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Fig. 31. A–B in Synopsis of the parasitoid wasp genus Cotesia Cameron, 1891 (Hymenoptera: Braconidae: Microgastrinae) in Australia, with the description of seven new species

Fig. 31. A–B. Cotesia urabae Austin & Allen, 1989, paratype, ♀ (WINC). A. Habitus in dorsal view. B. Fore wing. C–E. Cotesia vestalis (Haliday, 1834), ♀ (WINC). C. Head in dorsal view and anteromesoscutum. D. Propodeum and dorsal metasoma E. Fore wing.

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Fig. 34. A in Synopsis of the parasitoid wasp genus Cotesia Cameron, 1891 (Hymenoptera: Braconidae: Microgastrinae) in Australia, with the description of seven new species

Fig. 34. A. Fore wing terminology, abbreviation: pt = pterostigma. B. General morphological terminology, abbreviations: ams = anteromesoscutum, mt = metanotum, pp = propodeum, sc = scutellum (also referred to as the mesoscutellum), sd = scutellar disk, ss = scutellar sulcus, T1 = first metasomal tergite, T2 = second metasomal tergite, T3 = third metasomal tergite.

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Fig. 28 in Synopsis of the parasitoid wasp genus Cotesia Cameron, 1891 (Hymenoptera: Braconidae: Microgastrinae) in Australia, with the description of seven new species

Fig. 28. Cotesia rufiventris (Bingham, 1906), paralectotype, ♀ (NHMUK). A. Mesosoma in dorsal view and T1–3 B. Habitus in dorsal view and fore wing C. Habitus in lateral view.

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Fig. 27 in Synopsis of the parasitoid wasp genus Cotesia Cameron, 1891 (Hymenoptera: Braconidae: Microgastrinae) in Australia, with the description of seven new species

Fig. 27. Cotesia ruficrus (Haliday, 1834), ♀ (ANIC 32 130230) A. Habitus in lateral view. B. Habitus in dorsal view. C. Fore wing.

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Fig. 25 in Synopsis of the parasitoid wasp genus Cotesia Cameron, 1891 (Hymenoptera: Braconidae: Microgastrinae) in Australia, with the description of seven new species

Fig. 25. Cotesia reidarum sp. nov., holotype, ♀ (QM T246703). A. Habitus in dorsal view. B. Habitus in lateral view. C. Head in dorsal view. D. Head in anterior view. E. Propodeum. F. Fore wing.

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Fig. 22 in Synopsis of the parasitoid wasp genus Cotesia Cameron, 1891 (Hymenoptera: Braconidae: Microgastrinae) in Australia, with the description of seven new species

Fig. 22. Cotesia ocellata sp. nov., holotype, ♀ (SAMA 32-44404). A. Head in dorsal view and anteromesoscutum. B. Habitus in lateral view. C. T1–3. D. Habitus in dorsal view. E. Head in anterior view. F. Mesoscutum and propodeum. G. Fore wing.

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Fig. 3 in Description of five new species in the genus Phlyctinus Schoenherr (Coleoptera, Curculionidae): a first step in deciphering the P. callosus complex

Fig. 3 (opposite page). A–B. Ventrites of males of Phlyctinus Schoenherr, 1826 (left: ventrites 1–5, right: ventrite 5). A. P. callosus (Schoenherr, 1826). B. P. grootbosensis Haran sp. nov. C–D. Ventrite 5. C. P. xerophilus Haran sp. nov., holotype ♂. D. P. planithorax Haran sp. nov. E–F. Vestiture of basal right side of elytra. E. P. callosus (Schoenherr, 1826) (left). F. P. littoralis Haran sp. nov. Scale bars = 0.5 mm.

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Fig. 2 in Description of five new species in the genus Phlyctinus Schoenherr (Coleoptera, Curculionidae): a first step in deciphering the P. callosus complex

Fig. 2. Penis of Phlyctinus Schoenherr, 1826, in dorsal (left) and lateral (right) view, and copulatory sclerite (top right). A. P. callosus (Schoenherr, 1826). B. P. grootbosensis Haran sp. nov. C. P. xerophilus Haran sp. nov., holotype ♂. D. P. planithorax Haran sp. nov., holotype ♂. E. P. littoralis Haran sp. nov., holotype ♂. F. P. aloevorus Haran sp. nov., holotype ♂. Scale bars = 500 µm. Copulatory sclerite not to scale.

