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.
1,054
datasets available to search
ShareScore release 0.7.1
Dataset results
1,054 results for “Auchenorrhyncha”
Figure 5 from: Kuznetsova V, Aguin-Pombo D (2015) Comparative cytogenetics of Auchenorrhyncha (Hemiptera, Homoptera): a review. In: Lukhtanov VA, Kuznetsova VG, Grozeva S, Golub NV (Eds) Genetic and cytogenetic structure of biological diversity in insects. ZooKeys 538: 63-93. https://doi.org/10.3897/zookeys.538.6724
Figure 5 - Histogram showing the distribution of female diploid chromosome numbers in Cercopoidea at species and generic levels, based on analysis of 50 species and 23 genera of the families Cercopidae, Aphrophoridae, Machaerotidae, and Clastopteridae.
Figure 1 from: Kuznetsova V, Aguin-Pombo D (2015) Comparative cytogenetics of Auchenorrhyncha (Hemiptera, Homoptera): a review. In: Lukhtanov VA, Kuznetsova VG, Grozeva S, Golub NV (Eds) Genetic and cytogenetic structure of biological diversity in insects. ZooKeys 538: 63-93. https://doi.org/10.3897/zookeys.538.6724
Figure 1 - Histogram showing the distribution of female diploid chromosome numbers in Fulgoroidea at species and generic levels, based on analysis of 308 species and 148 genera of the families Tettigometridae, Delphacidae, Cixiidae, Kinnaridae, Meenoplidae, Derbidae, Achilidae, Achilixiidae, Dictyopharidae, Fulgoridae, Issidae, Caliscelidae, Acanaloniidae, Nogodinidae, Ricaniidae, Flatidae, Hypochthonellidae, Lophopidae, Eurybrachyidae, and Gengidae.
Figure 3 from: Kuznetsova V, Aguin-Pombo D (2015) Comparative cytogenetics of Auchenorrhyncha (Hemiptera, Homoptera): a review. In: Lukhtanov VA, Kuznetsova VG, Grozeva S, Golub NV (Eds) Genetic and cytogenetic structure of biological diversity in insects. ZooKeys 538: 63-93. https://doi.org/10.3897/zookeys.538.6724
Figure 3 - Histogram showing the distribution of female diploid chromosome numbers in Cicadellidae at species and generic levels, based on analysis of 387 species and 263 genera.
Figure 6 from: Kuznetsova V, Aguin-Pombo D (2015) Comparative cytogenetics of Auchenorrhyncha (Hemiptera, Homoptera): a review. In: Lukhtanov VA, Kuznetsova VG, Grozeva S, Golub NV (Eds) Genetic and cytogenetic structure of biological diversity in insects. ZooKeys 538: 63-93. https://doi.org/10.3897/zookeys.538.6724
Figure 6 - Histogram showing the distribution of female diploid chromosome numbers in Cicadoidea at species and generic levels, based on analysis of 10 species and 9 genera of the family Cicadidae.
Figure 8 from: Kuznetsova V, Aguin-Pombo D (2015) Comparative cytogenetics of Auchenorrhyncha (Hemiptera, Homoptera): a review. In: Lukhtanov VA, Kuznetsova VG, Grozeva S, Golub NV (Eds) Genetic and cytogenetic structure of biological diversity in insects. ZooKeys 538: 63-93. https://doi.org/10.3897/zookeys.538.6724
Figure 8 - Histograms showing the distribution of female diploid chromosome numbers in Cicadomorpha (a, b white columns) and Fulgoromorpha (a, b black columns) at species (a) and generic (b) levels, based on analysis of 819 species and 483 genera.
Figure 4 from: Kuznetsova V, Aguin-Pombo D (2015) Comparative cytogenetics of Auchenorrhyncha (Hemiptera, Homoptera): a review. In: Lukhtanov VA, Kuznetsova VG, Grozeva S, Golub NV (Eds) Genetic and cytogenetic structure of biological diversity in insects. ZooKeys 538: 63-93. https://doi.org/10.3897/zookeys.538.6724
Figure 4 - Histogram showing the distribution of female diploid chromosome numbers in Membracidae at species and generic levels, based on analysis of 52 species and 29 genera.
