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13,397 results for “sp. nov.”
Fig. 34 in Mumetopia interfeles sp. nov., a new species of Anthomyzidae (Diptera) occurring en masse in an urban grassy habitat in Chile: its taxonomy, phylogeny and biology
Fig. 34. Most parsimonious tree (L = 34 steps, CI = 0.85, RI = 0.82) resulting from cladistic morphological analysis of the Chamaebosca clade, ACCTRAN optimization. Full circles = non-homoplasious character transformations; empty circles = homoplasious character transformations. Numbers below branches indicate change to apomorphic (1, 2) or plesiomorphic (0) states of characters (reversals in case of (0)). Adapted from Roháček & Barber (2009: fig. 38).
Fig. 33 in Mumetopia interfeles sp. nov., a new species of Anthomyzidae (Diptera) occurring en masse in an urban grassy habitat in Chile: its taxonomy, phylogeny and biology
Fig. 33. RAxML hypothesis for relationships of Anthomyzidae based on DNA sequence data (12S, 16S, 28S, COI, COII, CytB, ITS2) representing 4583 characters, without the Anthomyza group of genera clade displayed. Numbers below nodes = bootstrap support values.
Figs 22–28 in Mumetopia interfeles sp. nov., a new species of Anthomyzidae (Diptera) occurring en masse in an urban grassy habitat in Chile: its taxonomy, phylogeny and biology
Figs 22–28. Mumetopia interfeles Roháček sp. nov., paratypes (SMOC MIT002–MIT006, MIT081– MIT083). 22. ♂, f 1, posterior view. 23. Female postabdomen, lateral view. 24. Same, dorsal view. 25. Same, ventral view. 26. Apex of male t2 and base of mid basitarsus, anterior view. 27. Apex of male t 3 and hind basitarsus with 3 thickened ventrobasal setulae (black arrow), anterior view. 28. Male f 3, anterior view. Scale bars: 22, 26–28 = 0.2 mm; 23–25 = 0.1 mm. For abbreviations see Material and methods.
FIG. 3 in Hyptidendron pulcherrimum Antar & Harley, sp. nov. (Hyptidinae, Lamiaceae), a new narrowly endemic species from Minas Gerais, Brazil
FIG. 3. — Hyptidendron pulcherrimum Antar & Harley, sp. nov.: A, habit and habitat; B, flowering branch, highlighting a flower, side view; C, branch; D, flower and inflorescence; E, flowering branch. Photo credits: A-C by P.M. Gonella; D, E by J.C. Lopes.
FIG. 2 in Hyptidendron pulcherrimum Antar & Harley, sp. nov. (Hyptidinae, Lamiaceae), a new narrowly endemic species from Minas Gerais, Brazil
FIG. 2. — Hyptidendron pulcherrimum Antar & Harley, sp. nov.: A, branch bearing leaves and inflorescences; B, leaf margin, adaxial surface with indumentum detail; C, leaf margin, abaxial surface with indumentum detail; D, immature cyme; E, part of an inflorescence showing calyx and bracteoles; F, flower, side view; G, corolla, side view; H, gynoecium and style, showing stylopodium; I, ovary; J, mature calyx; K, nutlet. Illustration by Carla Teixeira de Lima based on Lopes et al. 453 (SPF). Scale bars: A, 3 cm; B, C, not to scale; D, 6 mm; E, 7 mm; F, 14 mm; G, 12 mm; H, I, 2.5 mm; J, 7.5 mm; k, 2 mm.
FIG. 1 in Hyptidendron pulcherrimum Antar & Harley, sp. nov. (Hyptidinae, Lamiaceae), a new narrowly endemic species from Minas Gerais, Brazil
FIG. 1. — Distribution of Hyptidendron pulcherrimum Antar & Harley, sp. nov. (white squares) and Hyptidendron vauthieri (Briq.) Harley (white circles). In the small map, the pink shape shows the extension of the Cerrado domain and the green shape shows the extension of the Mata Atlântica domain.
