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713 results for “Pygmis”
FIGURE 15 in An annotated catalogue of the pygmy grasshoppers of the tribe Scelimenini Bolívar, 1887 (Orthoptera: Tetrigidae) with two new Scelimena species from the Malay Peninsula and Sumatra
FIGURE 15. Distribution of Scelimena species groups. Simplified postulated distribution map of Scelimena bellula species group, Scelimena discalis species group, Scelimena hexodon species group, Scelimena novaeguineae species group, Scelimena producta species group, and Scelimena spiculata species group.
FIGURE 14 in An annotated catalogue of the pygmy grasshoppers of the tribe Scelimenini Bolívar, 1887 (Orthoptera: Tetrigidae) with two new Scelimena species from the Malay Peninsula and Sumatra
FIGURE 14. Alive Scelimena producta (Serville, 1838) female, standing on a stone in Gunung Leuser NP (Indonesia: Sumatra). Photograph by Arthur Anker, reproduced with photographer's permission.
FIGURE 12 in An annotated catalogue of the pygmy grasshoppers of the tribe Scelimenini Bolívar, 1887 (Orthoptera: Tetrigidae) with two new Scelimena species from the Malay Peninsula and Sumatra
FIGURE 12. Male of Indoscelimena india (Hancock, 1907) comb. nov. from northeastern India. Photograph by Hojun Song, reproduced with photographer's permission. Scale bar 1 cm.
FIGURE 13 in An annotated catalogue of the pygmy grasshoppers of the tribe Scelimenini Bolívar, 1887 (Orthoptera: Tetrigidae) with two new Scelimena species from the Malay Peninsula and Sumatra
FIGURE 13. Two females of Scelimena rosacea (Hancock, 1915) comb. resurr.—red/orange and yellow color morphs from Tay Yen Tu Nature Reserve (North Vietnam) 10.VII.2013. Photograph by Jerome Constant, reproduced with photographer's permission.
FIGURE 11 in An annotated catalogue of the pygmy grasshoppers of the tribe Scelimenini Bolívar, 1887 (Orthoptera: Tetrigidae) with two new Scelimena species from the Malay Peninsula and Sumatra
FIGURE 11. Alive Scelimena hexodon (Haan, 1843) comb. nov. from Tawau Hills Park (Malaysia: Borneo: Sabah). Photograph by Chun Xing Wong Claveria, reproduced with photographer's permission.
FIGURE 8 in An annotated catalogue of the pygmy grasshoppers of the tribe Scelimenini Bolívar, 1887 (Orthoptera: Tetrigidae) with two new Scelimena species from the Malay Peninsula and Sumatra
FIGURE 8. Alive Discotettix belzebuth (Serville, 1838) female, standing on a fallen leaf in Sarawak (Malaysia: Borneo). Photograph by Arthur Anker, reproduced with photographer's permission.
FIGURE 6 in An annotated catalogue of the pygmy grasshoppers of the tribe Scelimenini Bolívar, 1887 (Orthoptera: Tetrigidae) with two new Scelimena species from the Malay Peninsula and Sumatra
FIGURE 6. Distribution of Scelimenini genera without Scelimena, Falconius, and Tegotettix. Simplified postulated distribution of Amphibotettix, Bidentatettix, Discotettix, Eufalconius, Euscelimena, Gavialidium, Indoscelimena, Paramphibotettix, Paragavialidium, Platygavialidium, Tagaloscelimena, and Tefrinda.
FIGURE 9 in An annotated catalogue of the pygmy grasshoppers of the tribe Scelimenini Bolívar, 1887 (Orthoptera: Tetrigidae) with two new Scelimena species from the Malay Peninsula and Sumatra
FIGURE 9. Alive Falconius cf. deceptor Günther, 1938 male, standing on a leaf in Danum Valley (Borneo: Malaysia: Sabah). Photograph by Paul Bertner, reproduced with photographer's permission.
