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21,842 results for “Three new species”
Figure 5 in Three new species of Bruggmannia Tavares, 1906 (Diptera: Cecidomyiidae) from Brazil and description of male and larva of B. monteiroi Maia & Couri, 1993
Figure 5 Bruggmannia gaucha, sp. n., male: a) 3rd flagellomere, b) 10th – 12th flagellomeres, c) Wing, d) Tarsal claw, foreleg, lateral view, e) Abdominal segments, f) Terminalia, dorsal view.
Figure 1 in Three new species of Bruggmannia Tavares, 1906 (Diptera: Cecidomyiidae) from Brazil and description of male and larva of B. monteiroi Maia & Couri, 1993
Figure 1 Studied area and host plant: a) Restinga de Maricá (Maricá, RJ), b) Guapira opposita (Vell.) Reitz (Nyctaginaceae).
Figure 1 Pseudosympycnus Robinson. Habitus lateral. A. P in Three new species of Pseudosympycnus (Diptera, Dolichopodidae) from Peru and an updated key to the species
Figure 1 Pseudosympycnus Robinson. Habitus lateral. A. P. bicolor Robinson, holotype ♂; B. P. latitarsus sp. nov., holotype ♂ (pre-dissection); C. P. pennipes sp. nov., holotype ♂; D. P. rafaeli sp. nov., holotype ♂. Scale bars = 2 mm.
Figure 7 in Three new species of Pseudosympycnus (Diptera, Dolichopodidae) from Peru and an updated key to the species
Figure 7 Type-locality of Pseudosympycnus pennipes sp. nov. and Pseudosympycnus latitarsus sp. nov. (Peru, Cusco, Quincemil). Photograph provided by DM Takiya.
Figure 3 Pseudosympycnus Robinson. Male tarsus I and III respectively. A–B. P in Three new species of Pseudosympycnus (Diptera, Dolichopodidae) from Peru and an updated key to the species
Figure 3 Pseudosympycnus Robinson. Male tarsus I and III respectively. A–B. P. pennipes sp. nov., holotype ♂. A. Tarsus I. B. Tarsus III; C–D. P. latitarsus sp. nov., holotype ♂. C. Tarsus I. D. Tarsus III, short dorsal projection on IIIt highlighted; E–F. P. rafaeli sp. nov., holotype ♂. E. Tarsus I. F. Tarsus III. Scale bars = 0.2 mm. Abbreviations: It = fore 3 1–5 tarsomeres 1 to 5; IIIt1–5: hind tarsomeres 1 to 5
Figure 2 in Three new species of Pseudosympycnus (Diptera, Dolichopodidae) from Peru and an updated key to the species
Figure 2 Pseudosympycnus Robinson. Head in anterior and lateral views respectively. A–B. P. pennipes sp. nov., holotype ♂. A. Head, anterior view. B. Head, lateral view; C–D. P. latitarsus sp. nov., holotype ♂. C. Head, anterior view. D. Head, lateral view; E–F. P. rafaeli sp. nov., holotype ♂ E. Head, anterior view.F. Head, lateral view. Scale bars = 0.2 mm.
Figure 6 in Three new species of Pseudosympycnus (Diptera, Dolichopodidae) from Peru and an updated key to the species
Figure 6 Pseudosympycnus latipes (Parent), identified specimen from Peru. Hypopygium, left lateral view. Scale bars = 0.1 mm.
Figures 9. a in Three new species of Bruggmanniella Tavares, 1909 (Diptera, Cecidomyiidae) from Brazil with a key to species
Figures 9. a) B. maytenuse, larva, prothoracic spatula, ventral view. b) B. duguetiae, adult head, frontal view, from Urso-Guimarães and Amorim (2004). c) B. bumeliae, larva, prothoracic spatula, sternal and lateral papillae, ventral view, from Felt (1907). d-e) B. actinodaphnes, from Tokuda and Yukawa (2006): d) male hypoproct, dorsal view; e) pupal apices of antennal horns, frontal view. f) B. cinnamomi, male hypoproct, dorsal view, from Tokuda and Yukawa (2006). g-i) pupal apices of antennal horns, frontal view: g) B. cinnamomi, from Tokuda and Yukawa (2006); h) B. bumeliae, from Felt (1907); i) B. oblita, from Tavares (1920). Figures c, e, g-i without scales in the original drawings. Scale bars in mm.
