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FIGURES 17–24. Corinna demersa n in Taxonomic revision of the species group rubripes of Corinna Koch, 1842 (Araneae; Corinnidae)
FIGURES 17–24. Corinna demersa n. sp., male: (17) thricobothria on RTA, retrolateral. Corinna aechmea n. sp., male, tarsus I: (18) thricobothria; (19) thricobothria base; (20) tarsal organ; (21) thricobothria and tarsal organ; (22) thricobotrhial cluster; (23) scopula. Corinna ziriguidum n. sp., male, metatarsus IV: (24) cluster of ventral distal stout setae.
FIGURES 63–66. Corinna caatinga n in Taxonomic revision of the species group rubripes of Corinna Koch, 1842 (Araneae; Corinnidae)
FIGURES 63–66. Corinna caatinga n. sp., male: (63) palp, ventral; (64) same, retrolateral; female: (65) epigynum, ventral; (66) same, dorsal. Scale bar = 0.5 mm. Abbreviations: CD—Copulatory ducts; Cpr—Cymbial projection; SS—Secondary spermathecae; TPC—Tegular process of Corinna.
FIGURES 25–32. Corinna maracas n in Taxonomic revision of the species group rubripes of Corinna Koch, 1842 (Araneae; Corinnidae)
FIGURES 25–32. Corinna maracas n. sp., female: (25) palpal claw. Corinna ziriguidum n. sp., male, tarsus I: (26) claws, dorsal; (27) claws, lateral. Corinna demersa n. sp., female: (28) tarsus I, claw, lateral; (29) abdomen, lateral; (30) abdominal setae, lateral. Corinna aechmea n. sp., male, abdomen (31) lateral setae; (32) feathery setae.
FIGURE 82 in Taxonomic revision of the species group rubripes of Corinna Koch, 1842 (Araneae; Corinnidae)
FIGURE 82. Known distribution of Corinna vesperata n. sp., C. hyalina n. sp. and C. tranquilla n. sp. in Southeastern Brazil.
FIGURE 111 in Taxonomic revision of the species group rubripes of Corinna Koch, 1842 (Araneae; Corinnidae)
FIGURE 111. Known distribution of Corinna kuryi n. sp., C. loiolai n. sp. and C. regii n. sp. in Northeastern and Southeastern Brazil.
FIGURE 9. Poraniopsis A. USNM E51288 P in New taxa and taxonomic revisions to the Poraniidae (Valvatacea; Asteroidea) with Comments on Feeding Biology
FIGURE 9. Poraniopsis A. USNM E51288 P. inflata, Galapagos. Abactinal surface (R=6.3). B. Actinal surface. C. Close up of abactinal surface. Papular pores, reticulate mesh. D. Close up of actinal surface. Furrow and actinal spines. E. P. mira Lectotype, MHNG-INVE-71730. Abactinal. Scale bar=5.0 mm. F. Close up of USNM E 5603, Holotype, P. japonica showing tiny spinelets (sp.) and papular pores (pap.). Scale Bar=0.5 mm.
FIGURE 10. Spoladaster veneris. A in New taxa and taxonomic revisions to the Poraniidae (Valvatacea; Asteroidea) with Comments on Feeding Biology
FIGURE 10. Spoladaster veneris. A. MNHN IE-2006-1234 Abactinal surface. B. Actinal surface of large specimen (R=3.9, St. Paul Island, southern Indian Ocean). C. CASIZ 87573, smaller sized specimens (R=1.6 Off South Africa), showing marginal and actinal plates. D. CASIZ 87573, small sized specimen (R=1.7, off South Africa) showing marginal and actinal plates. Note R for each specimen to reference scale.
FIGURE 8. Poranomorpha hispida A. USNM E7940 in New taxa and taxonomic revisions to the Poraniidae (Valvatacea; Asteroidea) with Comments on Feeding Biology
FIGURE 8. Poranomorpha hispida A. USNM E7940, Newfoundland, Abactinal surface (R=5.5). More pentagonal body form. B. Actinal surface. C. Dorsolateral view showing abactinal and marginal plates. D. Close up of oral and furrow regions. E. USNM E34636, North Carolina. Abactinal surface (R=3.4). More stellate body form. F. Same specimen, closeup of actinal surface around armtip and furrow.
FIGURE 7. Poraniomorpha spp. A. USNM E16102 in New taxa and taxonomic revisions to the Poraniidae (Valvatacea; Asteroidea) with Comments on Feeding Biology
FIGURE 7. Poraniomorpha spp. A. USNM E16102 Poraniomorpha abyssicola, abactinal (R=4.4). B. Actinal surface. C. Actinal close up showing furrow spines, actinal spination. D. USNM E05361 Poraniomorpha tumidus, abactinal surface (R=3.6). E. Actinal surface. F. Close up of papillate spinules on surface of Poraniomorpha abyssicola (USNM E16102). Scale Bar =0.5 cm. G. Close up of spinule distribution on P. tumida (USNM E05361). Scale Bar =0.5 cm.
FIGURE 6. Porania pulvillus USNM E08391 P. pulvillus-Scotland. A. Abactinal surface. B. Actinal surface. C. USNM 5533 P. insignis Paralectotype showing densely arranged abactinal skeleton. D. USNM 6385 P. insignis Paralectotype showing widely arranged reticulate skeleton. E. USNM E46649 P in New taxa and taxonomic revisions to the Poraniidae (Valvatacea; Asteroidea) with Comments on Feeding Biology
FIGURE 6. Porania pulvillus USNM E08391 P. pulvillus-Scotland. A. Abactinal surface. B. Actinal surface. C. USNM 5533 P. insignis Paralectotype showing densely arranged abactinal skeleton. D. USNM 6385 P. insignis Paralectotype showing widely arranged reticulate skeleton. E. USNM E46649 P. pulvillus, Nova Scotia, showing denuded abactinals, superomarginals and inferomarginal series. F. Denuded densely arranged/imbricate abactinal plates.
