Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
709
datasets available to search
ShareScore release 0.7.1
Dataset results
709 results for “Conocephalinae”
FIGURE 14 in Studies in Australian Tettigoniidae: Australian agraeciine katydids, two new genera from northern Australia (Tettigoniidae; Conocephalinae; Agraeciini)
FIGURE 14. Kapalgagraecia nauma Rentz, Su, Ueshima, Robinson gen. et sp. nov. A, tip of abdomen, holotype male. B, subgenital plate holotype male. C, subgenital plate paratopotype female. D, head of living paratopotype female.
FIGURE 1 in Studies in Australian Tettigoniidae: Australian agraeciine katydids, two new genera from northern Australia (Tettigoniidae; Conocephalinae; Agraeciini)
FIGURE 1. Armadillagraecia mataranka Rentz, Su, Ueshima, Robinson sp. nov. A, holotype male. B, paratopotype female, note spike of fastigium of the vertex is broken. C, Male and female abroad during the day on the flower of Hibiscus menzeliae in sandstone country, Jabiluka mine site, Kakadu National Park, Northern Territory. (Ian Morris photo.) D, Female atop a seedpod of Hibiscus menzeliae during the daytime in sandstone country, Jabiluka mine site, Kakadu National Park, Northern Territory. Many individuals of the species were observed at this site and many were feeding during the day on the seeds within the pods of this native plant. (Ian Morris photo.)
FIGURE 8 in Studies in Australian Tettigoniidae: Australian agraeciine katydids, two new genera from northern Australia (Tettigoniidae; Conocephalinae; Agraeciini)
FIGURE 8. Male cerci of Armadillagraecia and Kapalgagraecia species Rentz, Su, Ueshima, Robinson gen. et sp. nov. A, A. mataranka, dorsal view tip illustrating curvature; B, same species internal view. C, A. yerilla Rentz, Su, Ueshima, Robinson sp. nov., dorsal view illustrating curvature at tip; D, same species internal view. E, same species ventral view. F, A. triodiae Rentz, Su, Ueshima, Robinson sp. nov. dorsal view tip illustrating curvature. G, same species illustrating internal tooth. H, K. brayi Rentz, Su, Ueshima, Robinson sp. nov., dorsal view holotype male. I, K. nauma Rentz, Su, Ueshima, Robinson sp. nov., Pt Keates, NT, dorsal view. J, same internal. K, same ventral view.
FIGURE 6 in Studies in Australian Tettigoniidae: Australian agraeciine katydids, two new genera from northern Australia (Tettigoniidae; Conocephalinae; Agraeciini)
FIGURE 6. Fore tibiae of males of Armadillagraecia and Kapalgagraecia Rentz, Su, Ueshima, Robinson gen. nov. Illustrating fixed curved spines and their spacing. A, A. mataranka Rentz, Su, Ueshima, Robinson sp. nov., right leg, paratopotype. B, A. yerilla Rentz, Su, Ueshima, Robinson sp. nov., right leg, paratopotype. C, A. triodiae Rentz, Su, Ueshima, Robinson sp. nov., right leg, paratopotype. D, K. nauma Rentz, Su, Ueshima, Robinson sp. nov., left leg (from Pt Keates).
FIGURE 2 in A new species of Xestophrys Redtenbacher, 1891 (Orthoptera: Tettigoniidae; Conocephalinae; Copiphorini) from West Bengal, India
FIGURE 2. Xestophrys bengalensis sp. nov. (Male). A–Head & pronotum, dorsal view. B–Frons. C–Sternum, ventral view. D–Mirror of right tegmen, dorsal view. E–Stridulatory file of left tegmen, ventral view. F– Head & pronotum, lateral view. G– Stridulatory file of left tegmen, dorsal view. H–Apex of left tegmen, dorsal view. I–Fore femur, ventral view. J–Hind femur, ventral view. K–Abdominal apex, dorsal view. L–Abdominal apex, lateral view. M–Abdominal apex, apical view. N–Abdominal apex, ventral view; O–Left cercus, dorsal view.
FIGURE 1 in A new species of Xestophrys Redtenbacher, 1891 (Orthoptera: Tettigoniidae; Conocephalinae; Copiphorini) from West Bengal, India
FIGURE 1. Xestophrys bengalensis sp. nov. (Male) (scale 10mm). A–dorsal view. B–ventral view. C–lateral view.
FIGURE 15 in An account on some katydids of the tribes Agraeciini (Conocephalinae) and Meconematini (Meconematinae) from the highlands of western Sabah
FIGURE 15. Xiphidiopsis (Xiphidiopsis) sabahi Gorochov, 2008 ♂: habitus in lateral view (A), head and pronotum in dorsal (B) and lateral (C) views, abdominal apex in dorsal view (D), tenth abdominal apex in posterior view (E), cercus in lateral (F) and ventral (G) views. Scale bars: 5 mm (A), 1 mm (B–G).
FIGURE 5. Bispinolakis longicauda Ingrisch, 1998 in An account on some katydids of the tribes Agraeciini (Conocephalinae) and Meconematini (Meconematinae) from the highlands of western Sabah
FIGURE 5. Bispinolakis longicauda Ingrisch, 1998 ♂ in its natural environment on a branch at Tenompok.
FIGURE 6. Bispinolakis longicauda Ingrisch, 1998 in An account on some katydids of the tribes Agraeciini (Conocephalinae) and Meconematini (Meconematinae) from the highlands of western Sabah
FIGURE 6. Bispinolakis longicauda Ingrisch, 1998 ♀ in their natural environment on small trees at Tenompok.
