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Fig. 11 in Redescription of Tapinesthis inermis (Araneae, Oonopidae), with detailed information on its ultrastructure
Fig. 11. Tapinesthis inermis, SEM, A – H dorsal views, I lateral view. – A – D. Ƌ (PBI 33882). A. Leg I. B. Leg II. C. Leg III. D. Leg IV. – E – G. ♀ (PBI 33883). E. Leg I. F. Leg II. G. Leg III. – H – I. Ƌ (PBI 33564). H. Leg IV. I. Tarsal organ, leg IV.
Fig. 9 in Redescription of Tapinesthis inermis (Araneae, Oonopidae), with detailed information on its ultrastructure
Fig. 9. Tapinesthis inermis, SEM views of spinneret area of Ƌ (PBI 33564) and ♀ (PBI 33267). A. Ƌ, colulus, ventral view. B. Same, anterior lateral spinnerets, ventral view. C. Same, posterior lateral spinnerets. D. Same, focus on posterior median spinnerets. E. ♀, posterior median spinnerets, ventral view. F. Same, anterior lateral spinnerets. G. Same, posterior lateral spinnerets. H. Same, lateral view. – ALS: anterior lateral spinnerets; PLS: posterior lateral spinnerets; PMS: posterior median spinnerets.
Figs. 10 in Redescription of Tapinesthis inermis (Araneae, Oonopidae), with detailed information on its ultrastructure
Figs. 10. Tapinesthis inermis, SEM views of tarsal claws of Ƌ (PBI 33564). A. Leg I, anterior view. B. Same, lateral view. C. Leg II, lateral view. D. Same, anterior view. E. Leg III, lateral view. F. Leg IV, lateral view.
Fig. 6. Tapinesthis inermis, SEM views. A in Redescription of Tapinesthis inermis (Araneae, Oonopidae), with detailed information on its ultrastructure
Fig. 6. Tapinesthis inermis, SEM views. A. Ƌ (PBI 08123), carapace, antero-lateral view. B. Same, close up on the distribution of the smooth platelets. C. Ƌ (PBI 33564), sternum, ventral view. D. Same, mouthparts. E. Same, close up of endite setae. F. Same, cheliceral fangs. G. Ƌ (PBI 08123), endites, anterior view with detail of serrula. H. Ƌ (PBI 33564), genital region, ventral view.
Fig. 5 in Redescription of Tapinesthis inermis (Araneae, Oonopidae), with detailed information on its ultrastructure
Fig. 5. Tapinesthis inermis, genitalia of ♀ (PBI 33267) A. Genital area, ventral view. B. Same, after digestion, ventral view. C. Same, dorsal view. D. Same, anterior view. – ARe: Anterior Receptaculum; AS: Anterior Sclerite; FA: Flattened Apodeme; Pr: lateral Protrusion; PRe: Posterior Receptaculum.
Fig. 4. Tapinesthis inermis. – A – C in Redescription of Tapinesthis inermis (Araneae, Oonopidae), with detailed information on its ultrastructure
Fig. 4. Tapinesthis inermis. – A – C. Ƌ (PBI 33564), palp. A. Retrolateral view. B. Same, frontal view. C. Same, prolateral view. – D. Ƌ (PBI 09021), palp, prolateral view, transmitted light. – E. Ƌ palp, lateral view after Saaristo & Marusik, 2009 (modiFed). – D: duct; Te: tendon; Tw: thin-walled duct; V: vesicle.
Fig. 8 in Redescription of Tapinesthis inermis (Araneae, Oonopidae), with detailed information on its ultrastructure
Fig. 8. Tapinesthis inermis, SEM views of ♀ genitalia (PBI 33267). A. Overview of genital area, dorsal view. B. Same, close up. C. Same, view slightly anterior. D. Anterior receptaculum (ARe), close up, arrow indicates gland ducts (GD). E. Same, anterior view. F. Same, detail of gland ducts (arrows). G. Lateral protrusion (Pr), detail, dorsal view. – ARe: Anterior Receptaculum; AS: Anterior Sclerite; FA: Flattened Apodeme; GD: Gland Duct; Pr: lateral Protrusion; PRe: Posterior Receptaculum; T: transverse sclerite.
Fig. 7 in Redescription of Tapinesthis inermis (Araneae, Oonopidae), with detailed information on its ultrastructure
Fig. 7. Tapinesthis inermis, SEM views of Ƌ (PBI 33564). A. Palp, frontal view. B. Same, prolateral view. C. Tip of embolus, ventral view. D. Same, retrolateral view.
