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.
1,369
datasets available to search
ShareScore release 0.9.0
Dataset results
1,369 results for “sexual dimorphism”
FIGURES 1–4 in Dry leaf or twig mantis? A new genus and species of Acanthopidae with sexually dimorphic cryptic strategies (Insecta: Mantodea)
FIGURES 1–4. Cryptic strategies in Acanthopidae: 1, Metilia sp., a male with partially decaying, dry-leaf habitus (specimen from Novo Airão, Amazonas State, Brazil—Photo by Antonio Agudelo); 2: Metilia sp., a female with partially decaying, dryleaf habitus (specimen from Ecuador—Photo by Andreas Key); 3, Metacanthops fuscum (n. sp.), a male with fully dry-leaf habitus (specimen from Reserva Cuieiras, ZF2, Manaus, Amazonas State, Brazil—Photo by Antonio Agudelo); 4, Pseudacanthops sp., a female resembling a lichenous twig (specimen from Manaus, Amazonas State, Brazil—Photo by Antonio Agudelo).
FIGURE 10 in With DNA barcoding revealing sexual dimorphism in a water mite: the first description of male Sperchon fuxiensis (Acari: Hydrachnidia: Sperchontidae)
FIGURE 10. Neighbour-joining (NJ) tree of the water mites inferred from the DNA barcoding of COI (details of the specimens are shown in Table 1). Bootstrap value based on 1,000 replications is shown near the branch.
FIGURES 1–3. Sperchon fuxiensis, Male. 1 in With DNA barcoding revealing sexual dimorphism in a water mite: the first description of male Sperchon fuxiensis (Acari: Hydrachnidia: Sperchontidae)
FIGURES 1–3. Sperchon fuxiensis, Male. 1. idiosoma, dorsal view; 2. decoration pattern of integument; 3. idiosoma, ventral view.
FIGURES 4–9. Sperchon fuxiensis, Male. 4 in With DNA barcoding revealing sexual dimorphism in a water mite: the first description of male Sperchon fuxiensis (Acari: Hydrachnidia: Sperchontidae)
FIGURES 4–9. Sperchon fuxiensis, Male. 4. infracapitulum; 5. chelicera; 6. palpal; 7. claw; 8. IV-L-1–IV-L-6; 9. dorsal seta of IV-L-4.
FIGURE 3 in New insights to the taxonomy of Rhagodes eylandti (Walter, 1889): A remarkable sexually dimorphic species (Solifugae: Rhagodidae)
FIGURE 3. Intraspecific color variation of female Rhagodes eylandti (Walter, 1889). A and B: ZISP-801, originally labelled as Rhagodes grimmi from west Turkmenistan, C: NHM-1456, originally labelled as Rhagodes melanochaetus from Turkmenistan, D: ZISP-793, originally labeled as Rhagodes grimmi from south Turkmenistan, E: ZMFUM-SOL-1187, subadult female from northeast Iran, F and G: ZMFUM-SOL-1190 & 1191, juvenile females from northeast Iran. Figure 3C is courtesy of Oliver Macek, Naturhistorisches Museum, Wien (NHM). Scale bars = 5.0 mm.
FIGURES 1–8. General appearance and diagnostic characters used for the species delimitation. 1 in Male identification, generic classification and sexual dimorphism of Micronychus pardus (Kazantsev, 2018) comb. nov. (Coleoptera: Lycidae: Calochrominae)
FIGURES 1–8. General appearance and diagnostic characters used for the species delimitation. 1. General appearance of M. pardus comb. nov., male, 2. General appearance of M. pardus comb. nov., female, 3. Male antennae, 4. Male genitalia of M. pardus comb. nov., 5. Male genitalia of Micronychus sp., 6. head of M. pardus comb. nov., 7. Pronotum of M. pardus comb. nov., 8. Pronotum of Calochromus glaucopterus. Scale bars (1–2) 2 mm, (3–7) 0.5 mm, (8) 1 mm.
