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.
278
datasets available to search
ShareScore release 0.7.1
Dataset results
278 results for “sibling species”
Figures 13-19 in On two sibling Lathys species (Araneae, Dictynidae) from northern Europe
Figures 13-19. Male palp of Lathys humilis (13-16 from Crimea) and L. nielseni (17-19 from Finland) 13, 17 retrolateral 14, 18 ventral 15-16, 19 patella, tibia and base of cymbium, retrolateral-dorsal, different turns 13, 15 after Marusik et al. (2009). Scale = 0.1 mm if not otherwise indicated.
Figures 7-12 in On two sibling Lathys species (Araneae, Dictynidae) from northern Europe
Figures 7-12. Male palp of Lathys humilis (7-9, from Crimea) and L. nielseni (10-12, from Finland) 7, 10 ventral 8, 11 retrolateral 9 bulbus, retrolateral 12 bulbus, dorsal 12 after Marusik et al. (2009).
Figures 26-32 in On two sibling Lathys species (Araneae, Dictynidae) from northern Europe
Figures 26-32. Epigyne of Lathys humilis (26-27) and L. nielseni (28-32) 26, 28-29 digital photograph of epigyne, ventral 27, 30 epigyne after maceration, ventral 31-32 epigyne, dorsal 26-27 from Crimea 28, 30-31 from Finland 29 from Ural 26 after Marusik et al. (2009) 32 after Hu (1984). Scale = 0.1 mm.
Figures 1-6 in On two sibling Lathys species (Araneae, Dictynidae) from northern Europe
Figures 1-6. Habitus and pattern of Lathys humilis (1-3) and L. nielseni (4-6) 1, 4 male, dorsal 2-3, 5-6 female, dorsal 1-2 from Crimea 3 from Azerbaijan 4-5 from Finland 6 from Ural.
Figures 20-25 in On two sibling Lathys species (Araneae, Dictynidae) from northern Europe
Figures 20-25. Epigyne and male chelicera of Lathys humilis (20-22 from Crimea) and L. nielseni (23- 25 from Finland) 20, 23 epigyne, ventral 21, 24 frontal 22, 25 inner 20 from Azerbaijan 21-22 – from Crimea. Scale = 0.1 mm.
Map 1 in On two sibling Lathys species (Araneae, Dictynidae) from northern Europe
Map 1. Distribution of Lathys humilis (dot) and L. nielseni (square). A square and a circle refer to areas where both species have been found. Some dots and two squares (Germany, Switzerland) refer to state records. An open dot and square refer to a questionable record. Diamonds refer to doubtful records of L. humilis that may relate either to L. nielseni or L. annulata. Specimens from localities east of the broken line have been studied by us (except for questionable records).
Fig. 12 in New sibling species and new occurrences of squat lobsters (Crustacea, Decapoda) from the western Indian Ocean
Fig. 12. Dorsal view. Colours in life. A. Munida limula Macpherson & Baba, 1993, ♂, 3.4 mm, Madagascar, ATIMO VATAE, Stn TP12. B. Munida mesembria sp. nov., paratype, ♀, 6.5 mm, Mozambique, MAINBAZA, Stn CP3130. C. Munida micra sp. nov., holotype, ♂, 3.7 mm, Mozambique, MAINBAZA, Stn CC3165. D. Munida muscae Macpherson & de Saint Laurent, 2002, ♂, 3.2 mm, Madagascar, MIRIKY, Stn DW3179.
Fig. 11 in New sibling species and new occurrences of squat lobsters (Crustacea, Decapoda) from the western Indian Ocean
Fig. 11. Dorsal view. Colours in life. A. Munida africana Balss, 1913, ♀, 10.9 mm, Mozambique, MAINBAZA, Stn CP3141. B. Munida benguela de Saint-Laurent & Macpherson, 1988, ♂, 20.0 mm, Mozambique, MAINBAZA, Stn CP3138. C. Munida benguela de Saint-Laurent & Macpherson, 1988, ♀, 13.7 mm, Mozambique, MAINBAZA, Stn CP3135. D. Munida hoda sp. nov., paratype, ov. ♀, 11.4 mm, Mozambique, MAINBAZA, Stn CC3166.
