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.
189
datasets available to search
ShareScore release 0.9.0
Dataset results
189 results for “Polyneoptera”
FIG. 5. — Gryllobencain patrickmuelleri n. gen., n in A 100-million-year-old ensiferan with unusual mouthparts and comments on the evolution of raptorial appendages within Polyneoptera
FIG. 5. — Gryllobencain patrickmuelleri n. gen., n. sp., BUB 3073: A, overview in dorsal view; B, close-up in anterior head area with ocelli; C, overview in ventral view; D, close-up on distal part of thorax appendage 1. In A and C background was desaturated to enhance contrast. Abbreviations: an, antenna; ce, cercus; cl, claw of thorax appendage; f1-3, femur of thorax appendage 1-3; mp, maxillary palp; oc, ocelli; ta1, tarsus of thorax appendage 1; ti1-3, tibia of thorax appendage 1-3. Scale bars: A, C, 0.5 mm; B, D, 0.1 mm.
FIG. 8 in A 100-million-year-old ensiferan with unusual mouthparts and comments on the evolution of raptorial appendages within Polyneoptera
FIG. 8. — Reconstructed growth series of Gryllobencain patrickmuelleri n. gen., n. sp. based on specimens investigated in this study: A, BUB 3073; B, PED 0147; C, PED 0178 + BUB 3072. Scale bar: 1 mm.
FIG. 9 in A 100-million-year-old ensiferan with unusual mouthparts and comments on the evolution of raptorial appendages within Polyneoptera
FIG. 9. — Comparison of the new species with other groups; all drawings idealised concerning posture: A, Gryllobencain patrickmuelleri n. gen., n. sp.; B, Saga pedo (Pallas, 1771) (Saginae; drawn from photo, sample ID 01DRAGO_H11, CC BY-NC-SA 3.0, license holder IBER, Sofia, Bulgaria, Centre for Biodiversity Genomics); C, Psacadonotus seriatus Redtenbacher, 1891 (Austrosaginae; modified after Karny 1912); D, Santanmantis axelrodi Grimaldi, 2003 (Mantodea; modified after HÖrnig et al. 2017: fig. 4, wings omitted); E, female of undetermined species (Mantophasmatodea; modified after Klass et al. 2003: fig. 3A); F, male of Cerberodon viridis Perty, 1832 (Listroscelidinae; modified after Fialho et al. 2014: fig. 9B, wings omitted).
FIG. 7 in A 100-million-year-old ensiferan with unusual mouthparts and comments on the evolution of raptorial appendages within Polyneoptera
FIG. 7. — Close-ups on head area in different specimens of Gryllobencain patrickmuelleri n. gen., n. sp. as normal versions (A, C, E) and colour-marked (B, D, F): A-D, PED 0178; A, B, latero-posterior view; C, D, mostly anterior view; elements of maxillary palp difficult to differentiate; E, F, BUB 3073, ventral view. Abbreviations: lp, labial palp; lr, labrum; md, mandible; mmx, median part of maxilla; mp, maxillary palp; mx, maxilla; pmx, proximal part of maxilla. Scale bars: A-D, 0.3 mm; E, F, 0.2 mm.
FIG. 6. — Gryllobencain patrickmuelleri n. gen., n in A 100-million-year-old ensiferan with unusual mouthparts and comments on the evolution of raptorial appendages within Polyneoptera
FIG. 6. — Gryllobencain patrickmuelleri n. gen., n. sp., BUB 3072: A, overview in dorsal view; B, close-up on cercus; C, overview in ventral view; D, close-up on head. Abbreviations: an, antenna; ce, cercus; f1, 3, femur of thorax appendage 1, 3; hc, head capsule; mp, maxillary palp; ti1, 3, tibia of thorax appendage 1, 3. Scale bars: A, C, 1 mm; B, D, 0.5 mm.
FIG. 3 in A 100-million-year-old ensiferan with unusual mouthparts and comments on the evolution of raptorial appendages within Polyneoptera
FIG. 3. — Holotype of Gryllobencain patrickmuelleri n. gen., n. sp., PED 0147, close-up on posterior end with thorax appendage 3 and cerci. Abbreviations: ce, cercus; ta3, tarsus of thorax appendage 3; ti3, tibia of thorax appendage 3. Scale bar: 0.5 mm.
