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150 results for “cave adaptation”
Fig. 1 in New evidence for an Anatolian bridge: Colonization of Euromediterranean lands by cave-adapted Plusiocampinae (Diplura, Campodeidae), with establishment of a new genus
Fig. 1. SEM micrographs of Anatoliacampa diclensis Sendra, Tusun & Satar gen. et sp. nov. (a) Cupuliform organ of the apical antennomere. (b) Detail of sensilla of the cupuliform organ. (c) Lateral view of the apical antennomere. (d) Glandular setae on the exterior rim of the cupuliform organ. (e) Detail of apical portion of glandular setae. (f) Detail of medial portion of gouge sensilla.
Fig. 2 in New evidence for an Anatolian bridge: Colonization of Euromediterranean lands by cave-adapted Plusiocampinae (Diplura, Campodeidae), with establishment of a new genus
Fig. 2. SEM micrographs of Anatoliacampa diclensis Sendra, Tusun & Satar gen. et sp. nov. (a) Medial antennomeres. (b) Proximal antennomeres. (c) Distal gouge sensilla on a medial antennomere. (d) Detail of central portion of gouge sensilla. Abbreviation: ft, flagellum of the trichobothria.
Fig. 5 in New evidence for an Anatolian bridge: Colonization of Euromediterranean lands by cave-adapted Plusiocampinae (Diplura, Campodeidae), with establishment of a new genus
Fig. 5. Anatoliacampa diclensis Sendra, Tusun & Satar gen. et sp. nov. (a) Urosternite I of the male, 6- paratype (MZB (MCNB) 2022-5694). (b) Urosternite I of the female, ♀- holotype (DUZM-2121). Abbreviation: a1, glandular a1 setae.
Fig. 9 in New evidence for an Anatolian bridge: Colonization of Euromediterranean lands by cave-adapted Plusiocampinae (Diplura, Campodeidae), with establishment of a new genus
Fig. 9. Maximum likelihood (ML) tree obtained from CO1 sequence data showing significant (>70) bootstrap support values. Anatoliacampa clustered with Plusiocampinae representatives from Turkey and Bulgaria.
Fig. 8 in New evidence for an Anatolian bridge: Colonization of Euromediterranean lands by cave-adapted Plusiocampinae (Diplura, Campodeidae), with establishment of a new genus
Fig. 8. Colonization way of Euromediterranean lands during the end of the Oligocene, 25 m. a. Abbreviations, taxonomic groups: Ces: Cestocampa; Par: Paratachycampa; Pat: Patrizicampa; Sty: Stygiocampa; Cycl: Cycladiacampa irakleiae; Anat: Anatoliacampa diclensis; Red highlights the current distribution of Plusiocampinae in Euromediterranean lands; the red arrow indicates the direction of the Plusiocampinae arrival from East Asia. source map © 2020 Colorado Plateau Geosystems Inc. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)
Fig. 4 in New evidence for an Anatolian bridge: Colonization of Euromediterranean lands by cave-adapted Plusiocampinae (Diplura, Campodeidae), with establishment of a new genus
Fig. 4. SEM micrographs of Anatoliacampa diclensis Sendra, Tusun & Satar gen. et sp. nov., metathoracic leg. (a) Distal portion of the metathoracic leg. (b) Lateral view of pretarsus in upward position. (c) Detail of lateral crest of the pretarsus. (d) Dorsal proximal portion of lateral crest. (e) Lateral view of pretarsus in downward position. (f) Distal portion of the lateral processes of the pretarsus. Abbreviations: dm, dorsal macrosetae; vt, ventral macrosetae.
Fig. 3 in New evidence for an Anatolian bridge: Colonization of Euromediterranean lands by cave-adapted Plusiocampinae (Diplura, Campodeidae), with establishment of a new genus
Fig. 3. Thoracic nota of Anatoliacampa diclensis Sendra, Tusun & Satar gen. et sp. nov., ♀- holotype (DUZM-2121).
FIGURE 13 in Adaptive shifts in Neotropical planthoppers: new troglobitic species and the first surface species of Ferricixius Hoch & Ferreira, 2012 (Hemiptera: Fulgoromorpha Cixiidae) from Brazilian caves
FIGURE 13. Ferricixius davidi Hoch & Ferreira, 2012, Female: Head and thorax in dorsal view (A); pedicel with flagellum and arista (a1); Head and thorax in lateral view (B); ocular region (b1); tegmen in ventral view (C); Thoracal sclerite near base of forewing (D) hind leg, with apical teeth of the hind tibia and tarsomeres (E).
FIGURE 12 in Adaptive shifts in Neotropical planthoppers: new troglobitic species and the first surface species of Ferricixius Hoch & Ferreira, 2012 (Hemiptera: Fulgoromorpha Cixiidae) from Brazilian caves
FIGURE 12. Head in lateral view: Ferricixius urieli sp. nov. (A); Ferricixius michaeli sp. nov. (B); Ferricixius goliathi sp. nov. (C); Ferricixius davidi Hoch & Ferreira, 2012 (D) (male).
FIGURE 11 in Adaptive shifts in Neotropical planthoppers: new troglobitic species and the first surface species of Ferricixius Hoch & Ferreira, 2012 (Hemiptera: Fulgoromorpha Cixiidae) from Brazilian caves
FIGURE 11. Habitat Ferricixius goliathi sp. nov.: ABOB_43 cave, Nova Lima municipality- MG (A–C); Map of ABOB_43 (D); habitus Ferricixius goliathi sp. nov. male (E), female (F).
