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.
1,946
datasets available to search
ShareScore release 0.9.0
Dataset results
1,946 results for “immature stages”
Figs 37–38 in Immature stages and biology of the enigmatic oxyporine rove beetles, with new data on Oxyporus larvae from the Russian Far East (Coleoptera: Staphylinidae)
Figs 37–38. Third instar larva of Oxyporus procerus Kraatz, 1879, apex of abdomen, mesothoracic leg. 37 – apex of abdomen, dorsal view; 38 – mesothoracic leg, posterior view.
Figs 28–34 in Immature stages and biology of the enigmatic oxyporine rove beetles, with new data on Oxyporus larvae from the Russian Far East (Coleoptera: Staphylinidae)
Figs 28–34. Third instar larva of Oxyporus procerus Kraatz, 1879, head morphology. 28 – head, dorsal view; 29 – head, ventral view; 30 – mandible, dorsal view; 31 – maxilla, ventral view; 32 – maxilla, dorsal view; 33 – labium, dorsal view; 34 – antenna, dorsal view.
Figs 1–6 in Immature stages and biology of the enigmatic oxyporine rove beetles, with new data on Oxyporus larvae from the Russian Far East (Coleoptera: Staphylinidae)
Figs 1–6. Third instar larvae and adults of Oxyporus spp. general view. 1 – imago of O. maxillosus Fabricius, 1775, dorsal view; 2 – imago of O. procerus Kraatz, 1879, dorsal view; 3 – imago of O. (P.) melanocephalus Kirschenblatt, 1938, dorsal view; 4 – larva of O. maxillosus, lateral view; 5 – larva of O. (P.) melanocephalus, lateral view; 6 – larva of O. (P.) melanocephalus, head and thorax in ventral view.
Figs 7–14 in Immature stages and biology of the enigmatic oxyporine rove beetles, with new data on Oxyporus larvae from the Russian Far East (Coleoptera: Staphylinidae)
Figs 7–14. Third instar larva of Oxyporus maxillosus Fabricius, 1775, head morphology. 7 – head, dorsal view; 8 – head, ventral view; 9 – antenna, dorsal view; 10 – mandible, dorsal view; 11 – maxilla, dorsal view; 12 – labium, dorsal view; 13 – labium, lateral view; 14 – maxilla, ventral view.
Figure 45 in Economically Beneficial Ground Beetles. The specialized predators Pheropsophus aequinoctialis (L.) and Stenaptinus jessoensis (Morawitz): Their laboratory behavior and descriptions of immature stages (Coleoptera: Carabidae: Brachininae)
Figure 45. Pupa of P. aequinoctialis, dorsal (left), ventral (middle), and left (right) lateral aspects
Figures 39-44. 39 in Economically Beneficial Ground Beetles. The specialized predators Pheropsophus aequinoctialis (L.) and Stenaptinus jessoensis (Morawitz): Their laboratory behavior and descriptions of immature stages (Coleoptera: Carabidae: Brachininae)
Figures 39-44. 39 – Th orax (dorsal aspect) of P. aequinoctialis, third instar; legs not shown. 40 – Thorax (ventral aspect) of P. aequinoctialis, third instar; legs not shown. 41 – Abdominal terga I & II (dorsal aspect) of P. aequinoctialis, third instar. 42 – Abdominal sterna I & II (ventral aspect) of P. aequinoctialis, third instar. 43 – Abdominal terga VII to X (dorsal aspect) of P. aequinoctialis, third instar. 44 – Abdominal sterna VII to X (ventral aspect) of P. aequinoctialis, third instar.
Fig. 15 in Designation of a new family group name, Tonzidae fam. nov., for the genus Tonza (Lepidoptera, Yponomeutoidea), based on immature stages of Tonza citrorrhoa
Fig. 15. Biology of Bedellia somnulentella Zeller, 1847, Bedelliidae Stainton, 1849, and its hostplants. A–B, D–L. Ipomoea sp. C. Calystegia sp. A–C. Leaves and mines. D. Blotch mines by later larva. E. Blotch mines and frass on abaxial side of leaf. F. Young larva and later larva. G. Later larva. H. Later larva forming new mine. I. Pupa, dorsal view. J. Lateral view. K. Pupa at the joint of some cross silken threads. Abbreviations: fr = frass.