Fig. 10 in New sibling species and new occurrences of squat lobsters (Crustacea, Decapoda) from the western Indian Ocean
Fig. 10. Munidopsis columbae sp. nov., holotype, ♂, 8.7 mm (MNHN-IU-2014-13472), Madagascar. A. Carapace and abdomen, dorsal view. B. Carapace and abdomen, lateral view. C. Sternal plastron, sternites 3 and 4. D. Cephalic region, showing antennular and antennal peduncles, ventral view. E. Right Mxp3, lateral view. F. Right P1, dorsal view. G. Right P2, lateral view. H. Right P3, lateral view. I. Right P4, lateral view. Scale bar: A–B, F–I = 2.0 mm; C–E = 1.0 mm.
Fig. 14 in New sibling species and new occurrences of squat lobsters (Crustacea, Decapoda) from the western Indian Ocean
Fig. 14. Dorsal view. Colours in life. A. Paramunida mozambica Cabezas et al., 2011, ♀, 6.0 mm, Mozambique, MAINBAZA, Stn CP3161. B. Bathymunida polae Balss, 1914, ♂, 3.8 mm, Mozambique, MAINBAZA, Stn DW3133. C. Munidopsis africana Balss, 1913, ♂, 7.4 mm, Mozambique, MAINBAZA, Stn CP3142. D. Eumunida minor de Saint Laurent & Macpherson, 1990, ♂, 5.3 mm, Mozambique, MAINBAZA, Stn DW3167.
Fig. 13 in New sibling species and new occurrences of squat lobsters (Crustacea, Decapoda) from the western Indian Ocean
Fig. 13. Dorsal view. Colours in life. A. Munida nesiotes Macpherson, 1999, ov. ♀, 8.5 mm, Mozambique, MAINBAZA, Stn CP3143. B. Munida shaula Macpherson & de Saint Laurent, 2002, ov. ♀, 12.4 mm, Mozambique, MAINBAZA, Stn CC3151. C. Munida tetracantha sp. nov., paratype, ♂, 7.4 mm, Mozambique, MAINBAZA, Stn CP3131. D. Paramunida marionis Cabezas et al., 2011, ♀, 6.0 mm, Mozambique, MAINBAZA, Stn CP3143.
Fig. 2 in New sibling species and new occurrences of squat lobsters (Crustacea, Decapoda) from the western Indian Ocean
Fig. 2. Munida austrina sp. nov., holotype, ♀, 4.6 mm (MNHN-IU-2014-13478), Mozambique. A. Carapace and abdomen, dorsal view. B. Sternal plastron. C. Cephalic region, showing antennular and antennal peduncles, ventral view. D. Right Mxp3, lateral view. E. Right P1, dorsal view. F. Right P2, lateral view. G. Dactylus of right P2, lateral view. H. Right P3, lateral view. I. Right P4, lateral view. Scale bar: A, E–F, H–I = 1.0 mm; B–D, G = 0.5 mm.
Fig. 1 in New sibling species and new occurrences of squat lobsters (Crustacea, Decapoda) from the western Indian Ocean
Fig. 1. Eumunida spiridonovi sp. nov., holotype, ♀, 11.0 mm (MNHN-IU-2016-8715), East of Somalia. A. Carapace, dorsal view. B. Abdomen, dorsal view. C. Sternal plastron, sternites 3 and 4. D. Left antenna and antennula, ventral view. E. Right Mxp3. F. Right P1 merus, dorsal view. G. Right P1 carpus and distal part of merus, ventral view. H. Right P1 palm and fingers, dorsal view. I. Right P1 distal part of palm and fingers, ventral view. J. Right P2. Scale bar: A–C, G, I–J = 2.0 mm; D–E = 1 m; F, H = 0.5 mm.
Fig. 7 in New sibling species and new occurrences of squat lobsters (Crustacea, Decapoda) from the western Indian Ocean
Fig. 7. Munida micra sp. nov., holotype, ♂, 3.7 mm (MNHN-IU-2008-10229), Mozambique. A. Carapace and abdomen, dorsal view. B. Sternal plastron. C. Cephalic region, showing antennular and antennal peduncles, ventral view. D. Right Mxp3, lateral view. E. Left P1, dorsal view. F. Left P2, lateral view. G. Dactylus of left P2, lateral view. H. Left P3, lateral view. I. Right P4, lateral view. Scale bar: A–B, E–F, H–I = 1.0 mm; C–D, G = 0.5 mm.