FIGURE 2 in An annotated catalogue of the pygmy grasshoppers of the tribe Scelimenini Bolívar, 1887 (Orthoptera: Tetrigidae) with two new Scelimena species from the Malay Peninsula and Sumatra
FIGURE 2. Scelimena gombakensis sp. nov. face in anterior view (A), head in dorsal view (B), head and anterior part of pronotum in lateral (C) and dorsal (D) views, abdomen in ventral view (E), male subgenital plate in ventral (F) and lateral (G) views, female subgenital plate in ventral view (H) and ovipositor in lateral view (I). Scale bars = 1 mm. Photographs by Amira Aqilah Muhammad.
FIGURE 5 in An annotated catalogue of the pygmy grasshoppers of the tribe Scelimenini Bolívar, 1887 (Orthoptera: Tetrigidae) with two new Scelimena species from the Malay Peninsula and Sumatra
FIGURE 5. Scelimena marta sp. nov. male paratype (PT2), male paratype (PT1), habitus in dorsal (A) and lateral view (B), and face in anterior view (C). Photographs by Josip Skejo & Dhaneesh Bhaskar.
FIGURE 10 in An annotated catalogue of the pygmy grasshoppers of the tribe Scelimenini Bolívar, 1887 (Orthoptera: Tetrigidae) with two new Scelimena species from the Malay Peninsula and Sumatra
FIGURE 10. Gavialidium crocodilum (Saussure, 1862) male head in frontal (A) and dorsal (B) view, from Bolívar's Tetrigidae collection in MNCN. Photographs by Josip Skejo.
FIGURE 4 in An annotated catalogue of the pygmy grasshoppers of the tribe Scelimenini Bolívar, 1887 (Orthoptera: Tetrigidae) with two new Scelimena species from the Malay Peninsula and Sumatra
FIGURE 4. Scelimena marta sp. nov. male paratype (PT1), habitus in dorsal (A) and lateral view (B), and anterior half of the body in lateral view (C). Scale bars of A and B 5 mm, of C 2 mm. Photographs by Josip Skejo & Dhaneesh Bhaskar.
FIGURE 1 in An annotated catalogue of the pygmy grasshoppers of the tribe Scelimenini Bolívar, 1887 (Orthoptera: Tetrigidae) with two new Scelimena species from the Malay Peninsula and Sumatra
FIGURE 1. Scelimena gombakensis sp. nov. habitus in lateral (A, B) and dorsal (C, D) views; male holotype (A, C), female paratype (B, D). Scale bars = 5 mm. Photographs by Ming Kai Tan.
FIGURE 7 in An annotated catalogue of the pygmy grasshoppers of the tribe Scelimenini Bolívar, 1887 (Orthoptera: Tetrigidae) with two new Scelimena species from the Malay Peninsula and Sumatra
FIGURE 7. Female (A, B) and male (C, D) Amphibotettix logipes Hancock, 1906 from North Borneo, collected by John Waterstradt (MNCN Madrid). Scale bar 1 cm. Photographs by Josip Skejo & Dhaneesh Bhaskar.
FIGURE 3 in An annotated catalogue of the pygmy grasshoppers of the tribe Scelimenini Bolívar, 1887 (Orthoptera: Tetrigidae) with two new Scelimena species from the Malay Peninsula and Sumatra
FIGURE 3. Scelimena marta sp. nov. female holotype, habitus in dorsal (A) and lateral view (B), face in anterior view (C), and hind tarsus (D) in lateral view. Scale bars of A and B 5 mm, of C 2 mm, and of D 0.5 mm. Photographs by Josip Skejo & Dhaneesh Bhaskar.