FIGURE 13. Odonturisca epiproctalis Gorochov, 2008 in An account on some katydids of the tribes Agraeciini (Conocephalinae) and Meconematini (Meconematinae) from the highlands of western Sabah
FIGURE 13. Odonturisca epiproctalis Gorochov, 2008 ♂: habitus in lateral view (A), head and pronotum in dorsal (B) and lateral (C) views, abdominal apex in dorsal (D), dorso-posterior (E), lateral (F) and ventral (G) views, genitalia sclerotization (H). Scale bars: 5 mm (A), 1 mm (B–H).
FIGURE 4 in A new species of Conocephalus (Orthoptera: Tettigoniidae: Conocephalinae) from Argentina with extraordinarily broad-band ultrasound calling song
FIGURE 4. Calling song of Conocephalus tuyu: A. very short fragment of continuous calling, B. one syllable (26.5°C), C. linear spectrogram.
FIGURE 3 in A new species of Conocephalus (Orthoptera: Tettigoniidae: Conocephalinae) from Argentina with extraordinarily broad-band ultrasound calling song
FIGURE 3. Conocephalus tuyu (male paratype): anterior portion of body and abdomen tip in dorsal view.
FIGURE 5 in A new species of Conocephalus (Orthoptera: Tettigoniidae: Conocephalinae) from Argentina with extraordinarily broad-band ultrasound calling song
FIGURE 5. Distribution of Conocephalus tuyu known so far: A. general view; B. detail of records at the Atlantic coast of Buenos Aires (red rectangle in A).
FIGURE 1 in A new species of Conocephalus (Orthoptera: Tettigoniidae: Conocephalinae) from Argentina with extraordinarily broad-band ultrasound calling song
FIGURE 1. Live individuals of Conocephalus tuyu in situ (from Aguas Verdes): A. male (January 2022); B, C. female (February 2023).
FIGURE 2 in A new species of Conocephalus (Orthoptera: Tettigoniidae: Conocephalinae) from Argentina with extraordinarily broad-band ultrasound calling song
FIGURE 2. Conocephalus tuyu (male holotype): A. lateral, B. dorsal view, C. head in dorsal view, D. tegmina (mirror of left tegmen damaged in posterior left corner), E. cerci in dorsal view (right cercus piercing epiproct, right stylus of subgenital plate missing), F. same ventral, vertical scale bars 1 mm.
FIGURE 33. A–E in Revision of the genus Trichophallus Ingrisch, 1998 with notes on the genera Secsiva Walker, 1869 and Subrioides C.Willemse, 1966 (Orthoptera: Tettigoniidae: Conocephalinae: Agraeciini)
FIGURE 33. A–E, Trichophallus willemsei sp. nov. from Brown River (A), Mt. Tafa (B), Middle Fly River (C, E), Koitaki (D).—F–I, Trichophallus murua sp. nov. from Murua.—A–D, H: female subgenital plate in ventral view; E, G, Ovipositor; F, habitus female; I, subgenital plate in lateral view.—Abbreviation in I: l, basal lobe of ventral ovipositor valve.
FIGURE 32. A–E in Revision of the genus Trichophallus Ingrisch, 1998 with notes on the genera Secsiva Walker, 1869 and Subrioides C.Willemse, 1966 (Orthoptera: Tettigoniidae: Conocephalinae: Agraeciini)
FIGURE 32. A–E: Trichophallus murua sp. nov. from Murua, holotype; F–K: Trichophallus willemsei sp. nov. from Aroa Estate, holotype.—A, F, stridulatory file; B, G, supra-anal plate and cerci; C, H, subgenital plate and cerci; D–E, I–K, titillators in ventro-apical (D, I), oblique lateral (E, K), and apical view (J). I and J not to scale.
FIGURE 31 in Revision of the genus Trichophallus Ingrisch, 1998 with notes on the genera Secsiva Walker, 1869 and Subrioides C.Willemse, 1966 (Orthoptera: Tettigoniidae: Conocephalinae: Agraeciini)
FIGURE 31. Trichophallus uniformis (Willemse, 1966) females: A, E–F, subgenital plate and dorsal lobes of ventral ovipositor valves in lateral view; B, subgenital plate in ventral view; C, abdominal apex in lateral view; D, ovipositor.—A–D, female from Gazelle Peninsula; E, female from Rabauel; F, female from Vagau.—Abbreviations: de, basal dorsal expansion of subgenital plate; pl, plate with apical prolongations; op, oval projection from dorsal margin of ventral ovipositor valve.
FIGURE 30 in Revision of the genus Trichophallus Ingrisch, 1998 with notes on the genera Secsiva Walker, 1869 and Subrioides C.Willemse, 1966 (Orthoptera: Tettigoniidae: Conocephalinae: Agraeciini)
FIGURE 30. Trichophallus uniformis (Willemse, 1966) male: A, stridulatory file; B, habitus male with left wings spread; C, subgenital plate and cerci in ventral view; D, last abdominal tergite and cerci in dorsal view; E–G, titillators in ventro-apical (E), apical (F), and dorsal-proximal view (G). Male from Linga Linga Peninsula (New Britain).
FIGURE 29 in Revision of the genus Trichophallus Ingrisch, 1998 with notes on the genera Secsiva Walker, 1869 and Subrioides C.Willemse, 1966 (Orthoptera: Tettigoniidae: Conocephalinae: Agraeciini)
FIGURE 29. Trichophallus apicatus sp. nov. male: A, habitus lateral view; B, stridulatory file; C, end of abdomen with supraanal plate and cerci in dorsal view; D, end of abdomen with subgenital plate and cerci in ventral view; E, titillators.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.