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4,462 results for “South America”
FIGURES 66–67 in New species of Corotoca Schiødte, 1853 from South America and description of first instar larva
FIGURES 66–67. Labrum of adult. 66, Corotoca pseudomelantho Zilberman, sp. nov.; 67, C. melantho Schiødte, 1853. Red arrows indicate row of M2-D2-M1 setae and black indicate campaniform sensilla. Scale bars = 0.05 mm.
FIGURES 64–65 in New species of Corotoca Schiødte, 1853 from South America and description of first instar larva
FIGURES 64–65. Frontal view of adult head. 64, Corotoca pseudomelantho Zilberman, sp. nov.; 65, C. melantho Schiødte, 1853.
FIGURES 72–73 in New species of Corotoca Schiødte, 1853 from South America and description of first instar larva
FIGURES 72–73. Scheme of dorsal view of abdomen of Corotoca sp., illustration sexual dimorphism condition found in Corotoca melantho Schiødte, 1853 and Corotoca pseudomelantho Zilberman, sp. nov. 72, male; 73, female. Red arrows indicate sexual dimorphism.
FIGURES 70–71 in New species of Corotoca Schiødte, 1853 from South America and description of first instar larva
FIGURES 70–71. Posterior tibia of adult. 70, Corotoca pseudomelantho Zilberman, sp. nov.; C. fontesi Zilberman, 2018.
FIGURES 7–13 in New species of Corotoca Schiødte, 1853 from South America and description of first instar larva
FIGURES 7–13. Corotoca pseudomelantho Zilberman,sp. nov. 7, head (ventral); 8, antenna; 9, mandibles; 10, labrum; 11, maxilla; 12, labium; 13, post-mentum (arrow indicating non-delimitated area). Scale bars = 0.1 mm, except figs. 8 = 0.5 mm, 10, 13 = 0.05 mm.
FIGURES 34–41 in New species of Corotoca Schiødte, 1853 from South America and description of first instar larva
FIGURES 34–41. Corotoca pseudomelantho Zilberman, sp. nov., first instar larva. 34, 35, antena (dorsal, ventral); 36, labium; 37, 38, maxilla (ventral, dorsal); 39, mandible (dorsal); 40, labrum; 41, epipharynx. Scale bars = 0.1 mm, except 34, 35, 41 = 0.5 mm.
FIGURES 26–33 in New species of Corotoca Schiødte, 1853 from South America and description of first instar larva
FIGURES 26–33. Corotoca pseudomelantho Zilberman, sp. nov., first instar larva. 26, 27, habitus (dorsal, ventral); 28, 31, head (dorsal, ventral); 29 30, last segments VIII–X (dorsal, ventral); 32, thoracic spiracle; 33, posterior leg. Scale bars = 0.1 mm, except 26 = 0.5 mm. 32 = 0.025 mm.
FIGURES 48–50 in New species of Corotoca Schiødte, 1853 from South America and description of first instar larva
FIGURES 48–50. Corotoca melantho Schiødte, 1853. 48, post mentum; 49, labrum; 50, spermatheca. Scale bars = 48 = 0.1 mm, 49 = 0.5 mm, 50 = 0.05 mm.
FIGURES 4–6 in New species of Corotoca Schiødte, 1853 from South America and description of first instar larva
FIGURES 4–6 Corotoca pseudomelantho Zilberman, sp. nov., paratype male. 4–6, habitus (lateral, dorsal, ventral). Scale bars = 0.5 mm.
FIGURES 1–6. Lithoseopsis brasiliensis n in Lithoseopsis Mockford (Psocodea: Troctomorpha: Amphientomidae): a new species and first record for South America
FIGURES 1–6. Lithoseopsis brasiliensis n. sp. (Holotype female). 1. Front view of head. 2. Forewing. 3. Hindwing. 4. Subgenital plate. 5. Spermapore sclerite and gonapophyses. 6. Clunium, preclunial plate, right paraproct and epiproct. Scales in mm.
FIGURE 5 in Tonsuritermes, a new soldierless termite genus and two new species from South America (Blattaria: Isoptera: Termitidae: Apicotermitinae)
FIGURE 5. Tonsuritermes tucki sp. nov., structure of the frontal gland in worker type 1, A—Sagittal section of the head of Tonsuritermes tucki sp. nov. worker. The frontal gland is stretched in-between the two arrows. B—Transition between the head cuticle and highly modified glandular cuticle overlying the secretory cells. C—Remains of secretory cell ultrastructures. Abbreviations: br, brain (supraoesophageal ganglium); cl, clypeus; gc1, inner glandular cuticle; gc2, outer glandular cuticle; hc, head cuticle; hp, hypopharynx; lb, labrum; m, mitochondria; mm, mandibular muscles; n, nucleus; ph, pharynx; sc, remains of a secretory cell; sv, secretory vesicle.