FIGURE 4. Marginaster pectinatus & size comparisons. A. USNM E30130 in New taxa and taxonomic revisions to the Poraniidae (Valvatacea; Asteroidea) with Comments on Feeding Biology
FIGURE 4. Marginaster pectinatus & size comparisons. A. USNM E30130 Marginaster pectinatus Abactinal surface. (R=0.9). B. M. pectinatus actinal surface. C. USNM Paralectotype 18496, abactinal surface Porania pulvillus. (R= 0.9) D. USNM 1136790 Glabraster antarctica abactinal surface (R=1.2)
FIGURE 2 in New taxa and taxonomic revisions to the Poraniidae (Valvatacea; Asteroidea) with Comments on Feeding Biology
FIGURE 2. Bathyporania ascendens nov. gen, nov. sp. HOLOTYPE. USNM 1215321 A. Abactinal surface (R=2.2). B. Actinal surface and furrow spines. C. Close up of abactinal skeleton. D. Dried arm showing abactinal skeleton and marginal plate series on one arm. E. In situ image showing Bathyporania perched on an antipatharian (Trissopathes?). Bathyporania indicated by white arrow.
FIGURE 5. Glabraster antarctica USNM 1081800 in New taxa and taxonomic revisions to the Poraniidae (Valvatacea; Asteroidea) with Comments on Feeding Biology
FIGURE 5. Glabraster antarctica USNM 1081800 South Georgia Island, Scotia Sea (R=4.6). A. Abactinal surface. B. Actinal surface. C. Dorsolateral showing transverse abactinal plates and marginal plate series. D. USNM 1081968 Dorsolateral showing abactinal spines and marginal plate series (R=4.3). E. USNM 1081798 McDonald Islands. Abactinal surface (R=5.6). F. USNM 1081827 Ross Sea (R=4.1).
FIGURE 1 in New taxa and taxonomic revisions to the Poraniidae (Valvatacea; Asteroidea) with Comments on Feeding Biology
FIGURE 1. Phylogenetic Tree. Tree with the highest log likelihood, based on 579 bp of the 16S rDNA gene, obtained using the Maximum Likelihood method with a heuristic search and the Tamura-Nei model. The percentage bootstrap support values based on 500 replicates are shown next to the branches, when greater than 70%. The scale bar shows the estimated number of substitutions per site.
FIGURE 3 in New taxa and taxonomic revisions to the Poraniidae (Valvatacea; Asteroidea) with Comments on Feeding Biology
FIGURE 3. Clavaporania fitchorum nov. gen, nov. sp. A. Holotype. USNM 1232816. Abactinal surface, (R=4.9) B. Actinal surface. C. Marginal plate series. D. Marginal plates. E. Actinal surface, close up. F. Mace-like abactinal spines and spinelets covering abactinal surface.
FIGURE 15 in Taxonomic revision of the Neotropical genus Pityocera Giglio-Tos, 1896 (Diptera: Tabanidae: Scionini)
FIGURE 15. Pityocera (Pseudelaphella) ecuadorensis sp. nov. ♀ (A, Holotype, B–F Paratypes). A—habitus dorsal view; B—head lateral view; C—left antenna lateral view; D—tergites 9 + 10, cerci and hypoproct dorsal view; E—hypogynium + hypogynial valve; F—genital fork and spermatheca.
FIGURE 14 in Taxonomic revision of the Neotropical genus Pityocera Giglio-Tos, 1896 (Diptera: Tabanidae: Scionini)
FIGURE 14. Pityocera (Pseudelaphella) rhinolissa sp. nov. ♂ (A–F Parátipo). A—head lateral view; B—antenna; C, D—hypandrium, gonostylus, gonocoxite and aedeagus ventral and dorsal views; E, F—epandrium, cerci and hypoproct ventral and dorsal views.
FIGURE 13 in Taxonomic revision of the Neotropical genus Pityocera Giglio-Tos, 1896 (Diptera: Tabanidae: Scionini)
FIGURE 13. Pityocera (Pseudelaphella) rhinolissa sp. nov. ♀ (A–B Holotype, C–H Paratype). A—habitus dorsal view; B—head front-lateral view; C—antenna lateral view; D—habitus lateral view, specimen identified as patellicornis by Fairchild; E—labels, specimen identified as P. patellicornis by Fairchild; F—tergites 9 + 10, cerci and hypoproct dorsal view; G—hypogynium + hypogynial valve; H—genital fork and spermatheca.
FIGURE 16 in Taxonomic revision of the Neotropical genus Pityocera Giglio-Tos, 1896 (Diptera: Tabanidae: Scionini)
FIGURE 16. Pityocera (Pseudelaphella) ecuadorensis sp. nov. ♂ (A–F Paratype). A—head front-lateral view; B—antenna; C, D—hypandrium, gonostylus, gonocoxite and aedeagus ventral and dorsal views; E, F—epandrium, cerci and hypoproct ventral and dorsal views.
FIGURE 11 in Taxonomic revision of the Neotropical genus Pityocera Giglio-Tos, 1896 (Diptera: Tabanidae: Scionini)
FIGURE 11. Pityocera (Pseudelaphella) gorayebi sp. nov. ♀ (A–B Holotype, Paratype C–F). A—habitus dorsal view; B—head front-lateral view; C—antenna lateral view; D—tergites 9 + 10, cerci and hypoproct dorsal view; E—hypogynium + hypogynial valve; F—genital fork and spermatheca.
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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)
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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.