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.
179
datasets available to search
ShareScore release 0.9.0
Dataset results
179 results for “apterous”
FIGURE 1 in The first description of an apterous aphid morph of the family Canadaphididae (Hemiptera, Sternorrhyncha, Aphidomorpha)
FIGURE 1. Apterous specimen of Canadaphis carpenteri; a—dorsal side of the body; b—ventral side of the body.
FIGURE 2 in The first description of an apterous aphid morph of the family Canadaphididae (Hemiptera, Sternorrhyncha, Aphidomorpha)
FIGURE 2. Apterous specimen of Canadaphis carpenteri; a—left antenna; b—right antenna, R—primary rhinarium, Tri— triommatidium; c—apical part of rostrum; d—hind tibia, ps—pseudosensoria; e—apical part of abdomen in fluorescence microscope, Ca—cauda, S—siphunculi; f—apical part of abdomen, Ap—anal plate, Ca—cauda.
Figure 3 in A remarkable new species of Platystethynium Ogloblin (Hymenoptera: Mymaridae) with apterous females from Italy
Figure 3. Platystethynium (Platystethynium) apteron, female (specimens in ethanol): (a) habitus in dorsal view (paratype, molecular voucher); (b) habitus in lateral view (paratype, molecular voucher); (c) habitus in ventral view (non-type specimen).
Figure 2 in A remarkable new species of Platystethynium Ogloblin (Hymenoptera: Mymaridae) with apterous females from Italy
Figure 2. Platystethynium (Platystethynium) apteron, female: (a) head in dorsoventral view (holotype); (b) antenna (holotype); (c) habitus in dorsolateral view (dry-mounted paratype).
Figure 1 in A remarkable new species of Platystethynium Ogloblin (Hymenoptera: Mymaridae) with apterous females from Italy
Figure 1. Platystethynium (Platystethynium) apteron, holotype female: (a) slide; (b) habitus in dorsal view.
Figure 4 in A remarkable new species of Platystethynium Ogloblin (Hymenoptera: Mymaridae) with apterous females from Italy
Figure 4. (a) Platystethynium (Platystethynium) triclavatum, habitus of female in lateral view (molecular voucher specimen in ethanol from Monte Venda, Euganean Hills, Veneto, Italy); (b, c) opposite sides of the two Tettigoniidae eggs with exit holes of parasitoids found in the same soil sample together with the type series of P. (Platystethynium) apteron: a lighter and narrower egg of Eupholidoptera schmidti on the left and a darker and wider egg of Barbitistes vicetinus on the right.
FIGURE 5 in Discovery of the first apterous pincer wasp from amber, with description of a new tribe, genus and species of Apodryininae (Hymenoptera, Dryinidae)
FIGURE 5. Madecadryinus opacus, ♀ holotype: A, dorsal view; B, lateral view. Anteon chirindense, ♀ holotype: head in dorsal view: C (from Olmi et al. 2021a). Nymph of Tropiduchidae (or Nogodinidae) from Madagascar, leaf litter of forest, probably parasitized by Apodryinini (body length 0.8 mm): D. Scale bar: 0.8 mm for A and B, 0.2 mm for C; 0.5 mm for D.
FIGURE 1 in Discovery of the first apterous pincer wasp from amber, with description of a new tribe, genus and species of Apodryininae (Hymenoptera, Dryinidae)
FIGURE 1. Rovnodryinus khomychi, ♀ holotype. A, latero-ventral view; B, latero-dorsal view; C, head and pronotum in laterodorsal view; D, head and propleuron in ventral view. oc = ocellus. Scale bar: 2.3 mm for A, 2.1 mm for B, 0.5 mm for C, 0.6 mm for D.
FIGURE 4. Chelae. A in Discovery of the first apterous pincer wasp from amber, with description of a new tribe, genus and species of Apodryininae (Hymenoptera, Dryinidae)
FIGURE 4. Chelae. A, Rovnodryinus khomychi, ♀ holotype. B, Apogonatopus edaphicus, ♀ holotype. ar = arolium; ec = enlarged claw; rc = rudimentary claw; t = protarsomere 5. Apexes of chela A dotted because not visible through the amber. Scale bar: 0.1 mm for A, 0.04 mm for B.
FIGURE 3 in Discovery of the first apterous pincer wasp from amber, with description of a new tribe, genus and species of Apodryininae (Hymenoptera, Dryinidae)
FIGURE 3. Rovnodryinus khomychi, ♀ holotype: A, protarsus; B, chela. Apogonatopus edaphicus, ♀ paratype from Madagascar, Ambilanivy forest: C, dorsal view; D, lateral view. Scale bar: 0.6 mm for A, 0.2 mm for B, 1.4 mm for C and D.
FIGURE 2 in Discovery of the first apterous pincer wasp from amber, with description of a new tribe, genus and species of Apodryininae (Hymenoptera, Dryinidae)
FIGURE 2. Rovnodryinus khomychi, ♀ holotype. A, antennae; B, flagellomeres 1 and 2; C, mesosoma in lateral view; D, flagellomere 4. a = ADO. Scale bar: 0.9 mm for A, 0.01 mm for B, 0.9 mm for C, 0.06 mm for D.
