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449 results for “Atlantic rainforest”
Data on specialist and generalist herbivory, environmental variation, and phytochemical similarity from the Atlantic Rainforest of Brazil: 2013-2014
What: These are data on specialist and generalist herbivory from naturally occurring Piper plants as well as environmental data collected in 10 m diameter plots across sites in the Atlantic Rainforest of Brazil. Data also include chemical similarity calculated as the Morisita similarity index for species in a given plot and chemical modules that demonstrate classes of compounds that group together and influence herbivory. Why: Data were collected to understand factors that influence herbivory and tropical forest richness with a particular focus on secondary chemistry metabolomics. Where: Field sites include São Bento de Sapucaí (-22.8758, -45.8581), Parque Nacional de Itatiaia (-22.3698, -44.6285), Parque Estadual de Intervales (-24.3088, -48.2736), and Parque Estadual de Serra do Mar - Núcleo Pincinguaba (-23.6200, -46.7222). When: Data were collected in the field from Dec 2013 – May 2014. How: Field data were collected in 10 m diameter plots centered on randomly located Piper plants. Chemical data come from 1H-NMR metabolomics.
Fig. 4 in A new species of Characidium (Characiformes: Crenuchidae) from coastal basins in the Atlantic Rainforest of eastern Brazil, with phylogenetic and phylogeographic insights into the Characidium alipioi species group
Fig. 4. Fast flowing stream, type locality of Characidium cricarense, at Cachoeira do Inferno rapids in rio Cricaré, São Mateus, ES, Brazil. GPS coordinates: 18°42'24.5"S 40°16'7.2"W.
Fig. 4 in A new species and first record of Vates Burmeister, 1838 from the Atlantic Rainforest (Mantodea: Vatinae)
Fig. 4. Mid- and hind legs of Vates phoenix sp. nov., highlighting variation across male specimens. A–D. Mid femora. A. Holotype from Fazenda Recanto (MNRJ-ENT6-28441). B. Paratype from Reserva Ecológica de Guapiaçu (MNRJ-ENT6-28447). C. Paratype from Jussaral (MNRJ-ENT6-28449). D. Paratype from Angatuba (MNRJ-ENT6-28456). – E–F. Hind femora. E. Holotype from Fazenda Recanto (MNRJ-ENT6-28441). F. Paratype from Angatuba (MNRJ-ENT6-28456). – G–J. Mid tibiae. G. Holotype from Fazenda Recanto (MNRJ-ENT6-28441). H. Paratype from Reserva Ecológica de Guapiaçu (MNRJ-ENT6-28447). I. Paratype from Jussaral (MNRJ-ENT6-28449). J. Paratype from Angatuba (MNRJ-ENT6-28456). – K–M. Hind tibiae. K. Holotype from Fazenda Recanto (MNRJENT6-28441). L. Paratype from Jussaral (MNRJ-ENT6-28449). M. Paratype from Angatuba (MNRJENT6-28456). Scale bar: A–M = 5 mm.
Fig. 2 in A new species and first record of Vates Burmeister, 1838 from the Atlantic Rainforest (Mantodea: Vatinae)
Fig. 2. Adults of Vates phoenix sp. nov. A–B. Live specimens photographed in a studio. A. Paratype, ♂, from Reserva Ecológica de Guapiaçu (MNRJ-ENT6-28446). B. Allotype, ♀, from Jardim Botânico do Rio de Janeiro (MNRJ-ENT6-28442). – C–D. Pinned adults. C. Holotype, ♂, from Fazenda Recanto (MNRJ-ENT6-28441). D. Allotype, ♀ (MNRJ-ENT6-28442). Scale bars: C–D = 10 mm.
Figure 3 in Population structure of a native and an alien species of snail in an urban area of the Atlantic Rainforest
Figure 3. Detectability probability (A), abundance (B) and recruitment (C) estimated for Achatina fulica during the study. The error bars show 90% confidence intervals.