FIGURE 4 in Description of a female and variation of Microgomphus alani Kosterin, 2016 (Odonata: Gomphidae) in Cambodia, with a note on sexual dimorphism in Microgomphus spp.
FIGURE 4. Anal appendages, in dorsal (left) and lateral (right) view, of mature males of Microgomphus alani, collected on 26 vi 2018 in Mondulkiri Province (a–b, respectively corresponding to the specimens in Fig. 2d and Fig. 2e) and on 17 vi 2018 in the Phnom Kulen Mts (c, correspond to Fig. 1a and Fig 2a). Scale bar 1 mm.
FIGURE 3 in Description of a female and variation of Microgomphus alani Kosterin, 2016 (Odonata: Gomphidae) in Cambodia, with a note on sexual dimorphism in Microgomphus spp.
FIGURE 3. Details of male specimens of Microgomphus alani collected on 26 vi 2018 in Mondulkiri Province (a–d; the same specimen as in Fig. 2d) and on 17 vi 2018 in the Phnom Kulen Mts (a–h, the same specimen as in Fig. 1a and Fig 2a): a,e—head and thorax, lateral view; b,f—pterothorax, dorsal view; c,g—head, frontal (c) and dorsofrontal (g) view; d,h—secondary genitalia, lateral view. Scale bars. from top to bottom, 4 mm, 2 mm, 2 mm and 0.5 mm.
Fig. 6 in From Eastern Arc Mountains to extreme sexual dimorphism: systematics of the enigmatic assassin bug genus Xenocaucus (Hemiptera: Reduviidae: Tribelocephalinae)
Fig. 6 Ventral habitus of the seven East African species of Xenocaucus and the male of X. ethiopiensis; abbreviation: vptr, ventral process on trochanter
Fig. 4 in From Eastern Arc Mountains to extreme sexual dimorphism: systematics of the enigmatic assassin bug genus Xenocaucus (Hemiptera: Reduviidae: Tribelocephalinae)
Fig. 4 Dorsal habitus of X. rubeho, n. sp., (female), the female holotype as well as one female and one unsexed immature (both from Uluguru) of X. schoutedeni, X. uluguru, n. sp., (female), and one immature (unsexed)
Fig. 2 in From Eastern Arc Mountains to extreme sexual dimorphism: systematics of the enigmatic assassin bug genus Xenocaucus (Hemiptera: Reduviidae: Tribelocephalinae)
Fig. 2 Biogeographic (DIVA RASP; areas of endemism are regions) and divergence dating (BEAST; timescale mya) hypotheses dating the split between X. ethiopiensis and the Tanzanian clade to about 39 mya, with species level divergences within the Tanzanian clade occurring between about 12 and 8 mya; the ancestral area for the East African Xenocaucus is
Fig. 1 in From Eastern Arc Mountains to extreme sexual dimorphism: systematics of the enigmatic assassin bug genus Xenocaucus (Hemiptera: Reduviidae: Tribelocephalinae)
Fig. 1 Best maximum likelihood tree based on three gene regions (16S, 18S, 28S D2 and 28S D3–5; 3060 bp alignment) and 14 ingroup terminals representing the seven currently known East African species of Xenocaucus and ten outgroup taxa; Xenocaucus is recovered as
Fig. 8 in From Eastern Arc Mountains to extreme sexual dimorphism: systematics of the enigmatic assassin bug genus Xenocaucus (Hemiptera: Reduviidae: Tribelocephalinae)
Fig. 8 Details of thorax and abdomen of a female of X. chomensis and the male holotype of X. ethiopiensis. bt bulbous trichome, msp bilobed process on metasternum, ts1,2 tarsomere 1 and 2
Figs 25–28 in New species of Oriental Tersilochinae (Hymenoptera: Ichneumonidae), with remarks on sexual dimorphism in the genus Allophrys Förster, 1869
Figs 25–28. Probles bengalensis sp.n., ♀, holotype: 25 — head and bases of antennae, lateral view; 26 — propodeum, dorsal view; 27 — tergites 1–3, dorsal view; 28 — apex of ovipositor, lateral view. Рис. 25–28. Probles bengalensis sp.n., ♀, голотип: 25 — голова и основание антенн, сбоку; 26 — проподеум, сверху; 27 — тергиты 1–3, сверху; 28 — верШина Яйцеклада, сбоку.
