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2,293 results for “Atlantic forests”
FIGURE 16 in A new genus and three new species of Agraeciini (Orthoptera: Tettigoniidae: Conocephalinae) from the Brazilian Atlantic Forest, with comments on the function of some phallic components
FIGURE 16. Warimiri zumbi gen. et sp. nov.. A) Left tegmina; B) right tegmina; C) left stridulatory file.
FIGURE 8 in A new genus and three new species of Agraeciini (Orthoptera: Tettigoniidae: Conocephalinae) from the Brazilian Atlantic Forest, with comments on the function of some phallic components
FIGURE 8. Warimiri karutasywa gen. et sp. nov.. A) Left tegmina; B) right tegmina; C) left stridulatory file.
FIGURE 15 in A new genus and three new species of Agraeciini (Orthoptera: Tettigoniidae: Conocephalinae) from the Brazilian Atlantic Forest, with comments on the function of some phallic components
FIGURE 15. Warimiri zumbi gen. et sp. nov.. A) foreleg, external view, and B) internal view; C) fore tibia, dorsal view; D) midleg, external view, and E) internal view; F) mid tibia, dorsal view; G) hindleg, external view, and H) internal view; I) male genitalia, dorsal view, J) posterior view, K) lateral view, and L) ventral view; M) male cercus, dorsal view, and N) ventral view.
FIGURE 4 in A new genus and three new species of Agraeciini (Orthoptera: Tettigoniidae: Conocephalinae) from the Brazilian Atlantic Forest, with comments on the function of some phallic components
FIGURE 4. Warimiri madiba gen. et sp. nov.. A) Left tegmina; B) right tegmina; C) left stridulatory file.
FIGURE 7 in A new genus and three new species of Agraeciini (Orthoptera: Tettigoniidae: Conocephalinae) from the Brazilian Atlantic Forest, with comments on the function of some phallic components
FIGURE 7. Warimiri karutasywa gen. et sp. nov.. A) Habitus of male, lateral view; B) frons; C) head and thorax in detail, dorsal view, and D) lateral view; E) Habitus of male, dorsal view; F) sternum; G) foreleg, internal view; H) midleg, external view; I) male genitalia, dorsal view, J) ventral view, and K) lateral view.
FIGURE 3 in A new genus and three new species of Agraeciini (Orthoptera: Tettigoniidae: Conocephalinae) from the Brazilian Atlantic Forest, with comments on the function of some phallic components
FIGURE 3. Warimiri madiba gen. et sp. nov.. A) foreleg, external view, and B) internal view; C) fore tibia, dorsal view; D) midleg, external view, and E) internal view; F) mid tibia, dorsal view; G) hindleg, external view, and H) internal view; I) male genitalia, dorsal view, J) posterior view, K) lateral view, and L) ventral view; M) male cercus, dorsal view, and N) ventral view.
FIGURE 12 in A new genus and three new species of Agraeciini (Orthoptera: Tettigoniidae: Conocephalinae) from the Brazilian Atlantic Forest, with comments on the function of some phallic components
FIGURE 12. Warimiri karutasywa gen. et sp. nov.. A) and B) live female, lateral view, and C) dorsal view.
FIGURE 6 in A new genus and three new species of Agraeciini (Orthoptera: Tettigoniidae: Conocephalinae) from the Brazilian Atlantic Forest, with comments on the function of some phallic components
FIGURE 6. Warimiri madiba gen. et sp. nov.. A) Habitus of female, lateral view, and B) dorsal view; C) head and thorax in detail, lateral view, and D) dorsal view; E) ovipositor; F) tenth tergite; G) subgenital plate.
FIGURES 1–7. Ingaseius silvaticus n in A new genus and species of phytoseiid mite (Acari: Phytoseiidae) from the Brazilian Atlantic Forest
FIGURES 1–7. Ingaseius silvaticus n. sp., female. 1. Dorsal view of idiosoma; 2. Ventral view of idiosoma; 3. Chelicera; 4. Hipostome; 5. Tritosternum; 6. Leg IV; 7. Spermatheca.
FIGURES 8–10. Ingaseius silvaticus n in A new genus and species of phytoseiid mite (Acari: Phytoseiidae) from the Brazilian Atlantic Forest
FIGURES 8–10. Ingaseius silvaticus n. sp., male. 8. Dorsal view of idiosoma; 9. Ventral view of idiosoma; 10. Chelicera.
FIGURE 9 in An integrative appraisal of the diversification in the Atlantic forest genus Delomys (Rodentia: Cricetidae: Sigmodontinae) with the description of a new species
FIGURE 9. Karyotype of D. altimontanus from Campos do Itatiaia, Itatiaia, RJ, 2450m (MN 69712, male) in conventional staining
FIGURE 4 in An integrative appraisal of the diversification in the Atlantic forest genus Delomys (Rodentia: Cricetidae: Sigmodontinae) with the description of a new species
FIGURE 4. (a) Mandibles of (top to bottom) Delomys sp. nov. (MN69712, Campos do Itatiaia, Itatiaia, RJ, 2450m), D. dorsalis (MN78927, Maromba, Itatiaia, RJ, 1170m), the holotype of D. dorsalis collinus (BMNH14.2.23.12, Itatiaia, RJ, 1470m) and D. sublineatus (MN78674, Caucaia do Alto, SP, 930m). (b) Variation in the contact of the frontoparietal and frontosquamosal sutures of (top to bottom) Delomys sp. nov., D. dorsalis, the holotype of D. dorsalis collinus and D. sublineatus. Arrow points to the anterodorsal limit of squamosal. (c) Lateral view of skulls of (top to bottom) Delomys sp. nov., D. dorsalis, D. dorsalis collinus and D. sublineatus (MVZ183076, Estação Ecológica de Boracéia, SP, 935m). Abbreviations: ang—angular process, cor—coronoid process, fro—frontal, par—parietal, sig—sigmoid notch, squ—squamosal.
