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.
334
datasets available to search
ShareScore release 0.9.0
Dataset results
334 results for “biological evaluation”
Figures 29–34 in The suprageneric groups of the Pimplinae (Hymenoptera: Ichneumonidae): a cladistic re-evaluation and evolutionary biological study
Figures 29–34. Stereoscan photographs of Pimplinae. Figs 29–32,head, anterior; 29, Acropimpla didyma; 30, Sericopimpla australis; 31, Dolichomitus irritator ♂; 32, Xanthopimpla aurita; Figs 33, 34, base of antennae; 33, Pimpla azteca; 34, Acrodactyla degener.
Figures 94–97 in The suprageneric groups of the Pimplinae (Hymenoptera: Ichneumonidae): a cladistic re-evaluation and evolutionary biological study
Figures 94–97. Posterior end of metasoma of female, showing position and shape of tergites VII−IX and associated apodemes, slightly diagrammatic; 94, Pimpla sumichrasti; 95, Neotheronia mellosa; 96, Scambus brevicornis; 97, Acrotaphus tibialis. Note the great enlargement of the apodeme on tergite VIII in Pimpla.
Figures 35–40 in The suprageneric groups of the Pimplinae (Hymenoptera: Ichneumonidae): a cladistic re-evaluation and evolutionary biological study
Figures 35–40. Stereoscan photographs of Pimplinae, head, posterior; 35, Dolichomitus annulicornis; 36, Pseudopimpla pygidiator; 37, Camptotypus stigmaticus; 38, Dreisbachia avivae; 39, Eruga yehi; 40, Schizopyga frigida.
Figure 20 in The suprageneric groups of the Pimplinae (Hymenoptera: Ichneumonidae): a cladistic re-evaluation and evolutionary biological study
Figure 20. Cladogram resulting from secondary analysis: section 7 (of 9), the Ephialtes genus-group. The topology of this cladogram broadly resembles that of the primary analysis, but note that Dolichomitus is apparently monophyletic. The results support the primary analysis in that Endromopoda (excluding Fredegunda) and Holcopimpla are not demonstrably monophyletic.
Figure 17 in The suprageneric groups of the Pimplinae (Hymenoptera: Ichneumonidae): a cladistic re-evaluation and evolutionary biological study
Figure 17. Cladogram resulting from secondary analysis: section 4 (of 9), the interrelationships of Xanthopimpla, Lissopimpla and Echthromorpha.
Figures 77–82 in The suprageneric groups of the Pimplinae (Hymenoptera: Ichneumonidae): a cladistic re-evaluation and evolutionary biological study
Figures 77–82. Stereoscan photographs of Pimplinae. Fig. 77, Polysphincta tuberosa, ovipositor entire. Figs 78–82, apex of metasoma, ♂, lateroventral; 78, Scambus buolianae; 79, Delomerista laevifrons; 80, Perithous scurra, 81, Xanthopimpla aurita; 82, Pimpla caeruleata.
Figure 14 in The suprageneric groups of the Pimplinae (Hymenoptera: Ichneumonidae): a cladistic re-evaluation and evolutionary biological study
Figure 14. Cladogram resulting from secondary analysis: section 1 (of 9), outgroups and tribes of Pimplini, showing characters supporting both the monophyly of the subfamily and the several tribes. Note that the topology of this cladogram is essentially the same as that in Fig. 1 except for the re-arrangement of the three tribes of Pimplinae: the Delomeristini is the sister-lineage to Pimplini + Ephialtini, rather than the Pimplini being the sister-group to the Delomeristini + Ephialtini.
Figure 18 in The suprageneric groups of the Pimplinae (Hymenoptera: Ichneumonidae): a cladistic re-evaluation and evolutionary biological study
Figure 18. Cladogram resulting from secondary analysis: section 5 (of 9), the basal Ephialtini. Note that the topology is very similar to the primary analysis (Fig. 6) except that the Ephialtes, Camptotypus and Sericopimpla genus-groups form an unresolved trichotomy.
Figure 10 in The suprageneric groups of the Pimplinae (Hymenoptera: Ichneumonidae): a cladistic re-evaluation and evolutionary biological study
Figure 10. Cladogram resulting from primary analysis: section 10 (of 13), the basal members of the Sericopimpla genusgroup. Note the demonstrably monophyletic nature of most genera (Sericopimpla, Tromatobia, Zaglyptus and Clistopyga) and their basal relationship to the Polysphincta genus-complex (the Polysphinctini of authors). Gregopimpla is apparently paraphyletic with respect to Iseropus.
Figure 11 in The suprageneric groups of the Pimplinae (Hymenoptera: Ichneumonidae): a cladistic re-evaluation and evolutionary biological study
Figure 11. Cladogram resulting from primary analysis: section 11 (of 13), the basal members of the Polysphincta genuscomplex. Note the most basal position of Piogaster and the division of the remaining genera into two monophyletic clades, one comprising Dreisbachia, Schizopyga and Zabrachypus, the other Polysphincta plus the remaining genera. In the first clade Zabrachypus and Schizopyga are monophyletic but Dreisbachia is paraphyletic with respect to them. In the second clade, Oxyrrhexis is paraphyletic.
