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.
51
datasets available to search
ShareScore release 0.9.0
Dataset results
51 results for “female internal genitalia”
FIGURES 46–60. Dysderina principalis Keyserling, female. 46. Epigastric area, ventral view. 47. Internal genitalia, dorsal view. 48 in The South American goblin spider genera Dysderina and Tridysderina (Araneae, Oonopidae)
FIGURES 46–60. Dysderina principalis Keyserling, female. 46. Epigastric area, ventral view. 47. Internal genitalia, dorsal view. 48. Claws of leg I, lateral view. 49. Same, leg II. 50. Same, leg III. 51. Same, leg IV. 52. Claws of leg I, apical view. 53. Same, leg II. 54. Same, leg III. 55. Same, leg IV. 56. Tarsal organ from leg I, dorsal view. 57. Same, leg II. 58. Same, leg III. 59. Same, leg IV. 60. Same, palp.
Figs. 71–78. Oonops pulcher Templeton, female. 71. Respiratory system, dorsal view. 72. Internal female genitalia, dorsal view. 73. Same, anterior view. 74 in The Goblin Spider Genus Heteroonops (Araneae, Oonopidae), With Notes on Oonops
Figs. 71–78. Oonops pulcher Templeton, female. 71. Respiratory system, dorsal view. 72. Internal female genitalia, dorsal view. 73. Same, anterior view. 74. Pore field of posterior receptaculum, anterior view. 75. Same, presumed secretory gland. 76. Posterior receptaculum, posterior view. 77. Compound microscope, female genitalia, ventral view. 78. Same, dorsal view.
FIGURES 31–40. Triaeris stenaspis Simon, female. 31. Postepigastric scutum, ventral view. 32. Same, posterior view. 33. Internal female genitalia, dorsal view. 34. Carapace, dorsal view. 35. Abdomen, dorsal view. 36. Sternum, ventral view. 37. Leg I, prolateral view. 38, 39. Genital area, ventral view. 40 in Got Males?: The Enigmatic Goblin Spider Genus Triaeris (Araneae, Oonopidae)
FIGURES 31–40. Triaeris stenaspis Simon, female. 31. Postepigastric scutum, ventral view. 32. Same, posterior view. 33. Internal female genitalia, dorsal view. 34. Carapace, dorsal view. 35. Abdomen, dorsal view. 36. Sternum, ventral view. 37. Leg I, prolateral view. 38, 39. Genital area, ventral view. 40. Same, dorsal view (figs. 37, 38 taken by Cristina Rheims).
Figs 9–16. Female internal genitalia. 9 in An update on the spider genus Hexophthalma (Araneae: Sicariidae) in the Afrotropical region, with descriptions of new species
Figs 9–16. Female internal genitalia. 9. Hexophthalma damarensis (Lawrence, 1928). 10. H. dolichocephala (Lawrence, 1928). 11–15. H. hahni (Karsch, 1878). 16. H. spatulata (Pocock, 1900). Scale bar = 1mm.
Figs 1–8. Female internal genitalia. 1 in An update on the spider genus Hexophthalma (Araneae: Sicariidae) in the Afrotropical region, with descriptions of new species
Figs 1–8. Female internal genitalia. 1. Hexophthalma binfordae sp. nov. 2–4. H. goanikontesensis sp. nov. 5. H. leroyi sp. nov. 6–8. H. albospinosa (Purcell, 1908). Scale bar = 1 mm.
Fig. 1 in Re-examination of morphological variations in the female internal genitalia of Helicoverpa armigera and Helicoverpa zea (Lepidoptera: Noctuidae) for identification and pest management
Fig. 1. (A) Female genitalia of Helicoverpa armigera. (B) Texture on appendix bursa of H. armigera. (C) Luminal surface on appendix bursa of H. armigera. (D) Female genitalia of Helicoverpa zea. (E) Texture on appendix bursa of H. zea. (ab) appendix bursa; (bc) bursa copulatrix; (cb) corpus bursa; (db) ductus bursa; (ob) ostium bursa; (pa) pigmented area.
Linked collectors and determiners for: Review of the sulcacitus group of Euschistus (Pentatomidae: Pentatominae: Carpocorini) with description of the internal female genitalia and a new species.
Natural history specimen data linked to collectors and determiners held within, "Review of the sulcacitus group of Euschistus (Pentatomidae: Pentatominae: Carpocorini) with description of the internal female genitalia and a new species". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/375c7e7b-e311-47c3-9599-f0e16d227889">https://bionomia.net/dataset/375c7e7b-e311-47c3-9599-f0e16d227889</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/375c7e7b-e311-47c3-9599-f0e16d227889">https://gbif.org/dataset/375c7e7b-e311-47c3-9599-f0e16d227889</a>. Formatted as a Frictionless Data package.