FIGURES 1–4. Brachyunguis dendrostellerae Kadyrbekov, 2014 and B. monstratus Kadyrbekov, 1999. Brachyunguis dendrostellerae. Apterous viviparous female. 1 in Two species of Brachyunguis (Hemiptera: Aphididae) new to Iran, and a key to the Iranian species of this genus
FIGURES 1–4. Brachyunguis dendrostellerae Kadyrbekov, 2014 and B. monstratus Kadyrbekov, 1999. Brachyunguis dendrostellerae. Apterous viviparous female. 1. Habitus of less pigmented specimen (bar: 500 μm); 2. Habitus of more pigmented specimen (bar: 500 μm); Alata viviparous female. 3. Habitus (bar: 500 μm); 4. Brachyunguis monstratus. Apterous viviparous female. 4. Habitus (bar: 500 μm).
FIGURES 20–24. Macrosiphum hartigi Hille Ris Lambers, 1947. apterous viviparous female. 20 in A new Caryophyllaceae-feeding species of Macrosiphum (Hemiptera: Aphididae) in Republic of Georgia, and a redescription of Macrosiphum hartigi Hille Ris Lambers
FIGURES 20–24. Macrosiphum hartigi Hille Ris Lambers, 1947. apterous viviparous female. 20. ANT III (bar: 200 µm); 21. Rostral segments II–V (bar: 200 µm); 22. Tarsus (bar: 200 µm); 23. Cauda (bar: 200 µm); 24. SIPH (bar: 200 µm).
FIGURE 14 in Sinocatops gen. nov., an apterous genus of Cholevini (Coleoptera: Leiodidae: Cholevinae) from China, with emphasis on differences with allied Rybinskiella Reitter, 1906
FIGURE 14. Rybinskiella (Sintania) bodoana Reitter, 1913 ♀: A, ventrite VII (ventral view); B, tergite VIII (dorsal view); C, ventrite VIII (ventral view); D, genital segment and ovipositor; E, ventral sclerite (ventral view). Scales: 0.1 mm.
FIGURE 11 in Sinocatops gen. nov., an apterous genus of Cholevini (Coleoptera: Leiodidae: Cholevinae) from China, with emphasis on differences with allied Rybinskiella Reitter, 1906
FIGURE 11. Sinocatops ruzickai sp. nov.: A, aedeagus (dorsal view); B, aedeagus (ventral view); C, aedeagus (lateral view); D, ventrite VII ♀ (ventral view); E, tergite VIII ♀ (dorsal view); F, ventrite VIII ♀ (ventral view); G, genital segment and ovipositor (dorsal view); H, genital segment and ovipositor (ventral view); I, ventral sclerite (ventral view). Scales: 0.1 mm.
FIGURE 6 in Sinocatops gen. nov., an apterous genus of Cholevini (Coleoptera: Leiodidae: Cholevinae) from China, with emphasis on differences with allied Rybinskiella Reitter, 1906
FIGURE 6. Metendosternites ♂. A–C: Sinocatops ruzickai sp. nov.; D–F: Rybinskiella (Sintania) bodoana Reitter, 1913; G– I: Rybinskiella (s. str.) magnifica (Rybiński, 1902). A, D, G, (dorsal view); B, E, H, (lateral view); C, F, I, (frontal view). Scales: 0.1 mm.
FIGURE 5 in Sinocatops gen. nov., an apterous genus of Cholevini (Coleoptera: Leiodidae: Cholevinae) from China, with emphasis on differences with allied Rybinskiella Reitter, 1906
FIGURE 5. Scutelli and metatergal apparatus ♂ (dorsal view). A, Sinocatops ruzickai sp. nov.; B, Rybinskiella (Sintania) bodoana Reitter, 1913; C, Rybinskiella (s. str.) magnifica (Rybiński, 1902). Scales: 0.5 mm.
FIGURE 3 in Sinocatops gen. nov., an apterous genus of Cholevini (Coleoptera: Leiodidae: Cholevinae) from China, with emphasis on differences with allied Rybinskiella Reitter, 1906
FIGURE 3. Mouthparts ♂. A–F: Sinocatops ruzickai sp. nov.; G–L: Rybinskiella (Sintania) bodoana Reitter, 1913; M–R: Rybinskiella (s. str.) magnifica (Rybiński, 1902). A, G, M, labrum (dorsal view); B, H, N, left mandible (dorsal view); C, I, O, right mandible (dorsal view); D, J, P, left maxilla (dorsal view); E, K, Q, right maxilla (dorsal view); F, L, R, labium (ventral view). Scales: 0.1 mm.
FIGURE 2 in Sinocatops gen. nov., an apterous genus of Cholevini (Coleoptera: Leiodidae: Cholevinae) from China, with emphasis on differences with allied Rybinskiella Reitter, 1906
FIGURE 2. Habitus and size (dorsal view). Sinocatops ruzickai sp. nov.: A, ♂; B, ♀; Rybinskiella (s. str.) magnifica (Rybiński, 1902): C, ♂; D, ♀; Rybinskiella (Sintania) bodoana Reitter, 1913: E, ♂; F, ♀. Scales: 1 mm.
FIGURE 8 in Sinocatops gen. nov., an apterous genus of Cholevini (Coleoptera: Leiodidae: Cholevinae) from China, with emphasis on differences with allied Rybinskiella Reitter, 1906
FIGURE 8. Elytral epipleura ♂ (ventral view). A, Sinocatops ruzickai sp. nov.; B, Rybinskiella (Sintania) bodoana Reitter, 1913; C, Rybinskiella (s. str.) magnifica (Rybiński, 1902). Scales: 0.5 mm.
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.