Fig. 2. Tapinesthis inermis. A in Redescription of Tapinesthis inermis (Araneae, Oonopidae), with detailed information on its ultrastructure
Fig. 2. Tapinesthis inermis. A. Ƌ (PBI 33564), habitus, dorsal view. B. Same, carapace. C. Same, sternum, ventral view. D. ♀ (PBI 33267), habitus, dorsal view. E. Ƌ (PBI 33564), habitus, lateral view. F. Same, ♀ (PBI 33267). G. ♀ (PBI 08123), carapace, anterior view. Scale bars = 0.5 mm.
Fig. 3 in Redescription of Tapinesthis inermis (Araneae, Oonopidae), with detailed information on its ultrastructure
Fig. 3. Tapinesthis inermis, Ƌ from the Czech Republic (PBI 32902). A. Habitus, dorsal view. B. Same, lateral view. C. Same, lateral view. D. Prosoma, ventral view.
Fig. 12 in Redescription of Tapinesthis inermis (Araneae, Oonopidae), with detailed information on its ultrastructure
Fig. 12. Tapinesthis inermis Ƌ (PBI 33564), SEM views. A. Cymbium, frontal view. B. Same. C. Metatarsus II, dorsal view, black arrow showing pore and white arrow indicating eye-shaped structure. D. Metatarsus IV, black arrow as in C. E. Trichobothrium, dorsal view of bothrium on tibia IV. F. Dorsal view of bothrium on metatarsus.
FIGURE 2. Draconema ophicephalum, details. A in Two known and one new species of Draconematidae and Epsilonematidae (Nematoda, Desmodorida) from the White Sea, North Russia
FIGURE 2. Draconema ophicephalum, details. A: female anterior body; B: male anterior body; C: female reproductive system; D: male copulatory organs; E: male posterior body; F: posterior adhesive tube from a lateroventral row. Scale bars: A, B 50 Μm; C, E 100 Μm; D 50 Μm; E, F 10 Μm.
FIGURE 8. Epsilonema steineri, details. A in Two known and one new species of Draconematidae and Epsilonematidae (Nematoda, Desmodorida) from the White Sea, North Russia
FIGURE 8. Epsilonema steineri, details. A: male anterior body; B: female anterior body; C: female posterior body with reproductive system; D: male posterior body. Scale bars 50 µm.
FIGURE 12. Soricilichus kivuensis Fain, 1981, details. A in Review of the fur-mite genus Soricilichus Fain, 1970 (Acariformes: Chirodiscidae) — symbionts of the African shrews of the subfamily Crocidurinae (Soricomorpha: Soricidae)
FIGURE 12. Soricilichus kivuensis Fain, 1981, details. A—male opisthosoma in lateral view; B—tibia-tarsus III of male in ventral view; C—tibia tarsus IV of male in ventral view; D—leg III of female in ventral view.
FIGURES 94–95. Habitat details. 94 in Pteroptyx maipo Ballantyne, a new species of bent-winged firefly (Coleoptera: Lampyridae) from Hong Kong, and its relevance to firefly biology and conservation
FIGURES 94–95. Habitat details. 94 aerial view of Hong Kong Wetland Park (outlined in yellow) and Mai Po Inner Deep Bay Ramsar site (outlined in green). 95 Hong Kong Wetland Park habitat.
FIGURES 54–59 in Hlavaciellus Jałoszyński, 2006: eleven new species, detailed morphology and systematic position within Cephenniini (Coleoptera, Staphylinidae, Scydmaeninae)
FIGURES 54–59. Mesonotum (54), metanotum (55) and base of right elytron (56) in dorsal view, and ovipositor in ventral view (59) of female of Hlavaciellus sp.; sternite 9 (57) in ventral view and tergites 9, 10 in dorsal view (58) of male of H. clandestinus. Abbreviations: alc, alacrista; ap, articulating process of elytral base; aph, anterior phragma; asm, adsutural margin; bf, basal fovea of elytron; hd, humeral denticle; lm, lateral margin; mma, median membranous area; mp, mesal process of elytral base; mph, median phragma; ppr, paraproct; proc, proctiger; sc2, mesoscutum; sc3, metascutum; scl2, mesoscutellum; sss, scuto-scutellar suture; t9, tergite 9; t10, tergite 10; vf, valvifer. Scale bars: 0.1 mm (54, 57–59), 0.2 mm (55, 56).