FIGURE 4 in Tonsuritermes, a new soldierless termite genus and two new species from South America (Blattaria: Isoptera: Termitidae: Apicotermitinae)
FIGURE 4. Tonsuritermes tucki sp. nov., worker. Digestive tube in A—dorsal; B—right; C—ventral; D—left views; Eenteric valve armature; F—enlarged view of the a cushion. Specimens from lots MZUSP6840 (A–E) and MZUSP 10367 (F). Gut regions indicated in figs. A–D: C=crop, G=gizzard, M=mesenteron, MS= mixed segment, P1= ileum, P2= enteric valve, P3= paunch, P4= colon, P5=rectum.
FIGURE 3 in Tonsuritermes, a new soldierless termite genus and two new species from South America (Blattaria: Isoptera: Termitidae: Apicotermitinae)
FIGURE 3. Tonsuritermes, workers and imago. A—foreleg of the imago of T. tucki, sp. nov.; B—foreleg of the worker of T. tucki; C—foreleg of the worker of T. mathewsi, sp. nov.; D—detail of the texture and surrounding pilosity of the glandular opening, worker type 1 of T. tucki; E—detail of external margin of the wing of T. tucki; F—detail of inner margin of the wing; G—micrasters on membranous area; H—worker mandibles; I—imago mandibles. Specimens from lots MZUSP6480 (A–B, E– I), MZUSP12268 (C) and UF PU1104 (D).
FIGURE 2 in Tonsuritermes, a new soldierless termite genus and two new species from South America (Blattaria: Isoptera: Termitidae: Apicotermitinae)
FIGURE 2. Tonsuritermes, workers head and thorax. A—worker type 1 of T. tucki, sp. nov., dorsal view; B—same as A in lateral view; C—worker type 2 of T. tucki, sp. nov., dorsal view; D—same as C in lateral view. E—T. mathewsi sp. nov., dorsal view; F—same as E in lateral view. Specimens from lots MZUSP6480 (A–D) and MZUSP12268 (E–F).
FIGURE 1 in Tonsuritermes, a new soldierless termite genus and two new species from South America (Blattaria: Isoptera: Termitidae: Apicotermitinae)
FIGURE 1. Tonsuritermes tucki sp. nov., imago head and thorax. A—lateral view, B—dorsal view. Arrows point to the frontal marks. Specimen from lot MZUSP6480.
FIGURE 1 in Redescription of Orthopristis ruber and Orthopristis scapularis (Haemulidae: Perciformes), with a hybridization zone off the Atlantic coast of South America
FIGURE 1. Body in lateral view, Orthopristis ruber (left column). A–B. Syntypes of (MNHN-IC-A-0457 and MNHN-IC-A- 7821). C. Live specimen (not preserved, São Paulo state, image of Gabriel Togni). D–E. Fresh specimens (not preserved, D. Santa Catarina state, image of Leonardo Machado, E. Espírito Santo state, image of João Gasparini). F. Fixed specimen (AZUSC 1812, São Paulo). Body in lateral view, Orthopristis scapularis (right column). G. Holotype of O. scapularis (ANSP 45084). H. Live specimen (not preserved, Ceará state). I-J-K. Fresh specimens (not preserved, I. Rio Grande do Norte state, image of Alfredo Carvalho, J. Venezuela, image of James van Tassell & Ross Robertson, K. Amapá state, image of Marceniuk). L. Fixed specimen (MPEG 34292, Alagoas state).
FIGURE 4 in Redescription of Orthopristis ruber and Orthopristis scapularis (Haemulidae: Perciformes), with a hybridization zone off the Atlantic coast of South America
FIGURE 4. The Atlantic coast of South America, showing the geographic distribution of Orthopristis scapularis (green), Orthopristis ruber (yellow), Orthopristis hybrid (red), locations with material, in zoological collections, not examined (dark blue), and localities with record in the literature (light blue). Some symbols represent more than one locality or a large number of specimens. Non-type specimens are represented with circles, and type specimens are indicated by square
FIGURE 2 in Redescription of Orthopristis ruber and Orthopristis scapularis (Haemulidae: Perciformes), with a hybridization zone off the Atlantic coast of South America
FIGURE 2. Neighbor-joining tree of the species of Orthopristis based on partial sequences of the cytochrome oxidase c subunit I. Numers near nodes represent bootstrap support.
FIGURE 5 in A new species of Harpagobaetis Mol, with amended diagnosis of the genus, and new considerations on predatory species of Baetidae (Ephemeroptera) from South America
FIGURE 5. Harpagobaetis brigada sp. nov. Holotype. A. foreleg anterior surface; B. detail of dorsal margin of foreleg; C. detail of ventral margin of foreleg; D. foreclaw; E. mid claw; F. hind claw.
FIGURE 2 in A new species of Harpagobaetis Mol, with amended diagnosis of the genus, and new considerations on predatory species of Baetidae (Ephemeroptera) from South America
FIGURE 2. Harpagobaetis brigada sp. nov. A. gut content; B. details of gut content; C. details of cephalic capsule of prey (larva of Chironomidae); D. lateral view of head, predatory habit; E. frontal view of head, predatory habit.
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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.