Figure 2 from: Kuznetsova V, Aguin-Pombo D (2015) Comparative cytogenetics of Auchenorrhyncha (Hemiptera, Homoptera): a review. In: Lukhtanov VA, Kuznetsova VG, Grozeva S, Golub NV (Eds) Genetic and cytogenetic structure of biological diversity in insects. ZooKeys 538: 63-93. https://doi.org/10.3897/zookeys.538.6724
Figure 2 - Histogram showing the distribution of female diploid chromosome numbers in Membracoidea at species and generic levels, based on analysis of 450 species and 302 genera of the families Cicadellidae, Membracidae, Ulopidae, Ledridae, and Aetalionidae.
Figures 31-36 from: Guglielmino A, D'Urso V, Bückle C (2016) Revision of the Dicranotropis hamata group (Auchenorrhyncha, Delphacidae) and remarks on the implication of chiral dimorphism in its history. Deutsche Entomologische Zeitschrift 63(1): 89-108. https://doi.org/10.3897/dez.63.6625
Figures 31-36 - Trichrysis imperiosa (Smith), China: Guangdong (female). 31. Habitus, dorsal view; 32. Habitus, lateral view; 33. Head, pronotum, dorsal view; 34. Head, frontal view; 35. Metasoma, dorsal view; 36. Apex of T3, dorsal view.
Figures 76-81 from: Guglielmino A, D'Urso V, Bückle C (2016) Revision of the Dicranotropis hamata group (Auchenorrhyncha, Delphacidae) and remarks on the implication of chiral dimorphism in its history. Deutsche Entomologische Zeitschrift 63(1): 89-108. https://doi.org/10.3897/dez.63.6625
Figures 76-81 - Trichrysis tridensnotata sp. n., holotype (female). 76. Habitus, lateral view; 77. Head, frontal view; 78. Mesosoma, dorsal view; 79. Mesosoma, lateral view; 80. Metasoma, dorsal view; 81. T3, dorsal view.
Figures 61-66 from: Guglielmino A, D'Urso V, Bückle C (2016) Revision of the Dicranotropis hamata group (Auchenorrhyncha, Delphacidae) and remarks on the implication of chiral dimorphism in its history. Deutsche Entomologische Zeitschrift 63(1): 89-108. https://doi.org/10.3897/dez.63.6625
Figures 61-66 - Trichrysis tonkinensis (Mocsáry), holotype (female). 61. Head and mesosoma, dorsal view; 62. Head, frontal view; 63. Head and mesosoma, lateral view; 64. Metasoma, dorsal view; 65. T2 and T3, dorsal view; 66. Metasoma, ventral view.
Figures 1-6 from: Guglielmino A, D'Urso V, Bückle C (2016) Revision of the Dicranotropis hamata group (Auchenorrhyncha, Delphacidae) and remarks on the implication of chiral dimorphism in its history. Deutsche Entomologische Zeitschrift 63(1): 89-108. https://doi.org/10.3897/dez.63.6625
Figures 1-6 - Trichrysis coeruleamaculata sp. n., holotype (female). 1. Habitus, lateral view; 2. Head, frontal view; 3. Mesosoma, dorsal view; 4. Metasoma, dorsal view; 5. Apex of T3, dorsal view; 6. S2, ventral view.
Figures 49-54 from: Guglielmino A, D'Urso V, Bückle C (2016) Revision of the Dicranotropis hamata group (Auchenorrhyncha, Delphacidae) and remarks on the implication of chiral dimorphism in its history. Deutsche Entomologische Zeitschrift 63(1): 89-108. https://doi.org/10.3897/dez.63.6625
Figures 49-54 - Trichrysis pellucida (du Buysson), China: Liaoning (female). 49. Habitus, lateral view; 50. Head, frontal view; 51. Mesosoma, dorsal view; 52. Pronotum and mesopleuron, lateral view; 53. Metasoma, dorsal view; 54. Apex of T3, dorsal view.
Figures 25-30 from: Guglielmino A, D'Urso V, Bückle C (2016) Revision of the Dicranotropis hamata group (Auchenorrhyncha, Delphacidae) and remarks on the implication of chiral dimorphism in its history. Deutsche Entomologische Zeitschrift 63(1): 89-108. https://doi.org/10.3897/dez.63.6625
Figures 25-30 - Trichrysis sauteri (Mocsáry), holotype (male). 25. Habitus, lateral view; 26. Head, frontal view; 27. Head and mesosoma, dorsal view; 28. Metasoma, dorsal view; 29. T2 and T3, dorsal view; 30. Metasoma, ventral view.