Rapid divergent evolution of internal female genitalia and the coevolution of male genital morphology revealed by micro-computed tomography
<p>Animal genitalia are thought to evolve rapidly and divergently in response to sexual selection. Studies of genital evolution have focused largely on male genitalia, with our understanding of female genital evolution relatively limited. The paucity of work on female genital morphology is likely due to problems faced in quantifying shape variation, due to their composition and accessibility. Here we use a combination of micro-computed tomography, landmark-free shape quantification, and phylogenetic analysis to quantify the rate of female genital shape evolution among 29 species of Antichiropus millipedes, and the coevolution of male genitalia. We found significant variation in female and male genital shape among species. While male genital shape showed significant phylogenetic signal, female genital shape did not. Male genital shape was found to be evolving 1.2 times faster than female genital shape. Female and male genital shapes exhibited strongly correlated evolution, indicating that genital shape changes in one sex are associated with corresponding changes in the genital shape of the other sex. This study adds novel insight into our growing understanding of how female genitalia can evolve rapidly and divergently and highlights the advantages of three-dimensional techniques and multivariate analyses in studies of female genital evolution.</p>
Rapid divergent evolution of internal female genitalia and the coevolution of male genital morphology revealed by micro-computed tomography
Open the record for dataset details and reuse information.
FIGURE 9. Female internal genitalia, posterior view. A, S in Phylogeny and revision of Schraderiellus Rider, 1998 with the description of five new species (Hemiptera, Pentatomidae, Discocephalinae, Ochlerini)
FIGURE 9. Female internal genitalia, posterior view. A, S. hughesae; B, S. cinctus; C, S. rufilineatus sp. nv.; D, S. luteipedis sp. nv.. Abbreviations: cs, capsula seminalis; gcIX, gonocoxites IX; gpIX, gonapophyses IX; id, inner ducts; laIX, laterotergites IX; md, medium ducts; od, outer ducts; pi, pars intermedialis; rs, ring sclerites; vi, vaginal intima. Scale bars: 0.5mm.
FIGURES 1–2. Uroctea concolor Simon. 1. Female epigynum, ventral view. 2. Female internal genitalia, dorsal view. F in The spider genus Uroctea Dufour, 1820 (Araneae: Oecobiidae) in Yemen
FIGURES 1–2. Uroctea concolor Simon. 1. Female epigynum, ventral view. 2. Female internal genitalia, dorsal view. F, fertilization duct; S, spermatheca. Scale: 0.5 mm.
FIGURES 5–8. Uroctea thaleri new species. 5. Male pedipalp, prolateral view. 6. Male pedipalp, retrolateral view. 7. Female epigynum, ventral view. 8. Female internal genitalia, dorsal view. D in The spider genus Uroctea Dufour, 1820 (Araneae: Oecobiidae) in Yemen
FIGURES 5–8. Uroctea thaleri new species. 5. Male pedipalp, prolateral view. 6. Male pedipalp, retrolateral view. 7. Female epigynum, ventral view. 8. Female internal genitalia, dorsal view. D, blind ending duct; E, embolus; S, spermatheca; TL, tegular lobe. Scale: 0.5 mm.
FIGURES 14–17. Internal female genitalia. Fig. 14 in Cladistic analysis of species of Natalis Laporte (1836) and related genera Eunatalis Schenkling (1909), Metademius Schenkling (1899) and Eurymetomorphon Pic (1950) (Coleoptera: Cleridae: Clerinae) with redescription of a restored Clerinae genus
FIGURES 14–17. Internal female genitalia. Fig. 14. Metademius sp. Fig. 15. Natalis wagneri. Fig. 16. Natalis laplacei. Fig. 17. Neogyponyx punctipennis. v=vagina; o=oviduct; b=bursa copulatrix; d=small denticles between rows; e=spermatheca; f=row of denticles; g=spermathecal gland. Scale: 0,5 mm.
FIGURES 101–117. 101–104 — internal female genitalia. 101 in A revision of Tripanda and Tenerva (Hemiptera: Heteroptera: Pentatomidae: Pentatominae)
FIGURES 101–117. 101–104 — internal female genitalia. 101 — Tripanda dispar Schouteden, 1964 (Nigeria: Ibadan); 102 — T. longiceps (Villiers, 1967) (Central African Republic: Boukoko); 103 — T. signitenens (Distant, 1898) (Zambia: Kalambo Falls); 104 — T. decorata (Jensen-Haarup, 1937) (Namibia: Ogongo). 105–117 — apical receptacle of spermatheca. 105 — T. dispar (Nigeria: Ibadan); 106–108 — T. horacekorum sp. nov. (106 — Ivory Coast: Foro Foro,107 — Ivory Coast: Adiopodoumé, 108 — Central African Republic: Boukoko); 109 — T. jurickorum sp. nov. (Guinea: Mt. Nimba); 110 — T. longiceps (Central African Republic: Boukoko); 111–114 — T. signitenens (111 — Angola: Gangassol, 112 — South Africa: Borakalalo, 113–114 — Zambia: Kalambo Falls); 115 — T. sp. (Gabon: Komo); 116 — T. collaris (Madagascar: Ambanja env.); 117 — T. decorata (Namibia: Ogongo). Abbreviations: ar — apical receptacle of spermatheca, atv — anterior thickenings of vaginal intima, dd — distal part of the spermathecal duct; dfl — distal flange, dil — dilatation of the spermathecal duct, fz — flexible zone, gap9 — gonapophyses 9, ip — intermediate part of the spermatheca, lt9 — laterotergites 9, pd — proximal duct, pfl — proximal flange, rs — ring sclerite.
