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.
287
datasets available to search
ShareScore release 0.9.0
Dataset results
287 results for “genital morphology”
FIGURE 10 in Re-description of the genus Heterobiantes and its type species H. geniculatus (Opiliones: Laniatores: Epedanidae) with additional genital and external morphology data
FIGURE 10. Altitude map of Hong Kong, China and the locations of the specimens used in this study. Heterobiantes geniculatus can be found throughout Hong Kong but tends to occur at higher altitudes (range 108–661 m).
FIGURE 9 in Re-description of the genus Heterobiantes and its type species H. geniculatus (Opiliones: Laniatores: Epedanidae) with additional genital and external morphology data
FIGURE 9. Type specimen tags found with the specimens studied by Roewer, photo taken by the British Museum of Natural History (BMNH).
FIGURE 6 in Re-description of the genus Heterobiantes and its type species H. geniculatus (Opiliones: Laniatores: Epedanidae) with additional genital and external morphology data
FIGURE 6. Photograph comparing chelicerae and the dorsal body of Heterobiantes geniculatus (Pocock, 1903) on sexual dimorphism. A Chelicerae of male (LINGU-INV06); B Dorsal body of male (LINGU-INV06); C Chelicerae of female (LINGUINV07); D Dorsal body of female (LINGU-INV07). Scale bar: 1 mm.
FIGURE 3 in Re-description of the genus Heterobiantes and its type species H. geniculatus (Opiliones: Laniatores: Epedanidae) with additional genital and external morphology data
FIGURE 3. Heterobiantes geniculatus (Pocock, 1903), male (LINGU-INV06). A Close-up of pedipalpal tibia-tarsus-claw, lateral view; B Right pedipalp, lateral view; C Left pedipalp, lateral view; D Leg I, lateral view; E Leg II, lateral view; F Leg III, lateral view; G Leg IV, lateral view. Scale bars: 1 mm.
FIGURE 2 in Re-description of the genus Heterobiantes and its type species H. geniculatus (Opiliones: Laniatores: Epedanidae) with additional genital and external morphology data
FIGURE 2. Heterobiantes geniculatus (Pocock, 1903), male (A–D, LINGU-INV06), male (E–F, LINGU-INV05), chelicera. A Distal segment of left chelicera, frontal view; B Distal segment of right chelicera, frontal view; C Left chelicera, lateral view; D Right chelicera, lateral view; E Full right chelicera, lateral view; F Full left chelicera, lateral view. Scale bars: 1mm.
FIGURE 8 in Re-description of the genus Heterobiantes and its type species H. geniculatus (Opiliones: Laniatores: Epedanidae) with additional genital and external morphology data
FIGURE 8. Comparison of dorsal and ventral genitals of male Epedanidae. A & H Kilungius bimaculatus Roewer, 1915, taken from Suzuki 1973; B, E & I Kilungius insulanus (Hirst, 1911), taken from Suzuki 1973; C & J Plistobunus columnaris Lian et al., 2011; D Pseudobiantes japonicus Hirst, 1911, taken from Kury & Villarreal 2015; F & M Epedanus pictus Thorell, 1876, taken from Kury et al. 2019; G & N Euepedanus dashdamirovi Zhang & Martens, 2020, taken from Zhang & Martens 2020; K Toccolus globitarsis Suzuki, 1969, taken from Zhang & Martens 2020; L Heterobiantes geniculatus (Pocock, 1903).
FIGURE 5 in Re-description of the genus Heterobiantes and its type species H. geniculatus (Opiliones: Laniatores: Epedanidae) with additional genital and external morphology data
FIGURE 5. Heterobiantes geniculatus (Pocock, 1903), penis. A apical structure (LINGU-INV10), ventral view; B apical structure (LINGU-INV17), lateral view; C full penis (LINGU-INV04), lateral view. Scale bars: 200 µm.
FIGURE 4 in Re-description of the genus Heterobiantes and its type species H. geniculatus (Opiliones: Laniatores: Epedanidae) with additional genital and external morphology data
FIGURE 4. Heterobiantes geniculatus (Pocock, 1903). A photograph of the distitarsus I (LINGU-INV01); B Close-up of the distitarsus I (LINGU-INV06); C Scanning electron microscopic leg IV tarsus (LINGU-INV01), a part of the distitarsus is missing, but the lack of scopulae is still clearly shown; D Scanning electron microscopic full dorso-lateral view of male genitalia (LINGU-INV10); E Scanning electron microscopic lateral view of expanded male genitalia (LINGU-INV08), arrows indicate how the lobes unfold and expand; F Scanning electron microscopic dorsal view of unexpanded male genitalia (LINGU-INV10), arrows indicate how the lobes unfurl and the direction of penial expansion. Scale bar: 1 mm (A, B); 500 µm (C); 100 µm (D, E, F).
FIGURE 1 in Re-description of the genus Heterobiantes and its type species H. geniculatus (Opiliones: Laniatores: Epedanidae) with additional genital and external morphology data
FIGURE 1. Heterobiantes geniculatus (Pocock, 1903), males, body. A lateral view (LINGU-INV02); B dorsal view (LINGUINV06); C ventral view (LINGU-INV06). Scale bars: 1 mm.