Figure 3. A in Osmylidae (Insecta: Neuroptera) from Atlantic rainforest in southeastern Brazil and new records for Gumilla adspersus Navás, 1912
Figure 3. A. Gumilla adspersus Navás, 1912 (Neuroptera, Osmylidae), habitus dorsal (photo by Rogério Dias on the iNaturalist website). B. Distribution map of Isostenosmylus pulverulentus (Gerstaecker, 1894) and Gumilla adspersus Navás, 1912. (Neuroptera: Osmylidae) and their occurrence records to South America. / Figura 3. A. Gumilla adspersus Navás, 1912 (Neuroptera, Osmylidae), habitus dorsal (foto de Rogério Días en el sitio iNaturalist). B. Mapa de distribución de Isostenosmylus pulverulentus (Gerstaecker, 1894) y Gumilla adspersus Navás, 1912 (Neuroptera: Osmylidae) y sus registros de presencia en Sudamérica.
Figure 2 in Osmylidae (Insecta: Neuroptera) from Atlantic rainforest in southeastern Brazil and new records for Gumilla adspersus Navás, 1912
Figure 2. Population fluctuation of Osmylidae (Neuroptera) collected with Malaise traps in five areas of Atlantic rainforest of São Paulo state, Brazil, between October 2009 and December 2011. / Figura 2. Fluctuación poblacional de Osmylidae (Neuroptera) recolectada con trampas Malaise en cinco áreas de la selva atlántica del estado de São Paulo, Brasil, entre octubre de 2009 y diciembre de 2011. EEJI = Estação Ecológica Juréia-Itatins, PEI = Parque Estadual Intervales, PEMD = Parque Estadual Morro do Diabo and PESM/NSV = Parque Estadual da Serra do Mar - Núcleo Santa VirgÍnia.
Figure 1 in Osmylidae (Insecta: Neuroptera) from Atlantic rainforest in southeastern Brazil and new records for Gumilla adspersus Navás, 1912
Figure 1.Dorsal habitus of the studied Osmylidae (Neuroptera) species.A. Isostenosmylus pulverulentus (Gerstaecker, 1894). B. Gumilla adspersus Navás, 1912. / Figura 1. Habito dorsal de las especies de Osmylidae (Neuroptera) estudiadas. A. Isostenosmylus pulverulentus (Gerstaecker, 1894). B. Gumilla adspersus Navás, 1912.
FIGURE 3 in Physical habitat as predictor of fish trophic structure in Brazilian Atlantic rainforest streams
FIGURE 3 | Biplot of the first two canonical functions showing how substrate composition (SC), meso-habitat variability (MH), and bank stability (BS) correlate with richness of carnivores (SCar), invertivores (SInv), omnivores (SOmn), and herbivorous-detritivores (SHD).
FIGURE 1 in Physical habitat as predictor of fish trophic structure in Brazilian Atlantic rainforest streams
FIGURE 1 | Sampling sites located in the Paranapanema river basin, São Paulo state, Brazil. The Paranapanema river is highlighted in blue.
Fig. 5. Sample-based rarefaction curve with 95 in Crepuscular and nocturnal hawkmoths (Lepidoptera: Sphingidae) from a fragment of Atlantic rainforest in the state of São Paulo, southeastern Brazil
Fig. 5. Sample-based rarefaction curve with 95% confidence interval and results of the richness estimators (triangle: Jackknife 1; X: Jackknife 2; open circle: ICE; square: Chao 2).
Fig. 4 in Crepuscular and nocturnal hawkmoths (Lepidoptera: Sphingidae) from a fragment of Atlantic rainforest in the state of São Paulo, southeastern Brazil
Fig. 4. Sphingidae richness (A) and abundance (B) by month of sampling. Line represents monthly mean temperatures.
Figure 4 in Diversity and temporal variation of brown lacewings (Neuroptera, Hemerobiidae) from Atlantic rainforest areas in southeastern Brazil
Figure 4 Habitus of collected species of Megalomus Rambur, 1842 (Neuroptera, Hemerobiidae) and their geographical distribution in Neotropics; red circles = previous records, red stars = new records. A-B, M. impudicus (Gerstaecker, 1888). C-D, M. rafaeli Penny & Monserrat, 1985. E-F, M. ricoi Monserrat, 1997.