Figure 12 in The suprageneric groups of the Pimplinae (Hymenoptera: Ichneumonidae): a cladistic re-evaluation and evolutionary biological study
Figure 12. Cladogram resulting from primary analysis: section 12 (of 13), the more derived members of the Polysphincta genus-complex. Note that Eriostethus + Zatypota form a well-defined monophyletic group with each genus monophyletic, and Hymenoepimecis + Acrotaphus is also a well-defined clade with each genus monophyletic. However, Polysphincta is polyphyletic (see also Figs 11, 13).
Figure 9 in The suprageneric groups of the Pimplinae (Hymenoptera: Ichneumonidae): a cladistic re-evaluation and evolutionary biological study
Figure 9. Cladogram resulting from primary analysis: section 9 (of 13), the more derived members of the Ephialtes genusgroup. Whilst most genera (Townesia, Ephialtes, Liotryphon, Pimplaetus, Leptopimpla Calliephialtes, Umanella, Xanthephialtes and Anastelgis) are monophyletic, Dolichomitus is polyphyletic.
Figures 83–86 in The suprageneric groups of the Pimplinae (Hymenoptera: Ichneumonidae): a cladistic re-evaluation and evolutionary biological study
Figures 83–86. Head, lateral; 83, Delomerista mandibularis; 84, Apechthis compunctor; 85, Acrotaphus tibialis; 86, Acrodactyla madida.
Figure 21 in The suprageneric groups of the Pimplinae (Hymenoptera: Ichneumonidae): a cladistic re-evaluation and evolutionary biological study
Figure 21. Cladogram resulting from secondary analysis: section 8 (of 9), the basal members of the Sericopimpla genusgroup. The topology of this cladogram is the same as that obtained in the primary analysis, and the monophyly of Gregopimpla not established with respect to Iseropus.
Figures 59–64 in The suprageneric groups of the Pimplinae (Hymenoptera: Ichneumonidae): a cladistic re-evaluation and evolutionary biological study
Figures 59–64. Stereoscan photographs of Pimplinae. Figs 59–63, propodeum, lateral; 59, Zaglyptus simonis; 60, Echthromorpha atrata; 61, Pimpla sumichrasti; 62, Xanthopimpla aurita; 63, Lissopimpla excelsa. Fig. 64, Pimpla azteca, denticles on dorsal rim of propodeal insertion.
Figures 98–101 in The suprageneric groups of the Pimplinae (Hymenoptera: Ichneumonidae): a cladistic re-evaluation and evolutionary biological study
Figures 98–101. Posterior end of metasoma of male, showing position and shape of tergites VII−IX and gonosquama, slightly diagrammatic; 98, Rhyssa persuasoria; 99, Dolichomitus irritator; 100, Xanthopimpla aurita; 101, Pimpla sumichrasti. The condition in outgroups, and thus the presumed plesiomorphic condition in pimplines is shown in the first two figures. Tergites VIII and IX are fused in the subsequent two, and the gonosquama show progressive retraction into the posterior end of the metasoma.
Figure 7 in The suprageneric groups of the Pimplinae (Hymenoptera: Ichneumonidae): a cladistic re-evaluation and evolutionary biological study
Figure 7. Cladogram resulting from primary analysis: section 7 (of 13), the Camptotypus genus-group. Note that Odontopimpla, Clydonium, Camptotypus and Parvipimpla are demonstrably monophyletic, but Zonopimpla is paraphyletic. The recognition of 'Hemipimpla' as a distinct genus (for C. pulchripennis) would render the residual Camptotypus paraphyletic.
Figure 8 in The suprageneric groups of the Pimplinae (Hymenoptera: Ichneumonidae): a cladistic re-evaluation and evolutionary biological study
Figure 8. Cladogram resulting from primary analysis: section 8 (of 13), the basal members of the Ephialtes genus-group. Note that most genera (Acropimpla, Scambus, Exeristes, Xanthophenax Flavopimpla and Paraperithous were retrieved as monophyletic groups. The recognition of Fredegunda renders Endromopoda paraphyletic.
Figure 6 in The suprageneric groups of the Pimplinae (Hymenoptera: Ichneumonidae): a cladistic re-evaluation and evolutionary biological study
Figure 6. Cladogram resulting from primary analysis: section 6 (of 13), the basal Ephialtini. Note the basal position of the Pseudopimpla and Alophosternum genus-groups with respect to the three more derived genus-groups.
Figure 2 in The suprageneric groups of the Pimplinae (Hymenoptera: Ichneumonidae): a cladistic re-evaluation and evolutionary biological study
Figure 2. Cladogram resulting from primary analysis: section 2 (of 13), Delomeristini. Note that each of the three genera, Atractogaster, Delomerista and Perithous is strongly monophyletic.
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.