FIGURE 7 in Re-description of the genus Heterobiantes and its type species H. geniculatus (Opiliones: Laniatores: Epedanidae) with additional genital and external morphology data
FIGURE 7. Comparisons of apical structures of male genitals. A – C Penis comparisons of 'spoon' and 'cup' form between H. geniculatus and other Epedanidae species; A Pseudobiantes japonicus Hirst, 1911, taken from Kury et al. 2019; B Heterobiantes geniculatus (Pocock, 1903); C Parabeloniscus corneus Zhang & Zhang, 2012; D – F Examples and comparisons of 'prickly funnels' in everted Epedanidae genitals, all genitals beside H. geniculatus are taken from Zhang & Martens 2020; D Toccolus globitarsis Suzuki, 1969; E Heterobiantes geniculatus (Pocock, 1903); F Euepedanus dashdamirovi Zhang & Martens, 2020; G – N Comparison of lateral genitals of male Epedanidae; G & N Heterobiantes geniculatus (Pocock, 1903); H Toccolus globitarsis Suzuki, 1969, taken from Zhang & Martens, 2020; I Epedanus pictus Thorell, 1876, taken from Kury et al. 2019; J Euepedanus dashdamirovi Zhang & Martens, 2020, taken from Zhang & Martens 2020; K Pseudobiantes japonicus Hirst, 1911, taken from Kury & Villarreal 2015; L Kilungius bimaculatus Roewer, 1915, taken from Suzuki 1973; M Kilungius insulanus (Hirst, 1911), taken from Suzuki 1973.
Genital morphology and the mechanics of copulation in the millipede genus Pseudopolydesmus (Diplopoda: Polydesmida: Polydesmidae)
Open the record for dataset details and reuse information.
Data for: Relationships between reproductive character displacement in genital morphology and the population-level cost of interspecific mating: Implications for the Templeton effect
Open the record for dataset details and reuse information.
Dataset for Xia et al.: Reproductive isolation via divergent genital morphology due to cascade reinforcement in Ohomopterus ground beetles
Open the record for dataset details and reuse information.
Data from: Impact of sexually antagonistic genital morphologies on female reproduction and wild population demography
Open the record for dataset details and reuse information.
Data from: Predation-associated divergence of male genital morphology in a livebearing fish
Open the record for dataset details and reuse information.
Multivariate stabilizing sexual selection and the evolution of male and female genital morphology in the red flour beetle
Open the record for dataset details and reuse information.
Data from: Weak premating isolation between Clitarchus stick insect species despite divergent male and female genital morphology
Open the record for dataset details and reuse information.
Figure 6 from: Baptista RLC, Castanheira PS, Oliveira GA, Prado AW (2020) Descriptions of three new species of jumping-spiders, genus Arnoliseus (Araneae, Salticidae), from Rio de Janeiro state, Brazil, with comments on their genital morphology and a key to species. Zoosystematics and Evolution 96(1): 73-90. https://doi.org/10.3897/zse.96.46509
Figure 6 Arnoliseus hastatus sp. nov., female paratype (UFRJ 1586). A. Dorsal habitus; B. Ventral habitus; C. Lateral habitus; D. Frontal habitus; E. Epigyne, ventral view; F. Internal genitalia, dorsal view. Scale bars: 2 mm (A–C); 1 mm (D); 0.1 mm (E); 0.2 mm (F).
Figure 5 from: Baptista RLC, Castanheira PS, Oliveira GA, Prado AW (2020) Descriptions of three new species of jumping-spiders, genus Arnoliseus (Araneae, Salticidae), from Rio de Janeiro state, Brazil, with comments on their genital morphology and a key to species. Zoosystematics and Evolution 96(1): 73-90. https://doi.org/10.3897/zse.96.46509
Figure 5 Arnoliseus hastatus sp. nov., male paratype (UFRJ 1599) in vivo. A. Dorsal habitus; B. Frontal-dorsal habitus. Photos: André Almeida Alves
Figure 3 from: Baptista RLC, Castanheira PS, Oliveira GA, Prado AW (2020) Descriptions of three new species of jumping-spiders, genus Arnoliseus (Araneae, Salticidae), from Rio de Janeiro state, Brazil, with comments on their genital morphology and a key to species. Zoosystematics and Evolution 96(1): 73-90. https://doi.org/10.3897/zse.96.46509
Figure 3 Arnoliseus carioca sp. nov. A. Male holotype chelicerae, ectal view exposing the apophyses (MNRJ 60024). B–F.SEM images: B. Left male palp, ventral view (UFRJ 1577); C. Left male palp, retrolateral view (UFRJ 1577); D. left male palp, embolus detail (UFRJ 1577); E. Left male palp, RTA detail (UFRJ 1577); F. Female internal genitalia, dorsal view (UFRJ 1581). Scale bars: 0.5 mm (A); 0.1 mm (B); 0.2 mm (C); 0.05 mm (D–F). White arrow points to the embolus pore.
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.