FIGURE 10 in Adaptive shifts in Neotropical planthoppers: new troglobitic species and the first surface species of Ferricixius Hoch & Ferreira, 2012 (Hemiptera: Fulgoromorpha Cixiidae) from Brazilian caves
FIGURE 10. Ferricixius goliathi sp. nov.: Male genitalia: genital capsule right lateral (A); genital capsule left lateral (B); genital capsule dorsal (C); D aedeagus right lateral (D); E aedeagus in dorsal view (E); aedeagus left lateral (F); G genital capsule ventral (G).
FIGURE 15 in Adaptive shifts in Neotropical planthoppers: new troglobitic species and the first surface species of Ferricixius Hoch & Ferreira, 2012 (Hemiptera: Fulgoromorpha Cixiidae) from Brazilian caves
FIGURE 15. Ferricixius davidi Hoch & Ferreira, 2012, Female genitalia: Female genitalia in lateral view (A); gonocoxa VIII apically (B); segment-X, epiproct and paraproct in dorsocaudal view (C).
FIGURE 6 in Adaptive shifts in Neotropical planthoppers: new troglobitic species and the first surface species of Ferricixius Hoch & Ferreira, 2012 (Hemiptera: Fulgoromorpha Cixiidae) from Brazilian caves
FIGURE 6. Ferricixius michaeli sp. nov.: head (A–C); pedicel with flagellum and arista (C1); tegmen (forewing) (D); hind tibia and tarsomeres (E); hind tarsomeres (F).
FIGURE 17 in Adaptive shifts in Neotropical planthoppers: new troglobitic species and the first surface species of Ferricixius Hoch & Ferreira, 2012 (Hemiptera: Fulgoromorpha Cixiidae) from Brazilian caves
FIGURE 17. Distribution of the genus Ferricixius Hoch & Ferreira, 2012 in Brazil. Red triangle: F. davidi Hoch & Ferreira, 2012. Green diamond, F. goliathi sp. nov. Blue circle, F. michaeli sp. nov. Black circle, F. urieli sp. nov.; Diffuse areas in light blue = karst areas; The shapefile with karst areas and the occurrence of caves in Brazil was obtained from CECAV (https://www. icmbio.gov.br/cecav/projetos-e-atividades/provinciasespeleologicas.html). The limits of Brazil were obtained from ForestGis (https://forest-gis.com/download-gis-base-de-dados/)
FIGURE 5 in Adaptive shifts in Neotropical planthoppers: new troglobitic species and the first surface species of Ferricixius Hoch & Ferreira, 2012 (Hemiptera: Fulgoromorpha Cixiidae) from Brazilian caves
FIGURE 5. Habitat Ferricixius urieli sp. nov.: Casas cave, Limas Duarte municipality- MG (A–C); habitus Ferricixius urieli sp. nov. (D).
FIGURE 4 in Adaptive shifts in Neotropical planthoppers: new troglobitic species and the first surface species of Ferricixius Hoch & Ferreira, 2012 (Hemiptera: Fulgoromorpha Cixiidae) from Brazilian caves
FIGURE 4. Ferricixius urieli sp. nov., male genitalia: Genital capsule right lateral (A); genital capsule left lateral (B); genital capsule dorsal (C); aedeagus right lateral (D); aedeagus in dorsal view (E); aedeagus left lateral (F); genital capsule ventral (G).
FIGURE 7 in Adaptive shifts in Neotropical planthoppers: new troglobitic species and the first surface species of Ferricixius Hoch & Ferreira, 2012 (Hemiptera: Fulgoromorpha Cixiidae) from Brazilian caves
FIGURE 7. Ferricixius michaeli sp. nov.: Male genitalia: Genital capsule right lateral (A); genital capsule left lateral (B); genital capsule dorsal (C); aedeagus right lateral (D); aedeagus in dorsal view (E); aedeagus left lateral (F); genital capsule ventral (G).
FIGURE 3 in Adaptive shifts in Neotropical planthoppers: new troglobitic species and the first surface species of Ferricixius Hoch & Ferreira, 2012 (Hemiptera: Fulgoromorpha Cixiidae) from Brazilian caves
FIGURE 3. Ferricixius urieli sp. nov.: head (A–C), pedicel with flagellum (C1); tegmen (forewing) (D); hind tibia and tarsomeres (E); hind tarsomeres (F).
FIGURE 2 in Adaptive shifts in Neotropical planthoppers: new troglobitic species and the first surface species of Ferricixius Hoch & Ferreira, 2012 (Hemiptera: Fulgoromorpha Cixiidae) from Brazilian caves
FIGURE 2. Tegmina: Ferricixius urieli sp. nov. (A); Ferricixius michaeli sp. nov. (B); Ferricixius goliathi sp. nov. (C).
FIGURE 9 in Adaptive shifts in Neotropical planthoppers: new troglobitic species and the first surface species of Ferricixius Hoch & Ferreira, 2012 (Hemiptera: Fulgoromorpha Cixiidae) from Brazilian caves
FIGURE 9. Ferricixius goliathi sp. nov.: Head A–C; pedicel with flagellum and arista (C1); tegmina (forewings) (D); E hind tibia and tarsomeres (E); hind tarsomeres (F).
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.