FIGURE 12 in An integrative appraisal of the diversification in the Atlantic forest genus Delomys (Rodentia: Cricetidae: Sigmodontinae) with the description of a new species
FIGURE 12. (a) Disjunct distribution of D. altimontanus and (b) statistical parsimony network depicting relationships between cytochrome b haplotypes from Caparaó (locality 6) and Itatiaia (localities 18, 21) mountain ranges. Circle sizes are proportional to haplotype frequencies and each line represents one mutational step. (c) Vector correlations among characters and CVA axes and (d) bivariate plot of most discriminant craniometric characters between Itatiaia and Caparaó populations.
FIGURE 8 in An integrative appraisal of the diversification in the Atlantic forest genus Delomys (Rodentia: Cricetidae: Sigmodontinae) with the description of a new species
FIGURE 8. Craniometric discrimination among species of Delomys: (a) CVA analysis among samples with karyotypic and/or molecular data, and (b) respective vector correlations among characters and CVA axes. (c) CVA analysis with sympatric samples of Delomys sp. nov. and D. dorsalis from Itatiaia Mt. highlighted, showing the allocation of the D. d. collinus holotype. (d) Bivariate plot of most discriminant craniometric characters to discriminate between Delomys sp. nov. and D. dorsalis with the measurements of D. d. collinus holotype included.
FIGURE 14 in An integrative appraisal of the diversification in the Atlantic forest genus Delomys (Rodentia: Cricetidae: Sigmodontinae) with the description of a new species
FIGURE 14. Craniometric discrimination among intraspecific clades of D. dorsalis: (a) CVA analysis among the three clades and (b) respective vector correlations among characters and CVA axes. Bivariate plot of the two most discriminant craniometric characters (c) between the Mantiqueira and Serra do Mar clades, and (d) between the Mantiqueira and Southern clades, also depicting the allocation of taxonomically important samples.
FIGURE 7 in An integrative appraisal of the diversification in the Atlantic forest genus Delomys (Rodentia: Cricetidae: Sigmodontinae) with the description of a new species
FIGURE 7. (a–c) Upper and (d─f) lower molar rows of D. altimontanus (MN69712, Campos do Itatiaia, Itatiaia, RJ, 2450m), D. dorsalis (MN60572, Brejo da Lapa, Itamonte, MG, 1843m) and the holotype of D. dorsalis collinus (BMNH14.2.23.12, Itatiaia, RJ, 1470m). Abbreviations: amf—anteromedian flexus, la—anterolabial conule, li—anterolingual conule, pf— protoflexus, pfd—protoflexid, pld—protolophid.
FIGURE 5 in An integrative appraisal of the diversification in the Atlantic forest genus Delomys (Rodentia: Cricetidae: Sigmodontinae) with the description of a new species
FIGURE 5. Dorsal and ventral views of skulls of (a) Delomys sp. nov. (MN69712, Campos do Itatiaia, Itatiaia, RJ, 2450m), (b) D. dorsalis (MN78927, Maromba, Itatiaia, RJ, 1170m), (c) D. dorsalis collinus (BMNH14.2.23.12, holotype, Itatiaia, RJ, 1470m) and D. sublineatus (MVZ183076, Estação Ecológica de Boracéia, SP, 935m). Abbreviations: mif—maxillary margin of incisive foramen, mpf—mesopterygoid fossa.
FIGURE 2 in An integrative appraisal of the diversification in the Atlantic forest genus Delomys (Rodentia: Cricetidae: Sigmodontinae) with the description of a new species
FIGURE 2. Collecting localities for specimens of Delomys sublineatus examined in this study. Acronyms refer to the Brazilian states of (ES) Espírito Santo, (MG) Minas Gerais, (RJ) Rio de Janeiro, (SP) São Paulo, (PR) Paraná, and (SC) Santa Catarina. All localities are listed in the Appendix.
FIGURE 11 in An integrative appraisal of the diversification in the Atlantic forest genus Delomys (Rodentia: Cricetidae: Sigmodontinae) with the description of a new species
FIGURE 11. Dorsal, ventral and lateral views of the skull of a specimen of D. altimontanus from Campos do Itatiaia, Itatiaia, RJ, 2450m (MN 69712, male).
FIGURE 10 in An integrative appraisal of the diversification in the Atlantic forest genus Delomys (Rodentia: Cricetidae: Sigmodontinae) with the description of a new species
FIGURE 10. Dorsal, lateral and ventral views of the skin of the holotype of D. altimontanus from Campos do Itatiaia, Itatiaia, RJ, 2450m (MN 69746, male).
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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.