FIGURE 6 in Morphology of immature stages of Pyrearinus pumilus (Candèze, 1863) (Coleoptera: Elateridae: Pyrophorini): the click beetle responsible for the luminous canga caves in the state of Pará, Brazil
FIGURE 6. Uncorrected in vivo bioluminescence spectrum of Pyrearinus pumilus larva.
Fig. 7 in Morphology of immature stages of Helophorus (Gephelophorus) auriculatus (Coleoptera, Helophoridae)
Fig. 7. Third instar larva of Helophorus auriculatus Sharp, 1884. A – antenna, dorsal (left) and ventral (right) surface, both drawn from dorsal view, gAN omitted; B – mandible, dorsal view; C – ventral surface of basal part of mandible; D – maxilla, dorsal (left) and ventral (right) surface, both drawn from dorsal view; E – labium, dorsal view (left) and labium and its adjacent structure, ventral view (right), gAN omitted.
Fig. 4 in Morphology of immature stages of Helophorus (Gephelophorus) auriculatus (Coleoptera, Helophoridae)
Fig. 4. First instar larva of Helophorus auriculatus Sharp, 1884. Head appendages. A, B – antenna, dorsal (A) and ventral (B) view; C–E – mandibles (C – right mandible, dorsal view, D – right mandible, ventral surface (drawn from dorsal), E – left mandible, dorsal view); F–H – maxilla (F – ventral view, gMX omitted; G, H – maxilla, slightly modified by pressure of cover glass for examination, dorsal (G) and ventral (H) face, both drawn from dorsal view). I–K – labium, dorsal (I), dorsolateral (J), ventral (K) view.
Fig. 8. Helophorus auriculatus Sharp, 1884 in Morphology of immature stages of Helophorus (Gephelophorus) auriculatus (Coleoptera, Helophoridae)
Fig. 8. Helophorus auriculatus Sharp, 1884, sclerites on ventral prothoracic segment of third instar larva.
Fig. 1 in Morphology of immature stages of Helophorus (Gephelophorus) auriculatus (Coleoptera, Helophoridae)
Fig. 1. Immature stages of Helophorus auriculatus Sharp, 1884. A, B – egg-case; C–H – whole larva; C, D – first instar, dorsal (C) and ventral (D) view; E – second instar, dorsal view; F–H – third instar, dorsal (F), lateral (G), ventral (H) view; I–K – ventral structure of nasale tooth (I – first instar, from ventral side; J – second instar, from dorsal side; K – third instar, from ventral side).
Fig. 5 in Morphology of immature stages of Helophorus (Gephelophorus) auriculatus (Coleoptera, Helophoridae)
Fig. 5. Larvae of Helophorus auriculatus Sharp, 1884. A – head, second instar larva, dorsal (left) and ventral (right) view; B – head, third instar larva, dorsal (left) and ventral (right) view; C – posterior leg, first instar, anterior view; D – posterior leg, third instar, anterior view; E – abdominal apex, third instar, dorsal view.
Figure 7 from: Gosik R, Skuhrovec J, Caldara R, Toševski I (2020) Immature stages of Palearctic Mecinus species (Coleoptera, Curculionidae, Curculioninae): morphological characters diagnostic at genus and species levels. ZooKeys 939: 87-165. https://doi.org/10.3897/zookeys.939.50612
Figure 7 Mecinus pirazzolii mature larva, habitus and chaetotaxy A habitus of the body and frontal view of the head B lateral view of thoracic segments C lateral view of abdominal segment I D lateral view of abdominal segments VII–X. Abbreviations: Th. I–III – number of thoracic segments, Abd. I–X – number of abominal segments, setae: as – alar, ds – dorsal, eps – epipleural, eus – eusternal, lsts – laterosternal, pda – pedal, pds – postdorsal, prns – pronotal, prs – prodorsal, ps – pleural, ss – spiracular, sts – sternal, ts – terminal.
Figure 4 from: Gosik R, Skuhrovec J, Caldara R, Toševski I (2020) Immature stages of Palearctic Mecinus species (Coleoptera, Curculionidae, Curculioninae): morphological characters diagnostic at genus and species levels. ZooKeys 939: 87-165. https://doi.org/10.3897/zookeys.939.50612
Figure 4 Mecinus labilis mature larva, habitus and chaetotaxy A habitus of the body and frontal view of the head B lateral view of thoracic segments C lateral view of abdominal segment I D lateral view of abdominal segments VII–X. Abbreviations: Th. I–III – number of thoracic segments, Abd. I–X – number of abominal segments, setae: as – alar, ds – dorsal, eps – epipleural, eus – eusternal, lsts – laterosternal, pda – pedal, pds – postdorsal, prns – pronotal, prs – prodorsal, ps – pleural, ss – spiracular, sts – sternal, ts – terminal.