Figures 13-18 from: Guglielmino A, D'Urso V, Bückle C (2016) Revision of the Dicranotropis hamata group (Auchenorrhyncha, Delphacidae) and remarks on the implication of chiral dimorphism in its history. Deutsche Entomologische Zeitschrift 63(1): 89-108. https://doi.org/10.3897/dez.63.6625
Figures 13-18 - Trichrysis cyanea (Linnaeus), China: Liaoning (male). 13. Habitus, lateral view; 14. Head, frontal view; 15. Mesosoma, dorsal view; 16. Mesosoma, lateral view; 17. Metasoma, dorsal view; 18. T3, dorsal view.
Figures 19-24 from: Guglielmino A, D'Urso V, Bückle C (2016) Revision of the Dicranotropis hamata group (Auchenorrhyncha, Delphacidae) and remarks on the implication of chiral dimorphism in its history. Deutsche Entomologische Zeitschrift 63(1): 89-108. https://doi.org/10.3897/dez.63.6625
Figures 19-24 - Trichrysis formosana (Mocsáry), lectotype (female). 19. Habitus, lateral view; 20. Head, frontal view; 21. Mesosoma, dorsal view; 22. Metasoma, dorsal view 23. T2 and T3, dorsal view; 24. Mesosoma, lateral view.
Figures 73-75 from: Guglielmino A, D'Urso V, Bückle C (2016) Revision of the Dicranotropis hamata group (Auchenorrhyncha, Delphacidae) and remarks on the implication of chiral dimorphism in its history. Deutsche Entomologische Zeitschrift 63(1): 89-108. https://doi.org/10.3897/dez.63.6625
Figures 73-75 - Trichrysis triacantha (Mocsáry), variations of apex of T3 in females collected at Qingyuan, Guangdong.
Figures 55-60 from: Guglielmino A, D'Urso V, Bückle C (2016) Revision of the Dicranotropis hamata group (Auchenorrhyncha, Delphacidae) and remarks on the implication of chiral dimorphism in its history. Deutsche Entomologische Zeitschrift 63(1): 89-108. https://doi.org/10.3897/dez.63.6625
Figures 55-60 - Trichrysis secernenda (Mocsáry), holotype (female). 55. Head and mesosoma, dorsal view; 56. Head, frontal view; 57. Head and mesosoma, lateral view; 58. Metasoma, lateral view; 59. Metasoma, dorsal view; 60. Metasoma, ventral view.
Figures 43-48 from: Guglielmino A, D'Urso V, Bückle C (2016) Revision of the Dicranotropis hamata group (Auchenorrhyncha, Delphacidae) and remarks on the implication of chiral dimorphism in its history. Deutsche Entomologische Zeitschrift 63(1): 89-108. https://doi.org/10.3897/dez.63.6625
Figures 43-48 - Trichrysis luzonica (Mocsáry), Philippines: Los Baños (female). 43. Habitus, lateral view; 44. Head, frontal view; 45. Head and mesosoma, dorsal view; 46. Metasoma, dorsal view; 47. T2 and T3, dorsal view 48. Metasoma, ventral view.
Figures 67-72 from: Guglielmino A, D'Urso V, Bückle C (2016) Revision of the Dicranotropis hamata group (Auchenorrhyncha, Delphacidae) and remarks on the implication of chiral dimorphism in its history. Deutsche Entomologische Zeitschrift 63(1): 89-108. https://doi.org/10.3897/dez.63.6625
Figures 67-72 - Trichrysis triacantha (Mocsáry), syntype (female). 67. Habitus, lateral view; 68. Head, frontal view; 69. Head and mesosoma, dorsal view; 70. Metasoma, dorsal view; 71. T3, dorsal view; 72. Metasoma, ventral view. (Photos courtesy of Dr. Dominique Zimmermann).
Figures 37-42 from: Guglielmino A, D'Urso V, Bückle C (2016) Revision of the Dicranotropis hamata group (Auchenorrhyncha, Delphacidae) and remarks on the implication of chiral dimorphism in its history. Deutsche Entomologische Zeitschrift 63(1): 89-108. https://doi.org/10.3897/dez.63.6625
Figures 37-42 - Trichrysis lusca (Fabricius), China: Guangdong (female). 37. Habitus, dorsal view; 38. Habitus, lateral view; 39. Head, pronotum, dorsal view; 40. Head, frontal view; 41. Metasoma, dorsal view; 42. Apex of T3, dorsal view.
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.