Figs. 1–8. 1–6 in Dermaptera of Iran with description of Euborellia angustata sp. nov.
Figs. 1–8. 1–6 – Euborellia angustata sp. nov., holotype (male): 1 – habitus; 2 – head and pronotum; 3 – penultimate sternite, ventral view; 4 – genitalia; 5 – left paramere; 6 – denticulated pads of left distal lobe. 7–8 – Euborellia compressa (Borelli, 1907), holotype (male): 7 – left paramere; 8 – denticulated pads of left distal lobe.
Figs. 1–5 in Ochterus nicobarensis sp. nov. from Great Nicobar Biosphere Reserve, Andaman and Nicobar Islands, India (Hemiptera: Heteroptera: Ochteridae)
Figs. 1–5. Ochterus nicobarensis sp. nov. 1 – female, dorsal view. 2 – female head, frontal aspect. 3 – female subgenital plate, ventral view. 4–5 – male, right paramere (4 – general view; 5 – detail of apical portion).
Figs 1–17 in Selasia dembickyi sp. nov., the first member of Drilini (Coleoptera: Elateridae) from South East Asia, with the description of S. jenisi sp. nov. from Nepal
Figs 1–17. Habitus images of Selasia species. 1 – Selasia dembickyi sp. nov., dorsal view; 2 – S. dembickyi sp. nov., lateral view. 3 – S. jenisi sp. nov., dorsal view; 4 – S. jenisi sp. nov., lateral view. 5–6 – antenna (5 – S. dembickyi sp. nov.; 6 – S. jenisi sp. nov.). 7–8 – pronotum (7 – S. dembickyi sp. nov.; 8 – S. jenisi sp. nov.). 9–13 – Selasia dembickyi sp. nov.: 9 – abdominal sternite IX; 10 – abdominal tergite IX; 11 – abdominal tergite X; 12 – aedeagus, dorsal view; 13 – aedeagus, lateral view. 14–17 – Selasia jenisi sp. nov.: 14 – abdominal sternite IX; 15 – abdominal tergites IX–X; 16 – aedeagus, dorsal view; 17 – aedeagus, lateral view. Scale bars = 2.0 mm (Figs 1–4), 0.5 mm (Figs 5–9, 14–15), 0.2 mm (Figs 10–13, 16–17).
Figs 18–19 in Selasia dembickyi sp. nov., the first member of Drilini (Coleoptera: Elateridae) from South East Asia, with the description of S. jenisi sp. nov. from Nepal
Figs 18–19. Habitat of Selasia dembickyi sp. nov. in Pha Hom Pok Mt. in northern Thailand. Photos: L. Dembický.
Figs 21–22 in Termitotrox icarus sp. nov. (Coleoptera: Scarabaeidae): a new termitophilous beetle from Myanmar with observations of carrying behavior by host termites
Figs 21–22. Single large egg in a female Termitotrox icarus sp. nov. (21 – dorsal viewT 22 – lateral view).
Figs 18–19 in Termitotrox icarus sp. nov. (Coleoptera: Scarabaeidae): a new termitophilous beetle from Myanmar with observations of carrying behavior by host termites
Figs 18–19. Carrying behavior by host termite Odontotermes proformosanus Ahmad, 1965 to Termitotrox icarus sp. nov. (observed in laboratory).
Figs 14–17 in Termitotrox icarus sp. nov. (Coleoptera: Scarabaeidae): a new termitophilous beetle from Myanmar with observations of carrying behavior by host termites
Figs 14–17. Habitat of Termitotrox icarus sp. nov. 14–15 – termite mound of host termite Odontotermes proformosanus Ahmad, 1965T 16 – a fungus garden chamber of host termiteT 17 – alive specimen of Termitotrox icarus sp. nov. walking on the wall of fungus garden chamber.
