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1,108 results for “Parasitoid wasps”
Fig. 12 in Nine new species of Dimophora from Australia (Hymenoptera: Ichneumonidae): new insights on the distribution of a poorly known genus of parasitoid wasps
Fig. 12. Holotype of Dimophora turista sp. n. (a) Habitus. (b) Head. (c) Mesoscutum and head. (d) Head and mesosoma from lateral, showing mesopleural sculpture. (e) Propodeum. (f) Metasoma. Scale bars represent 2 mm (a) and 0.5 mm (b, c, d, e, f).
Fig. 1 in Nine new species of Dimophora from Australia (Hymenoptera: Ichneumonidae): new insights on the distribution of a poorly known genus of parasitoid wasps
Fig. 1. Protrusion between the compound eye and antennal bases as shown in Dimophora kentmartini sp. n.
Fig. 2 in Nine new species of Dimophora from Australia (Hymenoptera: Ichneumonidae): new insights on the distribution of a poorly known genus of parasitoid wasps
Fig. 2. Holotype of Dimophora biquadra sp. n. (a) Habitus. (b) Head. (c) Mesoscutum and head. (d) Head and mesosoma from lateral, showing mesopleural sculpture. (e) Propodeum. (f) Metasoma. Scale bars represent 2 mm (a) and 0.5 mm (b, c, d, e, f).
Fig. 11 in Nine new species of Dimophora from Australia (Hymenoptera: Ichneumonidae): new insights on the distribution of a poorly known genus of parasitoid wasps
Fig. 11. Holotype of Dimophora ruficollis sp. n. (a) Habitus. (b) Head. (c) Mesoscutum and head. (d) Head and mesosoma from lateral, showing mesopleural sculpture. (e) Propodeum. (f) Metasoma. Scale bars represent 2 mm (a) and 0.5 mm (b, c, d, e, f).
Fig. 5 in Nine new species of Dimophora from Australia (Hymenoptera: Ichneumonidae): new insights on the distribution of a poorly known genus of parasitoid wasps
Fig. 5. Holotype of Dimophora kentmartini sp. n. (a) Habitus. (b) Head. (c) Mesoscutum and head. (d) Head and mesosoma from lateral, showing mesopleural sculpture. (e) Propodeum. (f) Metasoma. Scale bars represent 2 mm (a) and 0.5 mm (b, c, d, e, f).
Fig. 6 in Nine new species of Dimophora from Australia (Hymenoptera: Ichneumonidae): new insights on the distribution of a poorly known genus of parasitoid wasps
Fig. 6. Holotype of Dimophora lutulenta sp. n. (a) Habitus. (b) Head. (c) Mesoscutum and head. (d) Head and mesosoma from lateral, showing mesopleural sculpture. (e) Propodeum. (f) Metasoma. Scale bars represent 2 mm (a) and 0.5 mm (b, c, d, e, f).
Fig. 4 in Nine new species of Dimophora from Australia (Hymenoptera: Ichneumonidae): new insights on the distribution of a poorly known genus of parasitoid wasps
Fig. 4. Australian specimen of Dimophora evanialis Gravenhorst. (a) Habitus. (b) Head. (c) Mesoscutum and head. (d) Head and mesosoma from lateral, showing mesopleural sculpture. (e) Propodeum. (f) Metasoma. Scale bars represent 2 mm (a) and 0.5 mm (b, c, d, e, f).
Fig. 3 in Nine new species of Dimophora from Australia (Hymenoptera: Ichneumonidae): new insights on the distribution of a poorly known genus of parasitoid wasps
Fig. 3. Holotype of Dimophora diabolica sp. n. (a) Habitus. (b) Head. (c) Mesoscutum and head. (d) Head and mesosoma from lateral, showing mesopleural sculpture. (e) Propodeum. (f) Metasoma. Scale bars represent 2 mm (a) and 0.5 mm (b, c, d, e, f).
FIGURES 4–8 in Description of a new Betylobraconini-like parasitoid wasp genus and species (Hymenoptera: Braconidae: Rogadinae) from Chile
FIGURES 4–8. Gondwanocentrus humphriesi gen. et sp. nov., female holotype, Cell^D® light photomicrographs. Habitus, side view (4), head, side view (5), fore wing (6), mesosoma, lateral view (7) and metasoma, dorsal view (8).
FIGURE 9 in Description of a new Betylobraconini-like parasitoid wasp genus and species (Hymenoptera: Braconidae: Rogadinae) from Chile
FIGURE 9. Bayesian molecular phylogeny based on combined analysis of cytochrome oxidase I and 28S D2–3 rDNA sequence fragments with posterior probabilities greater than 50% indicated above branches, and tribes of Rogadinae indicated by boxes.