FIGURE 60 in Hlavaciellus Jałoszyński, 2006: eleven new species, detailed morphology and systematic position within Cephenniini (Coleoptera, Staphylinidae, Scydmaeninae)
FIGURE 60. Single most parsimonious tree (L = 156; CI = 0.718; RI = 0.738) obtained from implicit enumeration analysis of a data matrix of unweighted and unordered adult morphological characters showed in Appendix 2. Standard bootstrap / symmetric resampling support values are shown above branches (values <50 are marked "-"). Major groups of genera are marked on the right-hand side, and representatives of the groups are illustrated (from top to bottom: Cephennium majus, Cephennodes vafer, Cephennomicrus delicatissimus, Eutheia scydmaenoides). Tree was rooted with Eutheia and Veraphis.
FIGURES 52–53 in Hlavaciellus Jałoszyński, 2006: eleven new species, detailed morphology and systematic position within Cephenniini (Coleoptera, Staphylinidae, Scydmaeninae)
FIGURES 52–53. Meso- and metaventrite of female of Hlavaciellus sp. in ventral (52) and left lateral (53) views. Abbreviations: acta, anterior coxotrochanteral articulation; aest2, mesanepisternum; aest3, metanepisternum; apc, anapleural cleft; bs, basisternal part of ventrite; epm2, mesepimeron; epm3, metepimeron; kes, katepisternum; lfa, lateral furcal arm; lraest2, lateral ridge of mesanepisternum; lrepm2, lateral ridge of mesepimeron; mcxc, mesocoal cavity; mcxs, mesocoxal socket; mvf, metaventral fovea; pavp, posterior arm of mesoventral process; pcta, posterior coxotrochanteral articulation; pls, pleural suture; pmci, postmesocoxal impression; pr, prepectus; tcv2, transverse carina of mesoventrite; v2, mesoventrite; v3, metaventrite; vf, vertical foramen; vp2, mesoventral process; vp3, metaventral process. Scale bar: 0.2 mm.
FIGURES 41–46 in Hlavaciellus Jałoszyński, 2006: eleven new species, detailed morphology and systematic position within Cephenniini (Coleoptera, Staphylinidae, Scydmaeninae)
FIGURES 41–46. Head capsule and mouthparts of female of Hlavaciellus sp. 41, head capsule in frontal view (mouthparts removed). 42, head capsule in ventral view (mouthparts removed). 43, labrum in dorsal view. 44, right mandible in dorsal view. 45, left maxilla in ventral view. 46, labium in ventral view. Abbreviations: as, antennal socket; at, apical tooth of mandible; ca, cardo; ce, cutting edge of mandible; dg, dorsal groove of mandible; eph, epipharynx; fcly, frontoclypeal region; g, gula; gal, galea; lac, lacinia; llh, lateral lobe of hypopharynx; lpm1–3, labial palpomeres 1–3; mn, mentum; mpm1–4, maxillary palpomeres 1–4; pf, palpifer; pmn, prementum; sd, suction disc; smn, submentum; st, stipes; tg, transverse groove of mandible. Scale bars: 0.1 mm.
FIGURES 49–51 in Hlavaciellus Jałoszyński, 2006: eleven new species, detailed morphology and systematic position within Cephenniini (Coleoptera, Staphylinidae, Scydmaeninae)
FIGURES 49–51. Prothorax in ventral view (49), pterothorax in ventral view (50) and left antero-ventral part of pterothorax in lateral view (51) of female of Hlavaciellus sp. Abbreviations: abf, lateral ante-basal fovea of pronotum; aest2, mesanepisternum; apc, anapleural cleft; bs, basisternal part of ventrite; ehy, external part of hypomeron; epm2, mesepimeron ihy, internal part of hypomeron; kes, katepisternum; mcxc, mesocoxal cavity; mcxs, mesocoxal socket; mvf, metaventral fovea; pcxc, procoxal cavity; pcxs, procoxal socket; plp, postero-lateral projection of procoxal cavity; pls, pleural suture; pmci, postmesocoxal impression; pph, posterior phragma; ppr, prosternal process; tcv2, transverse carina of mesoventrite; v2, mesoventrite; v3, metaventrite; vf, vertical foramen; vp2, mesoventral process; vp3, metaventral process. Scale bar: 0.2 mm.
ScienceDex guides
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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.