Figures 4 in Three new species of Bruggmanniella Tavares, 1909 (Diptera, Cecidomyiidae) from Brazil with a key to species
Figures 4. Bruggmanniella notatae new species: a) female head, frontal view; b) male flagellomere 4; c) female flagellomere 6; d) female tarsal claw and empodium of midleg; e) male, abdominal segments 6–8, dorsolateral view; f) male, terminalia, dorsolateral view; g) female, abdominal segments 5 – 8, dorsolateral view. Scale bars in millimeters (mm).
Figures 3 in Three new species of Bruggmanniella Tavares, 1909 (Diptera, Cecidomyiidae) from Brazil with a key to species
Figures 3. Bruggmanniella miconiae new species:a) pupa, cephalic region and prothoracic spiracle, frontal view; b) pupa, apical plate with integument detail and prothoracic right side, dorsal view; c) pupa, abdominal segment 5 with dorsal spines, dorsolateral view; d) pupa male, terminal segment, lateral view; e) larva, spatula, lateral and sternal papillae, ventral view. Scale bars in millimeters (mm).
Figure 8. a in Three new species of Bruggmanniella Tavares, 1909 (Diptera, Cecidomyiidae) from Brazil with a key to species
Figure 8. a) Bruggmanniella cinnamomi, larva, prothoracic spatula, sternal and lateral papillae, ventral view,from Tokuda and Yukawa (2006). b) B. byrsonimae, pupal apices of antennal horns, frontal view.c) B.braziliensis, tarsal claw and empodium, from Tavares (1909), without scale bar.d-e) female fifth flagellomere: d) B. ingae, fromUrso-Guimarães and Amorim (2004); e) B. byrsonimae. f-g) larva, prothoracic spatula, sternal and lateral papillae, ventral view (original figures without scale bar): f) B. doliocarpi; g) B. persae, and pleural papillae, from Gagné et al. (2004). h-i) pupal apices of antennal horns, frontal view: h) B. persae, from Gagné et al. (2004); i) B. maytenuse. Scale bars in mm, except for figure h (in µm).
Figs. 69–77 in Three new species of Pelidnota MacLeay (Coleoptera, Scarabaeidae, Rutelinae) and new distributional records from northeast Brazil
Figs. 69–77. Labels attached to the hotypes. 69–71, Pelidnota beckeri sp. nov.; 72–74, P. nordestina sp. nov.; 75–77, P. pernambucana sp. nov.
Figs. 47–52 in Three new species of Pelidnota MacLeay (Coleoptera, Scarabaeidae, Rutelinae) and new distributional records from northeast Brazil
Figs. 47–52. Anterior tarsal claws of male and left metatibia of female in lateral view. 47–50, anterior tarsal claws of male; 47, Pelidnota beckeri sp. nov.; 48, P.unicolor (Drury); 49, P. nordestina sp. nov.; 50, P. pernambucana sp. nov.; 51 and 52, metatibia of female; 51, P. beckeri sp. nov., a spine-like seta; 52, P. unicolor (Drury), a spine (cuticular projection). Scale bars: Figs. 47–50 = 0.500 mm, Figs. 51 and 52 = 1.0 mm.
Figs. 25–28. Mouthparts. 25 and 26 in Three new species of Pelidnota MacLeay (Coleoptera, Scarabaeidae, Rutelinae) and new distributional records from northeast Brazil
Figs. 25–28. Mouthparts. 25 and 26, left maxilla in dorsal view; 25, P. beckeri sp. nov.; 26, P. unicolor (Drury); 27–28, left maxilla in dorsal view; 27, Pelidnota nordestina sp. nov.; 28, P. pernambucana sp. nov. Scale bars: Figs. 25–28 = 2.0 mm.
Figs. 17–24. Mouthparts. 17–20 in Three new species of Pelidnota MacLeay (Coleoptera, Scarabaeidae, Rutelinae) and new distributional records from northeast Brazil
Figs. 17–24. Mouthparts. 17–20, labrum in frontal view; 17, P. beckeri sp. nov.; 18, P. unicolor (Drury); 19, P. nordestina sp. nov.; 20, P. pernambucana sp. nov.; 21–24, left mandible in dorsolateral view; 21, Pelidnota beckeri sp. nov.; 22, P. unicolor (Drury); 23, P. nordestina sp. nov.; 24, P. pernambucana sp. nov. Scale bars: Figs. 17–24 = 2.0 mm.
