Habitus, lateral view 2 Wing 3 Cercus, dorsal view 4 Subepandrial sclerite, epandrium and cercus, anteroventral view 5 Cercus, epandrium and hypandrium, lateral view 6 Phallus, lateral view 7 Hypandrium, ventral view.
Figures 8-11 from: Câmara JT, Rafael JA (2017) New species of Metachela Coquillett from the Atlantic Forest, Brazil and a key to the Neotropical species (Diptera, Empididae). ZooKeys 714: 129-140. https://doi.org/10.3897/zookeys.714.11503
Figures 8-11 - Metachela danitakiyae sp. n., paratype female from Itatiaia. 8 Habitus, lateral view 9 Wing 10 Segments 7-11, lateral view 11 Tergites 7, 8, and 10, dorsal view, sternites 7 and 8, ventral view.
FIGURE 1 in Synopsis of Miridae (Hemiptera: Heteroptera) in Atlantic Forest Dominion, Espírito Santo State, Brazil: keys, diagnoses, new species, plant associations, and geographic distribution. Part I: Bryocorinae, Cylapinae and Deraeocorinae.
FIGURE 1. General Miridae morphology (modified from Schwartz & Foottit, 1992, with permission).
Figure 2. Eugenia stenocarpa Valdemarin & A in EUGENIA STENOCARPA (MYRTACEAE), A NEW SPECIES FROM THE ATLANTIC FOREST OF SÃO PAULO, BRAZIL, WITH A REMARKABLE FRUIT
Figure 2. Eugenia stenocarpa Valdemarin & A.Maruy., sp. nov. A, Flower bud; B, flower after anthesis; C, immature cylindrical fruit; D, bark. All photographs of the holotype (K.S. Valdemarin et al. 1496), taken by K. S. Valdemarin.
Hawkmoths diversity and activity in an Atlantic Forest - Caatinga ecotone, Northeast Brazil
Open the record for dataset details and reuse information.
Figure 1 in Small forest fragments and their importance for conservation of tree communities in Atlantic Semideciduous Forest
Figure 1. Species accumulation curve designed by Bootstrap estimator for the nine sites of seasonal semideciduous forest in southeastern Brazil. Gray lines: Species with DAP <5.0 cm. Black lines: Species with DAP> 5.0 cm. Dashed line: standard deviation.
Figs. 1 A-C in Population structure of the endangered tree fern Cyathea praecincta (Cyatheaceae), endemic of the Brazilian Atlantic Forest
Figs. 1 A-C. Spatial distribution of Cyathea praecincta in an Atlantic Forest fragment in Northeastern Brazil. A. Total individuals sampled within 25m²; B. Spatial distribution of sterile C. praecincta individuals within 25m²; C. Spatial distribution of fertile of C. praecincta individuals within 25m². Ia= Aggregation index; the highly clustered pattern in the population is represented by the black patches.
Fig. 4 in Biodiversity survey, ecology and new distribution records of Marchantiophyta in a remnant of Brazilian Atlantic Forest
Fig. 4. Dendrogram based on UPGMA of the species composition of liverworts in the study fragment of dense montane ombrophilous forest in Parque Nacional de Boa Nova and other areas of Atlantic Forest in Brazil.
Figs. 2. A-D in Biodiversity survey, ecology and new distribution records of Marchantiophyta in a remnant of Brazilian Atlantic Forest
Figs. 2. A-D. Dicranolejeunea axilaris (Nees & Mont.) Schiffn. A. Ventral view of the gametophyte. B. Detail of leaves and underleaves. C. Ginoecium with perianth. D. Lobe cells.
Fig. 1 in Biodiversity survey, ecology and new distribution records of Marchantiophyta in a remnant of Brazilian Atlantic Forest
Fig. 1. Location of Parque Nacional de Boa Nova. The municipality of Boa Nova in the state of Bahia is circumscribed, and the location of the study site is indicated by the dot.