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Fig. 4 in Description of five new species in the genus Phlyctinus Schoenherr (Coleoptera, Curculionidae): a first step in deciphering the P. callosus complex

Fig. 4 (opposite page). Habitus in natura, host plants and biotopes of Phlyctinus Schoenherr, 1826 species. A. P. callosus (Schoenherr, 1826). B. P. xerophilus Haran sp. nov. C–D. P. grootbosensis Haran sp. nov. and its host plant, Osteospermum moniliferum L. E–F. P. planithorax Haran sp. nov. and its host plant, Hymenolepis crithmifolia (L.) Greuter. G–H. Biotope and host plant (Arctotis angustifolia L.) of P. littoralis Haran sp. nov. I–J. P. aloevorus Haran sp. nov. on its host plant, Aloe arborescens Mill., with details of feeding damage on floral peduncle

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Fig. 3 in Tertiarius minutulus sp. nov. (Stephanodiscaceae, Bacillariophyta) - a new fossil diatom species from Lake Ohrid

Fig. 3. Tertiarius minutulus sp. nov., SEM internal valve views. A. View of the whole frustule and the marginal fultoportulae surrounded by two satellite pores, cowlings absent (see white arrow). B. Close view of marginal areolae with circumferential silica trabeculae and central areolae occluded by domed cribra (see white arrow). C. View of the whole frustule. D. Close view of rimoportula (see white arrow) located on costa at junction between valve face / mantle. E. Internal valve view showing the central fultoportulae with short central tube surrounded with 2–3 satellite pores (see white arrows). F. Valve view. Scale bars: A, C, E–F = 2.0 µm; B, D = 1.0 µm.

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Fig. 1 in Tertiarius minutulus sp. nov. (Stephanodiscaceae, Bacillariophyta) - a new fossil diatom species from Lake Ohrid

Fig. 1. Tertiarius minutulus sp. nov., LM valve views, Lake Ohrid, North Macedonia. The asterisk indicates the holotype. Scale bar = 10 µm.

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Fig. 2 in Tertiarius minutulus sp. nov. (Stephanodiscaceae, Bacillariophyta) - a new fossil diatom species from Lake Ohrid

Fig. 2. Tertiarius minutulus sp. nov., SEM external valve views. A. Valve view showing the marginal openings of the fultoportulae (see white arrow). B–D. View of the whole frustule. E. Close view of marginal openings of the fultoportula (see white arrow). F. Close view of the external openings of the valve face fultoportulae (see white arrows). Scale bars: A–D = 2.0 µm; E–F = 1.0 µm.

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Fig. 7 in Land snail genus Sarika Godwin-Austen, 1907 (Eupulmonata: Ariophantidae) from Cambodia, with description of three new species

Fig. 7. Sarika nana Pholyotha & Panha sp. nov., paratype (CUMZ 7908). A. Living snail. B. General view of genital system. C. Internal structure of penis. D. Representative SEM image of the radula. Central tooth indicated by 'C'; yellow arrow heads indicate lateral teeth with the transition to marginal teeth; white arrow heads indicate the end of penis.

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Fig. 5 in Land snail genus Sarika Godwin-Austen, 1907 (Eupulmonata: Ariophantidae) from Cambodia, with description of three new species

Fig. 5. Sarika khmeriana Pholyotha & Panha sp. nov., paratype (CUMZ 7905). A. Living snail. B. Beneral view of genital system. C. Internal structure of penis. D. Representative SEM image of the radula. Central tooth indicated by 'C'; yellow arrow heads indicate lateral teeth with the transition to marginal teeth; white arrow heads indicate the end of penis.

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Fig. 4 in Land snail genus Sarika Godwin-Austen, 1907 (Eupulmonata: Ariophantidae) from Cambodia, with description of three new species

Fig. 4. Shells of Sarika spp. A. Sarika khmeriana Pholyotha & Panha sp. nov., holotype (CUMZ 7904). B. Sarika khmeriana Pholyotha & Panha sp. nov., paratype (CUMZ 7905). C. S. nana Pholyotha & Panha sp. nov., holotype (CUMZ 7907). D. S. nana Pholyotha & Panha sp. nov., paratype (CUMZ 7908). E. Macrochlamys excepta (Mabille, 1887), syntype (MNHN-IM-2000-27886). F. M. zero (Mabille, 1887), syntype (MNHN-IM-2000-27782).