Figure 2 in Nanotyrannus, a new genus of pygmy tyrannosaur, from the latest Cretaceous of Montana
Figure 2—Branching diagram of the tyrannosaurids and fheir close allies, with lateral views of the skulls shown in correct stratigraphic sequence. Nodes and the derived characters that define them: 1) Neotheropoda (Late Jurassic- Latest Cretaceous) — premaxillary tooth crowns strongly assymmetrical, with inner (lingual) face nearly flat and outer (buccal) face strongly convex; premax. symphysis U-shaped in dorsal view; intramandibular joint fully developed, with anterior prong of the angular penetrating into the cavity between the dentary and splenial. 2) Ceratosauridae (Late Jurassic) — premaxillary tooth count reduced to three; premaxillary incisors with thick, strong sulci and ridges on the inner face. 3) Advanced neotheropods (Late Jurassic-Latest Cretaceous) — occiput much deeper above the foramen magnum, as seen in posterior view; accessory antorbital fenestra present; posterior shafts of cervical ribs do not overlap one another; presacral column compresssed fore- to-aft relative to femur length; scapula blade very narrow throughout its length. 4) Allosauridae (LateJurassic) — parocdpital process bent downwards strongly; basituber with a deep notch in the posterior-ventral edge for the ilio-costalis cervicis-capitis muscle; sphenethmoid ossification weak. 5) Very advanced neotheropods (Early Cretaceous-Latest Cretaceous) — ascending process of astragulus very tall, wide transversely and thin front-to-back; nasals narrow. 6) Dromaeosauridae (Early Cretaceous-Latest Cretaceous (Deinonychus) — pubis turned backwards; second hindclaw very large and sickle-shaped; distal half of tail encased within basketwork of bony rods developed from chevrons and prezygapophyses. 7) Tyrannosauroidea (Early Cretaceous-Latest Cretaceous) — paroccipital process very deep top-to-bottom at the root; large excavation around the fenestra ovalis and pneumatization of the paroccipital root. 8) Acrocanthosaurids (Early Cretaceous) — neural spine of cervicals and dorsals elongated. 9) Advanced tvrannosauroids (Late Cretaceous) — occiput deeper above the supraoccipital wedge; metatarsal bundle very long and compressed side-to-side, with strong pinching of the proximal end of metatarsal III. 10) Ornithomimids + troödontids + birds +?oviraptorids (?Latest Jurassic-Latest Cretaceous) — periotic region with large depression and highly pneumatic. 11) Tyrannosauridae (Late Cretaceous) — adductor muscle scar developed forward over the frontals to a position opposite the orbits; squamosal-quadratojugal suture very long, straight and nearly parallel to the long axis of the skull, as seen in side view; supraoccipital ' wedge with two tabs of bone placed in tandem; first maxillary tooth like the four premaxillary teeth; all incisiform teeth very crowded and narrow across buccal face; parietal occipital wings very tall above the supraoccipital; large oval foramen in jugal. 12) Nanotyrannus (Latest Cretaceous, Lanciat Faunal Age) —very wide basicranial boxwork with flat ventral floor; verv wide frontal-orbital region with very narrow snout; parietal wing of occiput with sharp angle between dorsal and lateral edges. 13) Rough-snouted tyrannosaurids (Late Cretaceous) — dorsal surface of nasals very rough, with irregular longitucinal striae and ridges. 14) Daspletosaurus torosus (Late Cretaceous, Judithan Faunal Age) — snout and mandible short front-toback and deep; teeth large and reduced in number; lachrimal horn developed into blunt triangular apex. 15) Tyrannosaurids with anterior pneumatic foramina in basicranial boxwork (Late Cretaceous). 16) Ahoramus (Late Cretaceous, Nemegt Fauna) — multiple oval hornlets on nasals. 17) Massive snouted tyrannosaurids with anterior basicranial foramina (Late Cretaceous) — snouts and mandibles short and deep; tooth count reduced. 18) New genus and species from the Horseshoe Canyon Formation Late Cretaceous) — orbit closed off from below by prong of postorbital. 19) Tyrannosaurids with large anterior foramina. 20) Gorgosaurus (Late Cretaceous, Judithan Faunal Age) — lachrimal horn developed into apex that is directed forward. 21) Tyrannosaurids with large foramina and wide basicrania (Late Cretaceous) — orbit closed off from below by postorbital; lachrimal and postorbital swollen above orbits; lachrimal swollen around pneumatic foramen; maxillary tooth row curved more strongly; maxillary tooth count reduced; mandible deeper; basicranial boxwork wider; first maxillary tooth enlarged. 22) Tarbosaurus (Late Cretaceous, Nemegt Fauna) — tooth crowns swollen and thick for their height. 23) Tyrannosaurus (Latest Cretaceous, Lancian Fauna) — teeth strongly procumbent; mandible very deep; lachrimal and postorbital very swollen above and behind orbit; muscle attachment surface, for anterior pterygoideus, at posterior-dorsal corner of antorbital fenestra eliminated by swelling oflachrimal; pneumatic foramen in lachrimal surrounded by grossly swollen bone; basicranium compressed fore-to-aft and basitubera displaced forward against basipterygoid processes
FIGURES 3–5 in A new genus and a new species of pygmy mole cricket in Cretaceous amber from Burma (Orthoptera: Tridactylidae)
FIGURES 3–5 Paraxya hui sp. nov. 3. Holotype in the Cretaceous amber; 4. Body in left side view; 5. Body in right side view.