Fig. 3 in New sibling species and new occurrences of squat lobsters (Crustacea, Decapoda) from the western Indian Ocean
Fig. 3. Munida cristulata sp. nov., holotype, ♂, 6.1 mm (MNHN-IU-2014-13480), Glorieuses Islands, N of Mayotte Island. A. Carapace and abdomen, dorsal view. B. Sternal plastron. C. Cephalic region, showing antennular and antennal peduncles, ventral view. D. Right Mxp3, lateral view. E. Right P1, dorsal view. F. Right P2, lateral view. G. Right P3, lateral view. H. Right P4, lateral view. Scale bar: A–B, E–H = 1.0 mm; C–D = 0.5 mm.
Fig. 6 in New sibling species and new occurrences of squat lobsters (Crustacea, Decapoda) from the western Indian Ocean
Fig. 6. Munida mesembria sp. nov., holotype, ♂, 7.7 mm (MNHN-IU-2014-13477), Mozambique. A. Carapace and abdomen, dorsal view. B. Sternal plastron. C. Cephalic region, showing antennular and antennal peduncles, ventral view. D. Right Mxp3, lateral view. E. Right P1, dorsal view. F. Right P2, lateral view. G. Dactylus of right P2, lateral view. H. Left P3, lateral view. I. Right P4, lateral view. Scale bar: A, E–F, H–I = 2.0 mm; B–D, G = 1.0 mm.
Fig. 9 in New sibling species and new occurrences of squat lobsters (Crustacea, Decapoda) from the western Indian Ocean
Fig. 9. Munida tetracantha sp. nov., holotype, ♂, 6.6 mm (MNHN-IU-2014-13474), Madagascar. A. Carapace and abdomen, dorsal view. B. Sternal plastron. C. Cephalic region, showing antennular and antennal peduncles, ventral view. D. Right Mxp3, lateral view. E. Right P1, dorsal view. F. Right P2, lateral view. G. Dactylus of right P2, lateral view. H. Right P4, lateral view. Scale bar: A, E–F, H = 2.0 mm; B–D, G = 1.0 mm.
Data from: Foraging behaviour and habitat-use drives niche segregation in sibling seabird species
<p>To mediate competition, similar sympatric species are assumed to utilise different resources, or the same but geographically separated resources. The two giant petrels (<em>Macronectes</em> spp.) are intriguing in that they are morphologically similar seabirds with overlapping diets and distributions. To better understand the mechanisms allowing their co-existence, we investigated intra- and interspecific niche segregation at Marion Island (Southern Indian Ocean), one of the few localities where they breed in sympatry. We used GPS tracks from 94 individuals and remote-sensed environmental data to quantify habitat-use, combined with blood carbon and nitrogen stable isotope ratios from 90 individuals to characterise their foraging habitat and trophic ecology. Females of both species made distant at sea foraging trips and fed at a similar trophic level. However, they used distinct pelagic habitats. In contrast, males of both species mainly foraged on or near land, resulting in significant sexual segregation, but high interspecific habitat and diet overlap. However, some males showed flexible behavioural strategies, also making distant, pelagic foraging trips. Using contemporaneous tracking, environmental and stable isotope data we provide a clear example of how sympatric sibling species can be segregated along different foraging behaviour dimensions.</p>
Fig. 11 in Differences in the male calling songs of two sibling species of Cicada (Hemiptera: Cicadoidea) in Greece
Fig. 11. Dendrogram of the relationships between 20 males of C. mordoganensis Boulard from Samos and Ikaria and 10 males of C. orni L. from Athens, revealed by UPGMA cluster analysis of Euclidean distances. Data standardized. IK – Ikaria; SA – Samos; AT –Athens; numbers refer to specimens.
Figs 1–2 in Differences in the male calling songs of two sibling species of Cicada (Hemiptera: Cicadoidea) in Greece
Figs 1–2: Left lateral view of the genital segments of a male. 1 – C. mordoganensis Boulard from Samos; 2 – C. lorni L. from Dionysos, Athens. Scale = 0.8 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.