FIGURES 12–21. 12, 18. Internal female genitalia, dorsal. 20. Ditto, lateral. 13. Left spermatheca, anterior. 14, 21. Right spermatheca, contralateral. 15. Male palp, prolateral. 16. Ditto, ventral. 17. Ditto, retrolateral. 19. Right spermatheca, anterior. 12–14 in Three new species and a new record of the spider genus Mallinella Strand, 1906 from Brunei (Araneae, Zodariidae)
FIGURES 12–21. 12, 18. Internal female genitalia, dorsal. 20. Ditto, lateral. 13. Left spermatheca, anterior. 14, 21. Right spermatheca, contralateral. 15. Male palp, prolateral. 16. Ditto, ventral. 17. Ditto, retrolateral. 19. Right spermatheca, anterior. 12–14. Mallinella bigemina Dankittipakul, Jocqué & Singtripop, 2012, new female from Brunei. 15–17. M. merimbunenis sp. nov., male holotype. 18–21. M. merimbunenis sp. nov., female paratype. Scale bar: 0.1 mm (15–17); 0.25 mm (12–14, 18–21).
FIGURES 25–29. Tarsonops ariguanabo n. comb., female paratype. 25. Lateral view. 26. Sternum, ventral view. 27. External genital area, ventral view. 28. Internal genitalia, ventral view. 29 in On the taxonomic placement of the Cuban spider Nops ariguanabo Alayón and the description of a new Mexican Tarsonops (Araneae, Caponiidae)
FIGURES 25–29. Tarsonops ariguanabo n. comb., female paratype. 25. Lateral view. 26. Sternum, ventral view. 27. External genital area, ventral view. 28. Internal genitalia, ventral view. 29. Internal genitalia, dorsal view. Abbreviations: amr: anterior margin of receptaculum; d: duct; s: sac; t: trachea. Scale line: 0.5 mm.
FIGURE 7. Female internal genitalia. A in Description of three new species of Glyphepomis Berg (Heteroptera: Pentatomidae: Pentatominae)
FIGURE 7. Female internal genitalia. A: Glyphepomis dubia sp. nov.; B: G. magnocephala sp. nov.; C: Glyphepomis amazonica sp. nov. (aaf: anterior annular flange; cs: capsula seminalis; dr: ductus receptaculi; gc9: gonocoxite 9; la9: laterotergite 9; or: orificium receptaculi; pi: pars intermedialis; rs: ring sclerite; tg9: thickenings of gonapophyses 9; tvi: thickenings of vaginal intma; va: vesicular area; X: 10th segment). Scale bars: 0.5 mm.
FIGURES 14–17. Female inTernal geniTalia, dorsal view. 14 in Three new species of tube-dwelling spider genus Ariadna Audouin, 1826 (Araneae: Segestriidae) from India
FIGURES 14–17. Female inTernal geniTalia, dorsal view. 14. Ariadna vansda sp. nov. (WILD-15-ARA-1369); 15. A. molur sp. nov. (WILD-10-ARA-620); 16 – 17. A. chhotae sp. nov. (WILD-10-ARA-563). Scale for 14-15, 0.20 mm, 16, 17 = 0.10 mm.
FIGURES 42–44 in Review of the sulcacitus group of Euschistus (Pentatomidae: Pentatominae: Carpocorini) with description of the internal female genitalia and a new species
FIGURES 42–44. Generalized phallus of species of sulcacitus group, in dorsal, lateral and ventral views. cj, conjunctiva; dsd, ductus seminis distalis; ph, phallotheca; prph, processus phallotheca; pv, processus vesicae. Scale bars: 0.25 mm.
FIGURES 6–20 in Review of the sulcacitus group of Euschistus (Pentatomidae: Pentatominae: Carpocorini) with description of the internal female genitalia and a new species
FIGURES 6–20. Dissected and macerated pygophore of species of sulcacitus group. Pygophore in dorsal (6, 9, 12, 15, 18), posterior (7, 10, 13, 16, 19), and ventral (8, 11, 14, 17, 20) views. 6–8, Euschistus (Euschistus) corcoVacitus; 9–11, Euschistus (Euschistus) olacitus; 12–14, Euschistus (Euschistus) palacitus; 15–17, Euschistus (Euschistus) sulcacitus; 18–20, Euschistus (Euschistus) tacitus sp. nov.. dr, dorsal rim; mp, median projection; par, paramere; slvr, superior layer of ventral rim; spdr, superior process of dorsal rim; vr, ventral rim. Scale bars: 0.25 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.