FIGURE 3 in Oriental macropterous leaf-mimic pygmy grasshoppers-genera Oxyphyllum and Paraphyllum (Orthoptera: Tetrigidae) and their taxonomic assignment
FIGURE 3. Alive male of Oxyphyllum pennatum Hancock, 1909 standing on a dicot leaf, from Korba (Chhattisgarh state, India). Photo Gupta & Chandra.
FIGURE 2. O in Oriental macropterous leaf-mimic pygmy grasshoppers-genera Oxyphyllum and Paraphyllum (Orthoptera: Tetrigidae) and their taxonomic assignment
FIGURE 2. O. pennatum, holotype (B, E), Chhattisgarh specimen (A, D, F, G, H, I) and Azad Jammu & Kashmir specimen (D). A, B—dorsal habitus [scale bar 2 mm]; C—lateral habitus [scale bar 15 mm]; D, E—head in frontal view [scale bar 1 mm]; F—fore leg [scale bar 0.5 mm]; G—mid leg; H—tarsus of the hind leg; I—hind femur.
FIGURE 1 in Oriental macropterous leaf-mimic pygmy grasshoppers-genera Oxyphyllum and Paraphyllum (Orthoptera: Tetrigidae) and their taxonomic assignment
FIGURE 1. Diversity and distribution of leaf-like Tetrigidae. A. Phyllotettix rhombeus (Felton, 1765) (holotype, photo Tumbrinck); B. Choriphyllum sagrai Serville, 1838 (photo Skejo); C. Lophotettix alticristatus Hancock, 1909 (holotype, photo Tumbrinck); D. Acmophyllum undulatum Karsch, 1890 (holotype A. nigropunctatum Bolívar, 1905, photo Skejo); E. Afrolarcus cf. inaequalis (Karsch, 1890) (photo Song); F. Ibeotettix alticrista (photo Skejo); G. Trypophyllum glabrifrons Karsch, 1890 (syntype Acmophyllum conradti Bolívar, 1905, photo Skejo); H. Xerophyllum platycoris simile (paratype of X. extensum Hancock, 1910, photo Tumbrinck); I. Lepocranus fuscus Devriese, 1991 (holotype, photo Skejo); J. Oxyphyllum pennatum Hancock, 1909 (photo Gupta & Chandra); K. Hedotettix cristatus Karny, 1915 (photo Skejo); L. Hymenotes triangularis Westwood, 1837 (photo Tumbrinck); M. Hypsaeus westwoodi Bolívar, 1887 (holotype, photo Tumbrinck); N. Misythus rectangularis Hebard, 1923 (photo Tumbrinck); O. Paraphyllum antennatum Hancock, 1913 (photo Tumbrinck); P. Holoarcus ferwillemsei Tumbrinck, 2014 (paratype, photo Tumbrinck).
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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.