FIG. 4 in A 100-million-year-old ensiferan with unusual mouthparts and comments on the evolution of raptorial appendages within Polyneoptera
FIG. 4. — Paratype of Gryllobencain patrickmuelleri n. gen., n. sp., PED 0178: A, overview in dorso-lateral view; B, detail of thorax appendage 1 in posterior view; C, overview in ventro-lateral view; D, detail of thorax appendage 1 in anterior view. Abbreviations: an, antenna; c1, coxa of thorax appendage 1; ce, cercus; ey, compound eye; f1-3, femur of thorax appendage 1-3; hc, head capsule; mp, maxillary palp; sp, spine-like seta; ta1, 3, tarsus of thorax appendage 1, 3; tcl, tibia claw; ti1-3, tibia of thorax appendage 1-3; tr1, trochanter of thorax appendage 1. Scale bars: A, C, 1 mm; B, D, 0.5 mm.
FIG. 2 in A 100-million-year-old ensiferan with unusual mouthparts and comments on the evolution of raptorial appendages within Polyneoptera
FIG. 2. — Holotype of Gryllobencain patrickmuelleri n. gen., n. sp., PED 0147, close-up on thorax appendages: A, thorax appendage 1; B, thorax appendage 2; C, thorax appendage 3. Abbreviations: c2, coxa of thorax appendage 2; ce, cercus; cl, claw of thorax appendage; f1-3, femur of thorax appendage 1-3; ta1-3, tarsus of thorax appendage 1-3; tcl, tibia claw; ti1-3, tibia of thorax appendage 1-3. Scale bars: 0.5 mm.
FIG. 1 in A 100-million-year-old ensiferan with unusual mouthparts and comments on the evolution of raptorial appendages within Polyneoptera
FIG. 1. — Holotype of Gryllobencain patrickmuelleri n. gen., n. sp., PED 0147: A, overview in dorsal view; B, overview in ventral view; C, close-up on maxillary palp, distal part; D, close-up on thorax appendage 1. Abbreviations: an, antenna; ce, cercus; cl1, claw of thorax appendage 1; f1-2, femur of thorax appendage 1-2; hc, head capsule; mp, maxillary palp; sp, spine-like seta; t1-3, thorax segment 1-3; ta1-3, tarsus of thorax appendage 1-3; tcl, tibia claw; ti1-3, tibia of thorax appendage 1-3. Scale bars: A, B, 1 mm; C, 0.25 mm; D, 0.5 mm.
Fig. 6. —Continuation. C in A comprehensive analysis of Morales Agacino entomological expeditions in Spanish Sahara 1941-1946, with an updated checklist of collection sites and collected insect species (Insecta Polyneoptera, Hymenoptera, Coleoptera Carabidae and Tenebrionidae)
Fig. 6. —Continuation. C, Asserfa,a stony-sandy plain, northern Cap Boujdour (26°22'N, 13°58'W); D, edge of Sebkhat Tah, where Bolivaremia domenechi Morales Agacino, 1949 has been observed. Photos: Annie Garcin.
FIG. 2 in A comprehensive analysis of Morales Agacino entomological expeditions in Spanish Sahara 1941-1946, with an updated checklist of collection sites and collected insect species (Insecta Polyneoptera, Hymenoptera, Coleoptera Carabidae and Tenebrionidae)
FIG. 2. — Routes of Morales Agacino expedition in Spanish Sahara: A, localities cited in the text with the reference numbers in Table 3; the route of the 1943 mission is reconstructed based on Morales Agacino's published data (red lines); B, route of 1941, 1942, 1943 missions, after off-text map in Morales Agacino (1943).
FIG. 5 in A comprehensive analysis of Morales Agacino entomological expeditions in Spanish Sahara 1941-1946, with an updated checklist of collection sites and collected insect species (Insecta Polyneoptera, Hymenoptera, Coleoptera Carabidae and Tenebrionidae)
FIG. 5. — Distributions of nine species of Orthoptera Acridomorpha in a cline defined by maritime and continental influences in Spanish Sahara. These maps allow to figure out distributional patterns resulting from the spatialization of the continental index of Daget (1977) through the climate map of Morocco by Mokhtari et al. (2014): A, endemic species to the Atlantic coast; B, species of the Pre-Sahara and semi-deserts; C, species endemic to the Sahara; D, arenicolous species adapted to living in desert. See also georeferenced cartography.gpx in Suplementary Table 1.
