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FIGURE 28. Anaphidna species. A. A. bezverkhovi. B. A. svetlanae. C–D. A. hernandezi. E. A. osae osae. F. A. tarsalis. G. A. fasciata H. A. bezverkhovi. I. A. verrucosa. J. A. polestshuki. A–B in The tribe Dysoniini part VI: Phylogeny, biogeography and evolutionary trends of the lichen katydid genera (Orthoptera: Tettigoniidae: Phaneropterinae). Eleventh contribution to the suprageneric organization of Neotropical phaneropterines

FIGURE 28. Anaphidna species. A. A. bezverkhovi. B. A. svetlanae. C–D. A. hernandezi. E. A. osae osae. F. A. tarsalis. G. A. fasciata H. A. bezverkhovi. I. A. verrucosa. J. A. polestshuki. A–B. Pronotum in lateral view. C. Habitus in lateral view. D–J. Denticles of upper rostral crest from side.

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FIGURE 25. Dissonulichospinus n. subgen. species. A–C. D in The tribe Dysoniini part VI: Phylogeny, biogeography and evolutionary trends of the lichen katydid genera (Orthoptera: Tettigoniidae: Phaneropterinae). Eleventh contribution to the suprageneric organization of Neotropical phaneropterines

FIGURE 25. Dissonulichospinus n. subgen. species. A–C. D. (D) ornatus n. comb. D–E. D. (D) difussa n. comb. F–G. D. (D) elegans. A. Male habitus in lateral view. B, D, F. Cerci. C, E, G. Subgenital plates (Figs. B, C, F, G. after Costa-Lima & Guitton, 1960).

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FIGURE 29. Anaphidna species. A. A. peruana. B. A. svetlanae. C–D. A. rubricorpus. E. A. lankesteri. F. A. rhinoceros. G. A. mexicana. H. A. obrieni. I. A. gracielae. J. A. silvai. K. A. quirozi. A–D, F–I in The tribe Dysoniini part VI: Phylogeny, biogeography and evolutionary trends of the lichen katydid genera (Orthoptera: Tettigoniidae: Phaneropterinae). Eleventh contribution to the suprageneric organization of Neotropical phaneropterines

FIGURE 29. Anaphidna species. A. A. peruana. B. A. svetlanae. C–D. A. rubricorpus. E. A. lankesteri. F. A. rhinoceros. G. A. mexicana. H. A. obrieni. I. A. gracielae. J. A. silvai. K. A. quirozi. A–D, F–I. Denticles of upper rostral crest from side.C. Habitus in lateral view. E, J, K. Head and pronotum in lateral view.

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FIGURE 33. Dysonia species. A–C. D. holgeri. D–E. D. zikani. F–G. D. pardalis. H–I. D. monticola. J–K. D. melaleuca. L–M. D. alipes. A in The tribe Dysoniini part VI: Phylogeny, biogeography and evolutionary trends of the lichen katydid genera (Orthoptera: Tettigoniidae: Phaneropterinae). Eleventh contribution to the suprageneric organization of Neotropical phaneropterines

FIGURE 33. Dysonia species. A–C. D. holgeri. D–E. D. zikani. F–G. D. pardalis. H–I. D. monticola. J–K. D. melaleuca. L–M. D. alipes. A. Habitus in lateral view. B, D, F, H, J, L. Subgenital plates. C, E, G, I, K, M. Cerci. (Figs. D–E., H–J. after Costa-Lima & Guitton, 1960).

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FIGURE 41 in The tribe Dysoniini part VI: Phylogeny, biogeography and evolutionary trends of the lichen katydid genera (Orthoptera: Tettigoniidae: Phaneropterinae). Eleventh contribution to the suprageneric organization of Neotropical phaneropterines

FIGURE 41. Adapted tree in which the optimizations and their frequencies in the different groups are indicated. Green box indicates the frequency of characters 71:1, 75:1 and 76. The blue box indicates the frequency of the 71:2 and 74:1 characters. The orange box indicates an adaptive novelty 71:3. The yellow box indicates an adaptive novelty 73:1.

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FIGURE 23. Yungasacris species. A, G–H. Y in The tribe Dysoniini part VI: Phylogeny, biogeography and evolutionary trends of the lichen katydid genera (Orthoptera: Tettigoniidae: Phaneropterinae). Eleventh contribution to the suprageneric organization of Neotropical phaneropterines

FIGURE 23. Yungasacris species. A, G–H. Y. multa. Male habitus, cerci in dorsal and lateral view respectively. B–C. Y. grata grata cerci in dorsal and lateral view. D. Y. grata rara cerci in lateral view. E–F. Y. peruviana cerci in dorsal and lateral view respectively. (Figs. B–F. after Rehn, 1950, Figs. D, G–H. after Cadena-Castañeda & Gorochov, 2013).

