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.
227,023
datasets available to search
ShareScore release 0.7.1
Dataset results
227,023 results for “new species”
Fig. 3 in Descriptions of two new Vietomartyria species (Lepidoptera, Micropterigidae) from China
Fig. 3. Male genitalia of Vietomartyria wuyunjiena sp. nov. A. Dorsal view, with phallus removed. B. Ditto, ventral view. C. Ditto, lateral view. D. Phallus, dorsal view. E. Ditto, ventral view. F. Ditto, lateral view.
Fig. 10 in Leiolima iberica, a new harvestman genus and species from the Iberian Peninsula (Arachnida, Opiliones, Sclerosomatidae)
Fig. 10. Orifices of repugnatorial glands of the type species of European genera of Leiobuninae in dorsal (upper) and lateral (lower) views. A. Leiolima iberica gen. et sp. nov. (male, ZUPV 4104). B. Nelima silvatica (Simon, 1879) (male, ZUPV 1316: Castarnés, Huesca, Spain). C. Leiobunum rotundum (Latreille, 1798) (male, ZUPV 5065: Oña, Burgos, Spain). D. Cosmobunus granarius Lucas, 1846 (male, ZUPV 1932: Hornos, Jaén, Spain). Coxae I were removed to improve vision and images have been resized in proportion to their respective prosomal width (A = 111 %; B = 125 %; C = 82 %; D = 73 %). Arrowheads in upper views point to the orifices. Scale bars: 0.1 mm.
Figures 17–22 in Cylindera (Conidera) mindoroana sp. n. (Coleoptera: Cicindelidae), a new tiger beetle species from the Philippines
Figures 17–22. Endophallic structures, arrows indicate possibly species-specific characters. 17–19) Left side. 17) C. mindoroana new species. 18) C. conicollis (Schaum, 1862). 19) C. mandibularis (Schaum, 1860). 20–22) Right side. 20) C. mindoroana new species. 21) C. conicollis (Schaum, 1862). 22) C. mandibularis (Schaum, 1860).
Figures 14–16 in Cylindera (Conidera) mindoroana sp. n. (Coleoptera: Cicindelidae), a new tiger beetle species from the Philippines
Figures 14–16. Median lobe of aedeagus. 14) C. mindoroana new species. 15) C. conicollis (Schaum, 1862). 16) C. mandibularis (Schaum, 1860).
Figures 1–12. Strongylaspis spp. 1–7 in A new species of Honduran Strongylaspis (Coleoptera: Cerambycidae: Prioninae)
Figures 1–12. Strongylaspis spp. 1–7) Strongylaspis antonkozlovi. 1) Dorsal habitus, holotype male. 2) Ventral habitus, holotype male. 3) Lateral habitus, holotype male. 4) Head, frontal view, holotype male. 5) Scutellum, holotype male. 6) Pronotal gibbosity of distal third, holotype male. 7) Dorsal habitus, paratype female. 8–12) Strongylaspis bullata, male. 8) Scutellum. 9) Head, frontal view. 10) Pronotal gibbosity.11) Dorsal habitus. 12) Ventral habitus.
Figure 9 in A new Colombian pest species of the genus Poecilocloeus Bruner (Orthoptera: Acrididae: Proctolabinae) on coffee, with a key to the Neotropical species
Figure 9. Accumulated mortality of Poecilocloeus coffeaphilus nymphs with a strain of Metarhizium acridum by the immersion method (T1) and spraying (T2), spraying with a commercial formulation of Metarhizium anisopliae (T3) and control treatment with water (T4).
Figure 7 in A new Colombian pest species of the genus Poecilocloeus Bruner (Orthoptera: Acrididae: Proctolabinae) on coffee, with a key to the Neotropical species
Figure 7. Damage caused by adults of Poecilocloeus coffeaphilus n. sp. on coffee plants. A) Close-up of leaf damage. B) Scrapings on the bark of stems and branches. C) Damage of ripe fruit. D-E) Damage of unripe and near ripe fruits. F) Fruits with the pulp consumed. G) Coffee fruits with the exocarp and pulp completely eaten off and the grains exposed.
F igs 1-4 in New Species of Australian Lestidae (Odonata)
F igs 1-4—Thoracic patterns of lestids: (1) Austrolestes psyche, lateral view; (2) Austrolestes minjerriba, lateral view; (3) Indolestes obiri, ♂, darkest specimen, slightly anterolateral view; (4) I. obiri, ♀, slightly anterolateral view. Scale 2 mm.
Figure 5 in A new Colombian pest species of the genus Poecilocloeus Bruner (Orthoptera: Acrididae: Proctolabinae) on coffee, with a key to the Neotropical species
Figure 5. Different stages of development of Poecilocloeus coffeaphilus n. sp. A) First instar. B) Second instar. C) Third instar. D) Fourth instar. E) Fifth instar. F) Sixth instar. G) Adult male. H) Adult female.