FIGURES 1–3 in Description of a new Betylobraconini-like parasitoid wasp genus and species (Hymenoptera: Braconidae: Rogadinae) from Chile
FIGURES 1–3. Gondwanocentrus humphriesi gen. et sp. nov., female holotype, Cell^D® light photomicrographs. Habitus, dorsal view (1), head dorsal view (2) and mesosoma, slightly oblique dorsal view (3).
FIGURE 2 in Clistopyga caramba sp. nov. (Hymenoptera: Ichneumonidae; Pimplinae), an astonishing example of mimicry in spider-attacking parasitoid wasps
FIGURE 2. Posterior metasomal tergites and ovipositor of Clistopyga caramba sp. nov., holotype, female: A — lateral view; B — dorsal view; C — latero-dorsal view; D — latero-posterior view.
Figures 26–29 in A New Genus of Rhysipoline Wasp (Hymenoptera: Braconidae) with Modified Wing Venation from Africa and Papua New Guinea, Parasitoid on Choreutidae (Lepidoptera)
Figures 26–29. Troporhysipolis molecularis sp. nov. (26) Habitus, dorsal view; (27) Habitus, lateral view; (28) Head, dorsal view; (29) Mesosoma, dorsal view.
Figures 30–32 in A New Genus of Rhysipoline Wasp (Hymenoptera: Braconidae) with Modified Wing Venation from Africa and Papua New Guinea, Parasitoid on Choreutidae (Lepidoptera)
Figures 30–32. Troporhysipolis molecularis sp. nov. (30) Mesosoma, lateral view; (31) Fore wing second subdiscal (brachial) cell;
Figure 33 in A New Genus of Rhysipoline Wasp (Hymenoptera: Braconidae) with Modified Wing Venation from Africa and Papua New Guinea, Parasitoid on Choreutidae (Lepidoptera)
Figure 33. Maximum likelihood phylogeny based on combined 28S rDNA and barcoding cytochrome oxidase 1 gene regions with rapid bootstrap values indicated either above or to the left of each branch.
Figures 21–25 in A New Genus of Rhysipoline Wasp (Hymenoptera: Braconidae) with Modified Wing Venation from Africa and Papua New Guinea, Parasitoid on Choreutidae (Lepidoptera)
Figures 21–25. Troporhysipolis markshawi sp. nov. (21) Habitus; (22) Top of head and anterior mesosoma; (23) Wings; (24) Propodeum and first metasomal tergite; (25) Metasoma, dorsal view.
Figures 8–12 in A New Genus of Rhysipoline Wasp (Hymenoptera: Braconidae) with Modified Wing Venation from Africa and Papua New Guinea, Parasitoid on Choreutidae (Lepidoptera)
Figures 8–12. Troporhysipolis antefurcalis (Granger). (8) Hind leg; (9) Wings; (10) Fore wing second subdiscal (brachial) cell; (11) Metasoma, lateral view; (12) Metasoma, dorsal view.
Figures 13–20 in A New Genus of Rhysipoline Wasp (Hymenoptera: Braconidae) with Modified Wing Venation from Africa and Papua New Guinea, Parasitoid on Choreutidae (Lepidoptera)
Figures 13–20. Troporhysipolis brenthiaphagus sp. nov. (13) Habitus, dorsal view; (14) Apex of antenna; (15) Base of antenna; (16) Head and anterior of mesosoma, oblique view showing separation of occipital and hypostomal carinae; (17) Head dorsal view; (18) Head subfrontal view; (19) Mesosoma dorsal view; (20) Propodeum and first metasomal tergite, dorsal view.
Figures 1–7 in A New Genus of Rhysipoline Wasp (Hymenoptera: Braconidae) with Modified Wing Venation from Africa and Papua New Guinea, Parasitoid on Choreutidae (Lepidoptera)
Figures 1–7. Troporhysipolis antefurcalis (Granger). (1) Habitus, lateral view; (2) Apex of antenna; (3) Head and pronotum, lateral view;
FIGURE 2. a in A note on Szelenyiopria pampeana (Loiácono) n. comb., parasitoid wasps (Hymenoptera: Diapriidae) attacking the fungus growing ant, Acromyrmex lobicornis Emery (Hymenoptera: Formicidae: Attini) in La Pampa, Argentina
FIGURE 2. a. Szelenyiopria pampeana female, mesosoma, detail of specialized setae with truncate apices. b. Formicid sexual larvae, detail of tegument with ancoriformes setae.
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.