Figs 18–20 in New species of Oriental Tersilochinae (Hymenoptera: Ichneumonidae), with remarks on sexual dimorphism in the genus Allophrys Förster, 1869
Figs 18–20. Diaparsis lompobattanga sp.n., ♀, holotype (18–19) and paratype (20): 18 — antenna, lateral view; 19 — propodeum and base of metasoma, dorsal view; 20 — first mesosomal segment, lateral view. Рис. 18–20. Diaparsis lompobattanga sp.n., ♀, голотип (18–19) и паратип (20): 18 — антенна, сбоку; 19 — проподеум и основание метасомы, сверху; 20 — первый сегмент метасомы, сбоку.
Figs 7–11 in New species of Oriental Tersilochinae (Hymenoptera: Ichneumonidae), with remarks on sexual dimorphism in the genus Allophrys Förster, 1869
Figs 7–11. Diaparsis niphadoctona (Laos), ♀: 7 — habitus, lateral view; 8 — head, dorsal view; 9 — head, front view; 10 — head with antenna, antero-ventral view; 11 — apex of ovipositor, lateral view. Рис. 7–11. Diaparsis niphadoctona (Лаос), ♀: 7 — габитус, сбоку; 8 — голова, сверху; 9 — голова, спереди; 10 — голова с антенной, спереди и сниЗу; 11 — верШина Яйцеклада, сбоку.
Figs 1–4 in New species of Oriental Tersilochinae (Hymenoptera: Ichneumonidae), with remarks on sexual dimorphism in the genus Allophrys Förster, 1869
Figs 1–4. Allophrys miklouhomaclayi (Indonesia), ♀ (1) and ♂ (2–4): 1, 2 — habitus, lateral view; 3 — head, dorsal view; 4 — head, front view. Рис. 1–4. Allophrys miklouhomaclayi (ИндонеЗиЯ), ♀ (1) и ♂ (2–4): 1, 2 — габитус, сбоку; 3 — голова, сверху; 4 — голова, спереди.
Figs 5–6 in New species of Oriental Tersilochinae (Hymenoptera: Ichneumonidae), with remarks on sexual dimorphism in the genus Allophrys Förster, 1869
Figs 5–6. Allophrys miklouhomaclayi (Indonesia), ♀: 5 — head, anteroventral view; 6 — head with antenna and mesosoma, posterolateral view. Рис. 5–6. Allophrys miklouhomaclayi (ИндонеЗиЯ), ♀: 5 — голова, спереди и сниЗу; 6 — голова с антенной и меЗосома, сЗади и сбоку.
Fig. 4 T in Tachypleus syriacus (Woodward)-a sexually dimorphic Cretaceous crown limulid reveals underestimated horseshoe crab divergence times
Fig. 4 T. syriacus (Woodward) and T. tridentatus Leach. a T. syriacus – BMNH NHM 59783, immature female (holotype). Cretaceous, Lebanon. b T. tridentatus—YPM IZ 055581, adult
Fig. 1 T in Tachypleus syriacus (Woodward)-a sexually dimorphic Cretaceous crown limulid reveals underestimated horseshoe crab divergence times
Fig. 1 T. syriacus (Woodward). a BMNH NHM IA 187, male. Cretaceous, Lebanon. b BMNH NHM IA 188, female. Cretaceous, Lebanon. Arrows indicate the lateral extent of the anterior scalloped margin in the male. Scale bars represent 50 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.