Figure 7 in The Trichoptera of Panama. VI. Seven new species of microcaddisflies (Insecta: Trichoptera: Hydroptilidae) from Mount Totumas Cloud Forest and Biological Reserve
Figure 7. Ochrotrichia anticheirion sp. n., male genitalia. A) Segments VIII–IX, lateral (base of phallus crosshatched). B) Segments IX–X, dorsal. C) Inferior appendages, ventral. D) Phallus, lateral. E) Phallus, dorsal.
Figure 8 in The Trichoptera of Panama. VI. Seven new species of microcaddisflies (Insecta: Trichoptera: Hydroptilidae) from Mount Totumas Cloud Forest and Biological Reserve
Figure 8. Rhyacopsyche totuma sp. n., male genitalia. A) Segments IX–X, lateral. B) Segments IX–X, dorsal. C) Inferior appendages, ventral. D) Phallus, lateral. E) Phallus, dorsal.
Figure 5 in The Trichoptera of Panama. VI. Seven new species of microcaddisflies (Insecta: Trichoptera: Hydroptilidae) from Mount Totumas Cloud Forest and Biological Reserve
Figure 5. Metrichia calla sp. n., male genitalia. A) Segments IX–X, lateral (base of phallus crosshatched). B) Segments IX–X, dorsal. C) Segment IX, ventral. D) Phallus, lateral. E) Phallus, dorsal.
Figure 4 in The Trichoptera of Panama. VI. Seven new species of microcaddisflies (Insecta: Trichoptera: Hydroptilidae) from Mount Totumas Cloud Forest and Biological Reserve
Figure 4. Metrichia brocha sp. n., male genitalia. A) Segments VII–X, lateral (base of phallus crosshatched). B) Segments IX–X, dorsal. C) Segment IX, ventral. D) Phallus, lateral. E) Phallus, dorsal.
Figure 6 in The Trichoptera of Panama. VI. Seven new species of microcaddisflies (Insecta: Trichoptera: Hydroptilidae) from Mount Totumas Cloud Forest and Biological Reserve
Figure 6. Neotrichia atopa sp. n., male genitalia. A) Segments VIII–X, lateral (base of phallus crosshatched). B) Segments IX–X, dorsal. C) Segment IX, ventral. D) Phallus, lateral. E) Phallus, dorsal.
Figs 6–8 in Two new species of Heleomyzidae (Diptera) from Czech Republic and Crimea
Figs 6–8. Heleomyza kovali sp. nov., male genitalia. 6 – paratype (Crimea), last two abdominal segments and genitalia sublaterally; 7 – holotype (Czech Republic, Jizerské hory PLA), genitalia laterally; 8 – paratype (Crimea), aedeagal complex and hypandrium, dorsal view. For abbreviations see page 268.
Figure 2 in The Trichoptera of Panama. VI. Seven new species of microcaddisflies (Insecta: Trichoptera: Hydroptilidae) from Mount Totumas Cloud Forest and Biological Reserve
Figure 2. Costatrichia devestiva sp. n., male genitalia. A) Segments VIII–X, and segment VII mesoventral process, lateral (base of phallus crosshatched). B) Segments IX–X, dorsal. C) Segments VIII–IX and segment VII mesoventral process, ventral. D) Phallus, lateral phallus, dorsal.
Fig. 5 in Four new species and new records of Manota (Diptera: Mycetophilidae) from Sulawesi, Indonesia
Fig. 5. Manota paulula Hippa & Ševčík, 2013 (North Sulawesi). A – hypopygium, dorsal view; B – hypopygium, ventral view; C – hypoproct and aedeagus, ventral view. Scale 0.10 mm.
Fig. 4 in Four new species and new records of Manota (Diptera: Mycetophilidae) from Sulawesi, Indonesia
Fig. 4. Manota spathigera. sp. nov. (holotype). A – hypopygium, dorsal view; B – hypopygium, ventral view; C – hypoproct and aedeagus, ventral view. Scale 0.10 mm.
Figs 9–14 in Two new species of Heleomyzidae (Diptera) from Czech Republic and Crimea
Figs 9–14. Comparison of males of Eccoptomera nevrlyi sp. nov. and E. ornata Loew, 1862. 9–11, 13–14 – Eccoptomera nevrlyi: 9 – head and thorax, dorsal view; 10 – left wing, lateral view; 11 – hind leg, inner lateral view; 13 – head, anterior view; 14 – head and antennae, lateral view. 12 – E. ornata, basal part of hind leg of E. ornata, inner lateral view.
FIG. 6. — Cynelos stenos n in A new species of the amphicyonid carnivore Cynelos Jourdan, 1862 from the early Miocene of North America
FIG. 6. — Cynelos stenos n. sp., UNSM 44723, Runningwater Formation, Runningwater Quarry (early Hemingfordian), Box Butte Co., Nebraska. Palatal view of the cranium with right P2-M3 (broken P1) and left P3-M3, partial P2, and P1 alveolus. Plant roots have eroded the enamel on the right M1-M2. Scale bar: 3 cm.
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.