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FIGURE 36. Lichenodentix dentatithorax. A–B in The tribe Dysoniini part VI: Phylogeny, biogeography and evolutionary trends of the lichen katydid genera (Orthoptera: Tettigoniidae: Phaneropterinae). Eleventh contribution to the suprageneric organization of Neotropical phaneropterines

FIGURE 36. Lichenodentix dentatithorax. A–B. Habitus in lateral and dorsal view. C–D. Head and pronotum in lateral and dorsal view. E. Cercus. F. Subgenital plate. (Photos A and B F. Domenico. Figs E–F after Costa-Lima & Guitton, 1961).

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FIGURE 18 in The tribe Dysoniini part VI: Phylogeny, biogeography and evolutionary trends of the lichen katydid genera (Orthoptera: Tettigoniidae: Phaneropterinae). Eleventh contribution to the suprageneric organization of Neotropical phaneropterines

FIGURE 18. Apolinaria hygracantha (Karsch, 1896). A. Male holotype in lateral view. B–C. Head and pronotum in lateral and dorsal view. D. Ovipositor in lateral view. E–F. Male cerci in lateral and latero-dorsal view (after Rehn, 1950).

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FIGURE 15 in The tribe Dysoniini part VI: Phylogeny, biogeography and evolutionary trends of the lichen katydid genera (Orthoptera: Tettigoniidae: Phaneropterinae). Eleventh contribution to the suprageneric organization of Neotropical phaneropterines

FIGURE 15. Hammatofera nodicornis (Burmeister, 1838) male. A. Habitus in lateral view. B. Frons. C and D. Head and thorax in dorsal and lateral view respectively. E. Terminalia in ventral view. F. Terminalia in dorsal view (draw from H. brasiliensis n. syn., by Piza 1980).

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FIGURE 16. Machima species. A–C. M in The tribe Dysoniini part VI: Phylogeny, biogeography and evolutionary trends of the lichen katydid genera (Orthoptera: Tettigoniidae: Phaneropterinae). Eleventh contribution to the suprageneric organization of Neotropical phaneropterines

FIGURE 16. Machima species. A–C. M. itatiaia Antunes & Takiya, 2020. A. Male habitus in lateral view. B. Cerci in dorsal and, C. lateral view respectively. F. Ovipositor. D–J. Cerci in dorsal and lateral view: D–F. M. phyllacantha. G–H. M. scalprum. I–J. M. paranensis. (Figs. G–J. after Rehn, 1950).

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FIGURE 35. Lichenomorphus species. Cerci and subgenital plates. A, D, E. L. nigrosignatus. B–C. L. pirani. F–G. L. ypsilon. H–I. L. paulistanus. J–K. L in The tribe Dysoniini part VI: Phylogeny, biogeography and evolutionary trends of the lichen katydid genera (Orthoptera: Tettigoniidae: Phaneropterinae). Eleventh contribution to the suprageneric organization of Neotropical phaneropterines

FIGURE 35. Lichenomorphus species. Cerci and subgenital plates. A, D, E. L. nigrosignatus. B–C. L. pirani. F–G. L. ypsilon. H–I. L. paulistanus. J–K. L. carlosmendesi. (Photo A D. Mendes. Figs. F–K after Costa-Lima & Guitton, 1961).

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FIGURE 9 in The tribe Dysoniini part VI: Phylogeny, biogeography and evolutionary trends of the lichen katydid genera (Orthoptera: Tettigoniidae: Phaneropterinae). Eleventh contribution to the suprageneric organization of Neotropical phaneropterines

FIGURE 9. Consensus tree with Bremer (Br) is indicated in each branch's upper part. Bootstrap value is indicated in the lower part of each branch.

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FIGURE 8 in The tribe Dysoniini part VI: Phylogeny, biogeography and evolutionary trends of the lichen katydid genera (Orthoptera: Tettigoniidae: Phaneropterinae). Eleventh contribution to the suprageneric organization of Neotropical phaneropterines

FIGURE 8. Most parsimonious tree of tribe Dysoniini. 145 steps long (CI, 0.869; RI, 0,946). Black circles indicate the synapomorphies, and white ones are the homoplasies.