Figure 36 from: Gosik R, Skuhrovec J, Caldara R, Toševski I (2020) Immature stages of Palearctic Mecinus species (Coleoptera, Curculionidae, Curculioninae): morphological characters diagnostic at genus and species levels. ZooKeys 939: 87-165. https://doi.org/10.3897/zookeys.939.50612
Figure 36 Mecinus peterharrisi pupa habitus and chaetotaxy A ventral view B lateral view C dorsal view. Abbreviations: Th. I–III – number of thoracic segments, Abd. I–IX – number of abdominal segments, ur – urogomphi, setae: as – apical, d – dorsal, ds – discal, fes – femoral, l – lateral, os – orbital, pls – posterolateral, rs – rostral, sls – superlateral.
Figure 33 from: Gosik R, Skuhrovec J, Caldara R, Toševski I (2020) Immature stages of Palearctic Mecinus species (Coleoptera, Curculionidae, Curculioninae): morphological characters diagnostic at genus and species levels. ZooKeys 939: 87-165. https://doi.org/10.3897/zookeys.939.50612
Figure 33 Mecinus laeviceps pupa habitus and chaetotaxy A ventral view B lateral view C dorsal view. Abbreviations: Th. I–III – number of thoracic segments, Abd. I–IX – number of abdominal segments, ur – urogomphi, setae: as – apical, d – dorsal, ds – discal, fes – femoral, l, ls – lateral, os – orbital, sls – postantennal, pls – posterolateral, rs – rostral.
Figure 30 from: Gosik R, Skuhrovec J, Caldara R, Toševski I (2020) Immature stages of Palearctic Mecinus species (Coleoptera, Curculionidae, Curculioninae): morphological characters diagnostic at genus and species levels. ZooKeys 939: 87-165. https://doi.org/10.3897/zookeys.939.50612
Figure 30 Mecinus heydenii pupa habitus and chaetotaxy A ventral view B lateral view C dorsal view. Abbreviations: Th. I–III – number of thoracic segments, Abd. I–IX – number of abdominal segments, ur – urogomphi, setae: as – apical, d – dorsal, ds – discal, fes – femoral, l, ls – lateral, os – orbital, pls – posterolateral, rs – rostral.
Figure 27 from: Gosik R, Skuhrovec J, Caldara R, Toševski I (2020) Immature stages of Palearctic Mecinus species (Coleoptera, Curculionidae, Curculioninae): morphological characters diagnostic at genus and species levels. ZooKeys 939: 87-165. https://doi.org/10.3897/zookeys.939.50612
Figure 27 Mecinus sicardi pupa habitus and chaetotaxy A ventral view B lateral view C dorsal view. Abbreviations: Th. I–III – number of thoracic segments, Abd. I–IX – number of abdominal segments, ur – urogomphi, setae: as – apical, d – dorsal, ds – discal, fes – femoral, l, ls – lateral, os – orbital, sls – postantennal, pls – posterolateral, rs – rostral, sls – superlateral, sos – superorbital, vs – vertical.
Figure 25 from: Gosik R, Skuhrovec J, Caldara R, Toševski I (2020) Immature stages of Palearctic Mecinus species (Coleoptera, Curculionidae, Curculioninae): morphological characters diagnostic at genus and species levels. ZooKeys 939: 87-165. https://doi.org/10.3897/zookeys.939.50612
Figure 25 Mecinus sicardi mature larva, habitus and chaetotaxy A habitus of the body and frontal view of the head B lateral view of thoracic segments C lateral view of abdominal segment I D lateral view of abdominal segments VII–X. Abbreviations: Th. I–III – number of thoracic segments, Abd. I–X – number of abominal segments, setae: as – alar, ds – dorsal, eps – epipleural, eus – eusternal, lsts – laterosternal, pda – pedal, pds – postdorsal, prns – pronotal, prs – prodorsal, ps – pleural, ss – spiracular, sts – sternal, ts – terminal.
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.