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FIG. 7 in Description of a new species of Cynodictis Bravard & Pomel, 1850 (Carnivora, Mammalia) from the Quercy Phosphorites with comments on the use of skull morphology for phylogenetics

FIG. 7. — Cranium of Cynodictis lacustris Gervais, 1852 (MNHN.F.Qu1903-20) in dorsal view (A), lateral view (B) and ventral view (C). Abbreviations: bo, basioccipital; bs, basisphenoid; ce, carnassial embrasure pit; csm, crista supramastoideus; eo, exoccipital; fm, foramen magnum; fr, frontal; M1, upper first molar; mp, mastoid process; mx, maxillary; nc, nuchal crest; oc, occipital condyle; pa, parietal; pal, palatine; pop, postorbital process of frontal; pp, paroccipital process; pr, promontorium of petrosal; ps, presphenoid; pt, pterygoid; ptp, posttympanic process of squamosal; rt, foramen for ramus temporalis; sc, sagittal crest; tc, temporal crest. Scale bar: 10 mm.

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FIG. 2 in Description of a new species of Cynodictis Bravard & Pomel, 1850 (Carnivora, Mammalia) from the Quercy Phosphorites with comments on the use of skull morphology for phylogenetics

FIG. 2. — Cranium of Cynodictis peignei n. sp. (snout – MNHN.F.Qu9007; neurocranium – MNHN.F.Qu9008) in dorsal view (A), lateral view (B) and ventral view (C). Abbreviations: bo, basioccipital; bs, basisphenoid; C, upper canine; ce, carnassial embrasure pit; csm, crista supramastoideus; eo, exoccipital; fm, foramen magnum; fr, frontal; gf, glenoid fossa; I3, upper third incisor; inf, incisive foramen; iof, infraorbital foramen; ju, jugal; lac, lacrimal; lacf, lacrimal foramen; mp, mastoid process; mpfr, maxillary process of frontal; mx, maxillary; mxt, maxillary tuberosity; na, nasal; nc, nuchal crest; np, nasal process of nasal; oc, occipital condyle; P1, upper first premolar; P2, upper second premolar; P3, upper third premolar; P4, upper ultimate premolar; pa, parietal; pal, palatine; pdp, posterodorsal process of premaxillary; pgp, postglenoid process; pmx, premaxillary; pop, postorbital process of frontal; pp, paroccipital process; pr, promontorium of petrosal; ptp, posttympanic process of squamosal; rt, foramen for ramus temporalis; sc, sagittal crest; sq, squamosal; zpmx, zygomatic process of maxillary; zpsq, zygomatic process of squamosal. Scale bar: 10 mm.

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Fig. 2. Cyrtandra argentii Olivar, H.J in Cyrtandra argentii, a new species of Cyrtandra (Gesneriaceae) from the Philippines, and a review of the C. villosissima group

Fig. 2. Cyrtandra argentii Olivar, H.J.Atkins & Muellner sp. nov. A. Flower, lateral view. B. Detail of upper leaf surface. C. Habit. D. Inflorescence. E. Calyx, longitudinal section. F. Corolla, longitudinal section. G. Gynoecium. H. Fruit enclosed by the persistent calyx. Drawn from Mendum et al. 29053 deposited at E. Habit, inflorescence, fruit and leaf indumentum drawn from dried material. Flower parts all from material preserved in alcohol. Drawing by Claire Banks.

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Figs 27–30 in Cestode parasites (Neodermata, Platyhelminthes) from Malaysian birds, with description of five new species

Figs 27–30. Raillietina mahnerti sp. nov. 27. a) Scolex. b) Sucker hooklets. c) Rostellar hook. 28. Mature proglottis, ventral view. 29. Copulatory organs. 30. Gravid proglottis with egg capsules. Scale bars: 27a, 28, 30 = 100 µm; 27b = 20 µm; 27c = 10 µm; 29 = 50 µm.

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Fig. 7. A in Revision of the Swedish species of Neoxorides Clément, 1938 (Ichneumonidae: Poemeniinae) with the description of a new species and an illustrated key to species

Fig. 7. A. Neoxorides opacus (Kokujev, 1903) stat. rev., ♀ (NJ), head, anterior view. B. N. collaris (Gravenhorst, 1829), ♀ (NJ), head, anterodorsal view. C. N. opacus, ♀ (NJ), mandible, lateral view. D. N. collaris, ♀ (NJ), mandible, lateral view. Photos: Alexander Berg.

opencc-by-4.0Jul 2020View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record