Figure 1 in Fire effects on Atlantic Forest sites from a composition, structure and functional perspective
Figure 1. Paraíba do Sul river basin study site, Southeast Atlantic Forest biome, inside São Paulo state, Brazil and South America. Red and blue pins represent burned and unburned forest sites where field inventory was performed, with satellite images of each.
Figure 2 in Seasonality and forest edge as drivers of Tradescantia zebrina Hort. ex Bosse invasion in the Atlantic Forest
Figure 2. Mean numbers of dry biomass (A), leaf herbivory (B), leaf area (C) and leaf asymmetry (D) of Tradescantia zebrina in seasonal treatment (Winter, Spring, Summer and Autumn) in invaded areas of the Iguaçu National Park. Error bars are standard deviation.The same letter indicates that there is no significant difference between treatments (a posteriori test of general linear hypothesis; p <0.05).
FIGURE 3. A–B in Podonomus amarali n. sp., a new species of the albinervis group (Diptera: Chironomidae: Podonominae) from Atlantic Forest, southern Brazil
FIGURE 3. A–B. Podonomus amarali sp. n., female adult. A, tergite X. B, genitalia, ventral vieW.
FIGURE 14 in Titanogryllus n. gen., the largest Gryllinae cricket from the Neotropical Region with three new species from the Brazilian Atlantic Forest (Orthoptera, Grylloidea, Gryllidae)
FIGURE 14. Distribution map of Titanogryllus n. gen. species.
Figure 3 from: Shimabukuro EM, Trivinho-Strixino S (2018) Madicolous Chironomidae from the Brazilian Atlantic Forest: a checklist with notes on altitudinal distributions (Diptera, Insecta). ZooKeys 751: 41-73. https://doi.org/10.3897/zookeys.751.20611
Figure 3 Indicator species of altitudinal range. Indicator values in black and significance value (p) at 0.05 level in gray obtained for each species and morphospecies found in the present study.
Figure 2 from: Shimabukuro EM, Trivinho-Strixino S (2018) Madicolous Chironomidae from the Brazilian Atlantic Forest: a checklist with notes on altitudinal distributions (Diptera, Insecta). ZooKeys 751: 41-73. https://doi.org/10.3897/zookeys.751.20611
Figure 2 Field images. A The emergence trap installed above a madicolous system B Madicolous larva in natural habitat (Podonomus sp.) C Example of madicolous system characterized by seepage on rocky substrate D Example of madicolous system created at the stream bank.
Figure 1 from: Shimabukuro EM, Trivinho-Strixino S (2018) Madicolous Chironomidae from the Brazilian Atlantic Forest: a checklist with notes on altitudinal distributions (Diptera, Insecta). ZooKeys 751: 41-73. https://doi.org/10.3897/zookeys.751.20611
Figure 1 Localization of the study area comprehending the complete altitudinal range in the Atlantic Forest (Brazil). A Maximum altitudinal range in PARNASO B Maximum altitudinal range in APASM C Maximum altitudinal range in PESM.
Figure 4 from: Shimabukuro EM, Trivinho-Strixino S (2018) Madicolous Chironomidae from the Brazilian Atlantic Forest: a checklist with notes on altitudinal distributions (Diptera, Insecta). ZooKeys 751: 41-73. https://doi.org/10.3897/zookeys.751.20611
Figure 4 Altitudinal record of each species found in madicolous habitats in the present study. Previous altitudinal records (from literature) in gray and altitudinal records from this research in black.
Figure 2 from: Mattos TM, Carvalho DR, de Brito MS, Araújo FG (2018) Occurrence of phoresy between Ancistrus multispinis (Actinopterygii: Siluriformes) and Ichthyocladius sp. (Diptera: Chironomidae) in Atlantic forest streams, Southeastern Brazil. Zoologia 35: 1-6. https://doi.org/10.3897/zoologia.35.e13255
Figure 2 Larvae of Ichthyocladius sp. attached to a distal part of the abdomen (proleg) to a spicule on the pectoral fin of Ancistrus multispinis. Scale bars: 1 mm.
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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