Figure 10 in Diversity and temporal variation of brown lacewings (Neuroptera, Hemerobiidae) from Atlantic rainforest areas in southeastern Brazil
Figure 10 Species distributions of Hemerobiidae (Neuroptera) along altitudinal gradient in five areas in the Atlantic rainforest of São Paulo state, Brazil, collected between October 2009 and December 2011. asl = above sea level, PEI = Parque Estadual Intervales, PEMD = Parque Estadual Morro do Diabo, PESM/NSV = Parque Estadual da Serra do Mar, Núcleo Santa Virgínia, PESM/NP = Parque Estadual da Serra do Mar, Núcleo Picinguaba and EEJI = Estação Ecológica Juréia-Itatins.
Figure 1 in Diversity and temporal variation of brown lacewings (Neuroptera, Hemerobiidae) from Atlantic rainforest areas in southeastern Brazil
Figure 1 Map of Brazil with the original extension of the Atlantic rainforest biome in black color and map of the São Paulo state with the collection sites. PEI = Parque Estadual Intervales, PEMD = Parque Estadual Morro do Diabo, PESM/NSV = Parque Estadual da Serra do Mar, Núcleo Santa Virgínia, PESM/NP = Parque Estadual da Serra do Mar, Núcleo Picinguaba and EEJI = Estação Ecológica Juréia-Itatins. Image sources: www.wwf.org.br and Google Earth.
Figure 2 in Diversity and temporal variation of brown lacewings (Neuroptera, Hemerobiidae) from Atlantic rainforest areas in southeastern Brazil
Figure 2 Habitus of collected species of Hemerobius Linnaeus, 1758 (Neuroptera, Hemerobiidae) and their geographical distribution in Neotropics; red circles = previous records, red stars = new records. A-B, H. cubanus Banks, 1930. C-D, H. edui Monserrat, 1991. E-F, H. gaitoi Monserrat, 1996.
Figure 6 in Diversity and temporal variation of brown lacewings (Neuroptera, Hemerobiidae) from Atlantic rainforest areas in southeastern Brazil
Figure 6 Habitus of collected species of Sympherobius Banks, 1904 (Neuroptera, Hemerobiidae) and their geographical distribution in Neotropics; red circles = previous records, red stars = new records. A-B, S. ariasi Penny & Monserrat, 1985. C-D, S. mirandus (Navás, 1920).
Figure 8 in Diversity and temporal variation of brown lacewings (Neuroptera, Hemerobiidae) from Atlantic rainforest areas in southeastern Brazil
Figure 8 Genera of Hemerobiidae (Neuroptera) collected monthly with Malaise traps in five areas of Atlantic rainforest of São Paulo State, Brazil, between October 2009 and December 2011. A, Nusalala Navás, 1913. B, Hemerobius Linnaeus, 1758. C, Megalomus Rambur, 1842. D, Notiobiella Banks, 1909. E, Sympherobius Banks, 1904.
Fig. 1 in Rickettsia parkeri strain Atlantic rainforest in ticks (Acari: Ixodidae) of wild birds in Arauca, Orinoquia region of Colombia
Fig. 1. Localities sampled in the municipalities of Arauca, Cravo Norte, and Tame and reports of Rickettsia spp. in the study area (▴Rickettsia parkeri strain Atlantic rainforest).
Fig. 2 in Rickettsia parkeri strain Atlantic rainforest in ticks (Acari: Ixodidae) of wild birds in Arauca, Orinoquia region of Colombia
Fig. 2. Phylogenetic tree based on partial sequences of the outer membrane protein gene ompB present only in SFG Rickettsia species. The tree was inferred through Maximum Likelihood with the Tamura 3-parameter evolution model. The sequences obtained in this study appear in bold and the GenBank accessions numbers are provided within square brackets.
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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)
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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.