FIG. 4 in A comprehensive analysis of Morales Agacino entomological expeditions in Spanish Sahara 1941-1946, with an updated checklist of collection sites and collected insect species (Insecta Polyneoptera, Hymenoptera, Coleoptera Carabidae and Tenebrionidae)
FIG. 4. — Phamphagulus taxa in Spanish Sahara: A, Distribution of Pamphagulus vicinus Ramme, 1931, Pamphagulus mateui mateui Morales Agacino, 1949 and Pamphagulus mateui audebdidetensis Morales Agacino, 1949 (Orthoptera Acridomorpha Dericorythidae); B, C, habitus of Pamphagulus vicinus Ramme, 1931: B, male, specimen MNHN-EO-CAELIF159; C, female, specimen MNHN-EO- CAELIF160. Locality numbers: see Tables 3 and 5. After Morales Agacino (1949).
FIG. 3 in A comprehensive analysis of Morales Agacino entomological expeditions in Spanish Sahara 1941-1946, with an updated checklist of collection sites and collected insect species (Insecta Polyneoptera, Hymenoptera, Coleoptera Carabidae and Tenebrionidae)
FIG. 3. — Localisation of the locality El Kantara = Al Gantra along the course of Morales Agacino's 1946 expedition. Symbol: ★, type locality of Bolivaremia domenechi Morales Agacino, 1949. Modified from Map of Morocco (1993).
FIG. 8 in A comprehensive analysis of Morales Agacino entomological expeditions in Spanish Sahara 1941-1946, with an updated checklist of collection sites and collected insect species (Insecta Polyneoptera, Hymenoptera, Coleoptera Carabidae and Tenebrionidae)
FIG. 8. — Glauvarovia mendizabali Morales Agacino, 1945: A, original drawing by Morales Agacino (1945); B-D, female found at Graret Ould Al Aqel (24°25'N, 15°3'W; 50 m), in ventral (B, first illustration of the species sternites), dorsal (C), and side (D) views; E, F, male found at Foum Draa (28°40'N, 11°7'W; 40 m), dorsal (E) and frontal (F) views. Note the short tegmina in both male and female. Photos: Annie Garcin.
FIG. 6 in A comprehensive analysis of Morales Agacino entomological expeditions in Spanish Sahara 1941-1946, with an updated checklist of collection sites and collected insect species (Insecta Polyneoptera, Hymenoptera, Coleoptera Carabidae and Tenebrionidae)
FIG. 6. — Examples of localities in ex-Spanish Sahara: A, Mouth of the Cra wadi at the coast, sandstone-limestone platforms in staircase steps (24°41'N, 14°53'W); B, fossil formation of dunes named Aguerguer in the background; in the rocky foreground, a seedling of Otoglyphis pubescens (Desf.) Pomel, Asteraceae (23°43'N, 15°14'W; 70 m). Photos: Annie Garcin.
FIG. 7 in A comprehensive analysis of Morales Agacino entomological expeditions in Spanish Sahara 1941-1946, with an updated checklist of collection sites and collected insect species (Insecta Polyneoptera, Hymenoptera, Coleoptera Carabidae and Tenebrionidae)
FIG. 7. — Bolivaremia domenechi Morales Agacino, 1949: A, original drawing by Morales Agacino (1949); B, specimen observed in the North of Boujdour (26°22'N, 13°58'W; 50 m), dorsal view; C, specimen observed at the Sebkhat Tah (27°39'N, 12°55'W; 25 m), side view. Photos: Annie Garcin.
Linked collectors and determiners for: Digitization PEN: Digital Data from the Terrestrial Polyneoptera at American Museum of Natural History.
Natural history specimen data linked to collectors and determiners held within, "Digitization PEN: Digital Data from the Terrestrial Polyneoptera at American Museum of Natural History". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/d475b3b1-1e5a-4d56-a547-f7afb810c4c5">https://bionomia.net/dataset/d475b3b1-1e5a-4d56-a547-f7afb810c4c5</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/d475b3b1-1e5a-4d56-a547-f7afb810c4c5">https://gbif.org/dataset/d475b3b1-1e5a-4d56-a547-f7afb810c4c5</a>. Formatted as a Frictionless Data package.
Figure 3 in New evolutionary evidence of Grylloblattida from the Middle Jurassic of Inner Mongolia, north-east China (Insecta, Polyneoptera)
Figure 3. Plesioblattogryllus magnificus gen. nov., sp. nov., holotype NIGP 133701. Drawing of head.
Figure 2 in New evolutionary evidence of Grylloblattida from the Middle Jurassic of Inner Mongolia, north-east China (Insecta, Polyneoptera)
Figure 2. Plesioblattogryllus magnificus gen. nov., sp. nov., holotype NIGP 133701. Drawing of general habitus.
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.