Figs 9–13 in Termitotrox icarus sp. nov. (Coleoptera: Scarabaeidae): a new termitophilous beetle from Myanmar with observations of carrying behavior by host termites
Figs 9–13. Body parts of Termitotrox icarus sp. nov. (paratype male). 9 – epipharynx, ventral viewT 10 – elytra, dorsal viewT 11 – abdomen, ventral viewT 12 – pygidium, postero-lateral viewT 13 – aedeagus, dorsal view. Scale bars: 0.05 mm (Fig. 9)T 0.20 mm (Fig. 10)T 0.10 mm (Figs 11–13).
Figs 3–8 in Termitotrox icarus sp. nov. (Coleoptera: Scarabaeidae): a new termitophilous beetle from Myanmar with observations of carrying behavior by host termites
Figs 3–8. Habitus of Termitotrox icarus sp. nov. (holotype and paratypes). 3 – holotype male, dorsal viewT 4 – paratype male, ventral viewT 5 – paratype female, dorsal viewT 6 – ditto, ventral viewT 7 – holotype male, antero-lateral viewT 8 – paratype male, dorsal view (elytra removed). Scale bar = 1.0 mm.
Figs 1–2 in Termitotrox icarus sp. nov. (Coleoptera: Scarabaeidae): a new termitophilous beetle from Myanmar with observations of carrying behavior by host termites
Figs 1–2. Terminology used in species description. Head: CFS – clypeofrontal suture, CO – clypeal outline, CF – clypeofrons, GE – gena, AN – antenna, VE – vertex. Pronotum: ALL – anterolateral lobe, MC – median costa, SLC – sublateral costa, CD – central depression, PMC – paramedian costa, LC – lateral costa, MGC – marginal costa, BMS – basomedian section, BP – base of pronotum. Elytra: IS – interstria, ES – elytral stria, is1–is9 – interstriae 1 to 9, AS – apicosutural area, EPI – epipleuron. Ventral structures of thorax: PR – propectus, PLAP – posterolateral areas of propectus, PPS – postprosternal surface, MSV – mesoventrite, MTV – metaventrite. Abdomen: av1–av5 – abdominal ventrite 1 to 5, Py – pygidium. Legs: PF – profemur, PRT – protrochanter, PT – protibia, PRTA – protarsus, AC – anterior claw.
FIGURE 1 in Scottia birigida sp. nov. (Cypridoidea: Ostracoda) from western Honshu, Japan and a key to the subfamily Scottiinae Bronstein, 1947
FIGURE 1. Scottia birigida sp. nov. A: external view of right valve (paratype UMUT RA 28203). B: external view of left valve (paratype UMUT RA 28203). C: internal view of left valve (paratype UMUT RA 28202). D: internal view of right valve (paratype UMUT RA 28202). E: Dorsal view of carapace (paratype UMUT RA 28207). F: ventral view of carapace (paratype UMUT RA 28208). G: Detail of carapace surface (paratype UMUT RA 28203. Scale = 200 µm for A F and 6 µm for G.
FIGURE 1 in Crenidorsum aroidephagus Martin & Aguiar sp. nov. (Sternorrhyncha: Aleyrodidae), a New World whitefly species now colonising cultivated Araceae in Europe, Macaronesia and The Pacific Region
FIGURE 1. Computer-montage image of slidemounted puparium of Crenidorsum aroidephagus Martin & Aguiar sp. nov. ex- Philodendron gloriosum, Berlin Botanic Garden, with lingula unfolded and excluded from vasiform orifice.
FIGURE 2 in First occurrence of the genus Paraleucilla (Calcarea, Porifera) in the Atlantic Ocean: P. m a g n a sp. nov.
FIGURE 2. External morphology of Paraleucilla magna sp. nov. A — Sponge in situ; B — Preserved holotype; C — Detail of osculum and atrial cavity of holotype.
FIGURE 1 in First occurrence of the genus Paraleucilla (Calcarea, Porifera) in the Atlantic Ocean: P. m a g n a sp. nov.
FIGURE 1. Distribution of Paraleucilla magna sp. nov. 1 — Type locality, Praia Vermelha; 2 — Cagarras Archipelago; 3 — Arraial do Cabo (Rio de Janeiro State); 4 — Alcatrazes Archipelago (São Paulo State).
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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.