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FIGURE 43. Live individuals. A. Lichenodraculus matti. B. Markia arizae. C. M. major. D. M. hystrix. E. Apolinaria hygracantha. F. Paraphidnia brevicristata G in The tribe Dysoniini part VI: Phylogeny, biogeography and evolutionary trends of the lichen katydid genera (Orthoptera: Tettigoniidae: Phaneropterinae). Eleventh contribution to the suprageneric organization of Neotropical phaneropterines

FIGURE 43. Live individuals. A. Lichenodraculus matti. B. Markia arizae. C. M. major. D. M. hystrix. E. Apolinaria hygracantha. F. Paraphidnia brevicristata G. Anaphidna rubricorpus. (Photos: A. L. Salagaje. B. A. Kay. C. J. Monzón. E. F. Arango. F. A. Anker. G. J. Cardona).

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FIGURE 20 in The tribe Dysoniini part VI: Phylogeny, biogeography and evolutionary trends of the lichen katydid genera (Orthoptera: Tettigoniidae: Phaneropterinae). Eleventh contribution to the suprageneric organization of Neotropical phaneropterines

FIGURE 20. Markia species (Sarriai and Hystrix groups). A–D. M. sarriai. E–G. M. major. H–J. M. espinachi. K–N. M. nicolasi. O–Q. M. hystrix. A, K. Male habitus in lateral view. B, E, H, L, O. Head and pronotum in lateral view. C, F, I, M, P. Subgenital plates. D, G, J, K, Q. Cerci.

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FIGURE 32 in The tribe Dysoniini part VI: Phylogeny, biogeography and evolutionary trends of the lichen katydid genera (Orthoptera: Tettigoniidae: Phaneropterinae). Eleventh contribution to the suprageneric organization of Neotropical phaneropterines

FIGURE 32. Anaphidna species. Cerci in lateral view, subgenital plate and ovipositor. A. A. hernandezi female in lateral view. B–C. A. gracielae. D–E. A. silvai. F–G. A. quirozi. H. A. lankesteri.I. A. hernandezi. J. A. osae osae. K. A. verrucosa.

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FIGURE 22. Quiva species. A–D. Q in The tribe Dysoniini part VI: Phylogeny, biogeography and evolutionary trends of the lichen katydid genera (Orthoptera: Tettigoniidae: Phaneropterinae). Eleventh contribution to the suprageneric organization of Neotropical phaneropterines

FIGURE 22. Quiva species. A–D. Q. (P.) angieae. E–H. Q. (Q.) pulchella. I–K. Q. (Q.) diaphana. L–N. Q. (Q.) buhrnheimi. O–Q. Q. (Q.) sharovi. R–T. Q. (Q.) abacata. U–W. Q. (Q.) gutjahrae. A, E. Male habitus in lateral view. B, F, I, L, O, R, U. Frons. C, G, J, M, P, S, V. Subgenital plates. D, H, K, N, Q, T, W. Cerci.

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FIGURE 19. Lichenodraculus species. A–C. L. matti and D–F. L. holgeri. A, D in The tribe Dysoniini part VI: Phylogeny, biogeography and evolutionary trends of the lichen katydid genera (Orthoptera: Tettigoniidae: Phaneropterinae). Eleventh contribution to the suprageneric organization of Neotropical phaneropterines

FIGURE 19. Lichenodraculus species. A–C. L. matti and D–F. L. holgeri. A, D. Male holotype in lateral view. B, E. Head and pronotum. C, F. Cerci in dorsal view.

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FIGURE 21 in The tribe Dysoniini part VI: Phylogeny, biogeography and evolutionary trends of the lichen katydid genera (Orthoptera: Tettigoniidae: Phaneropterinae). Eleventh contribution to the suprageneric organization of Neotropical phaneropterines

FIGURE 21. Markia species (Erinaceus group). A–D. M. arizae. E–G. M. erinaceus. H–J. M. gaianii. K–L. M. agudeloi. M–O. M. guerreroi. P–R. M. bolivarensis. A. Male habitus in lateral view. B, E, H, K, M, P. Head and pronotum in lateral view. C, F, I, N, Q. Subgenital plates. D, G, J, L, O, R. Cerci.

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FIGURE 45 in The tribe Dysoniini part VI: Phylogeny, biogeography and evolutionary trends of the lichen katydid genera (Orthoptera: Tettigoniidae: Phaneropterinae). Eleventh contribution to the suprageneric organization of Neotropical phaneropterines

FIGURE 45. Biogeographic areas used in DIVA analysis, defined by Chaves et al. (2013) and modified from Upham & Patterson (2012) and Condamine et al. (2012): A. Middle America, B. West Andes-Chocó, C. Andes, D. Amazonia, E. Chaco, F. Brazilian Shield, G. Guiana Shield. B. Taxon area cladogram showing the results of DIVA. Numbers indicate nodes and letters indicate resulting ancestral distribution at each node. The red border of the nodes indicates vicariance events.

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Allen Brain Atlas

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neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

Annotated Behaviour and Observability Dataset (ABODe)

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Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

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behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record