Figs. 1–10. Pelidnota. 1–8 in Three new species of Pelidnota MacLeay (Coleoptera, Scarabaeidae, Rutelinae) and new distributional records from northeast Brazil
Figs. 1–10. Pelidnota. 1–8, Pelidnota beckeri sp. nov.; 1–3, male holotype (dorsal, ventral, lateral); 4–6, female paratype (dorsal, ventral, lateral); 7–8, clypeus in dorsal view (male, female); 9–10, P. unicolor (Drury, 1778) (dorsal, lateral). Scale bars: Figs. 1–6 = 9.0 mm, Figs. 7–8 = 2.5 mm, Figs. 9–10 = 8.2 mm.
Figures 8–16 in The Scopaeus kokodanus species group (Coleoptera: Staphylinidae: Paederinae) from New Guinea and the Solomon Islands, with description of three new species
Figures 8–16. Apical portion of aedeagus in lateral (8, 11, 14), ventral (9, 12, 15), dorsal view (10, 13, 16) of Scopaeus arfakmontium, holotype, Indonesia, West Papua, Arfak Mts (8–10), S. balkei, holotype, Indonesia, Papua, Cyclops Mts (11–13), S. potamides, holotype, Solomon Islands, Kolombangara (14–16). Abbreviations: al – apical lobes, dl – dorsal lobe, f – flagellum, ll – lateral lobe.
Fig. 3A–M in Taxonomic Studies on Three Marine Ciliates from China, Including a New Species (Ciliophora, Cyrtophorida)
Fig. 3A–M. Trochilioides recta from life (A, B, E–G, K) and after protargol impregnation (C, D, H–J, L, M). A – ventral view of a typical individual; B, F – right view, arrowhead (F) indicates contractile vacuole; C, D – to show infraciliature, arrows mark kinetosome-like granules at base of podite; E, G – ventral view, arrowheads (E) point to tooth and arrow (G) shows podite; H – anterior portion, double arrowheads point to circumoral kineties, arrow refers to preoral kinety, arrowhead indicates terminal fragment; I – posterior portion, arrow marks kinetosome-like granules at base of podite; J – anterior portion, arrows point to postoral kineties; K – details of cytoplasm, arrows show contractile vacuoles, arrowheads refer to nematodesmal rods; L – right portion of ventral side, arrowhead points to equatorial fragment; M – infraciliature. Co – circumoral kineties, EF – equatorial fragment, FvK – frontoventral kineties, Ma – macronucleus, Pr – preoral kinety, TF – terminal fragment. Scale bars: 20 µm (A, C), 15 µm (E, G, M).
Fig. 1A–M in Taxonomic Studies on Three Marine Ciliates from China, Including a New Species (Ciliophora, Cyrtophorida)
Fig. 1A–M. Orthotrochilia sinica spec. nov. from life (A–C, F–J, L) and after protargol impregnation (D, E, K, M). A – ventral view of a representative individual; B, L – lateral view; C – to show contractile vacuoles (arrowheads) and the furrow in dorsal side; D, E – infraciliature of ventral (D) and dorsal (E) side; F, G – ventral view, arrow (F) indicates cytostome and arrowheads (G) mark contractile vacuoles; H – dorsal view; I, J – ventral view of different individuals, arrowhead (I) indicates the podite; K – posterior portion; M – infraciliature. EF – equatorial fragment, Ma – macronucleus, PK – perioral kineties, TF – terminal fragment. Scale bars: 30 μm.
Fig. 2 in Morphological and molecular characteristics of seven Sarcocystis species from sika deer (Cervus nippon centralis) in Japan, including three new species
Fig. 2. Light microscopic appearance of sarcocysts isolated from sika deer from Gifu Prefecture, Central Japan. a-d Thumb-like (a, b) and elongated finger-like (c, d) protrusions (P) of S. japonica. e, f Finger-like protrusions in S. cf. tarandi (e) and S. matsuoae (f). g, h Hair-like protrusions in S. pilosa (g) and S. gjerdei (h). i Indistinct protrusions on cyst S. cf. taeniata. j, k Oval sarcocyst of S. ovalis (j); cyst surrounded by fibrous layer (FL), making the slanting tongue-like protrusions (arrow) nearly invisible (k).
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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.