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Fig. 18. A in Aglaopheniid hydroids (Cnidaria: Hydrozoa: Aglaopheniidae) from off New Caledonia collected during KANACONO and KANADEEP expeditions of the French Tropical Deep-Sea Benthos Program

Fig. 18. A. Macrorhynchia phoenicea (Busk, 1852), hydrotheca from sample MNHN-IK-2015-510. — B–D. Macrorhynchia disjuncta (Pictet, 1893), portion of stem (B), hydrotheca (C) and phylactocarp with gonotheca (D) from sample MNHN-IK-2015-513. Scale bars: A–C = 200 µm; D = 500 µm.

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Fig. 14 in Aglaopheniid hydroids (Cnidaria: Hydrozoa: Aglaopheniidae) from off New Caledonia collected during KANACONO and KANADEEP expeditions of the French Tropical Deep-Sea Benthos Program

Fig. 14. Lytocarpia pilosa sp. nov., from sample MNHN-IK-2015-524. A–C. Portion of stem seen frontally (A) and basally (B), and detached pseudophylactocarp (C). D. Hydrotheca. E. Costa of corbula. Scale bars: A–C, E = 500 µm; D = 200 µm.

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Fig. 15 in Aglaopheniid hydroids (Cnidaria: Hydrozoa: Aglaopheniidae) from off New Caledonia collected during KANACONO and KANADEEP expeditions of the French Tropical Deep-Sea Benthos Program

Fig. 15. Lytocarpia pseudoctenata sp. nov. A. Portion of stem. B–D. Hydrotheca (B) and details of its basal (C) and distal (D) parts, all seen laterally. E–F. Portion of the rachis of corbula, and costa with gonotheca (F). From samples MNHN-IK-2015-527 (C–D) and MNHN-IK-2015-528 (A–B, E–F). Scale bars: A, F = 500 µm; B–E = 200 µm.

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Fig. 12. A–C in Aglaopheniid hydroids (Cnidaria: Hydrozoa: Aglaopheniidae) from off New Caledonia collected during KANACONO and KANADEEP expeditions of the French Tropical Deep-Sea Benthos Program

Fig. 12. A–C. Lytocarpia fragilis sp. nov, fertile colony (A) and details of a corbula (B–C), all from sample MNHN-IK-2015-523 (holotype). — D–F. Lytocarpia pilosa sp. nov., fertile colony (D), portion of stem, showing proximal parts of pseudophylactocarps (E), and corbula (F), all from sample MNHN-IK-2015-524 (holotype). — G–H. Lytocarpia pseudoctenata sp. nov., fertile colony (G) and corbula (H), all from sample MNHN-IK-2015-527 (holotype). Scale bars: A, D = 1 cm; B, H = 1 mm; C, E = 500 µm; F = 2 mm; G = 2 cm.

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Fig. 10 in Aglaopheniid hydroids (Cnidaria: Hydrozoa: Aglaopheniidae) from off New Caledonia collected during KANACONO and KANADEEP expeditions of the French Tropical Deep-Sea Benthos Program

Fig. 10. Gymnangium expansum (Jäderholm, 1903). A. Diagrammatic illustration of the mode of branching of the stem: main (m. t.) and accessory (a. t.) tubes, primary (p. b.) and secondary (s. b.) branches with cladia. B–C. Stem internode with gonotheca (B) and detail (C), showing the nematotheca associated to the hydrocladial apophysis. Hydrothecae in lateral (D–E) and frontal (F) views, and detail of their base (G). H–K. Nematothecae: mesial with bifid (H) and quintuple (I) aperture; lateral with simple (J) and bifid (K) apertures. From samples MNHN-IK-2015-515 (B, C, E, G, H, J) and MNHN-IK-2015-516 (D, F, I, K). Scale bars: B, D–F = 200 µm; C, G–K = 100 µm.

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Fig. 11. A in Aglaopheniid hydroids (Cnidaria: Hydrozoa: Aglaopheniidae) from off New Caledonia collected during KANACONO and KANADEEP expeditions of the French Tropical Deep-Sea Benthos Program

Fig. 11. A. Lytocarpia brevirostris (Busk, 1852), hydrotheca from sample MNHN-IK-2015-514. — B–K. Lytocarpia fragilis sp. nov., from sample MNHN-IK-2015-523. A–B. Portions of stems in frontal (B) and dorsal (C) aspects. D–G. Hydrotheca seen laterally (D) and frontally (E), and details of its basal (F) and distal (G) parts, both in lateral view. H–I. Distal part of mesial nematotheca seen frontally (H) and apically (I). J–K. Two corbulacostae. Scale bars: B = 500 µm; A, D–E, J–K = 200 µm; C, F–I = 100 µm.

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Fig. 9 in Aglaopheniid hydroids (Cnidaria: Hydrozoa: Aglaopheniidae) from off New Caledonia collected during KANACONO and KANADEEP expeditions of the French Tropical Deep-Sea Benthos Program

Fig. 9. Cladocarpus pennatus sp. nov. (continued). A–E. Hydrothecae from different colonies seen in lateral view (A–D), to show variation in abaxial curvature, and proximalmost part of a hydrocladium seen frontally (E). F–G. Details of the basal (F) and distal (G) parts of a hydrotheca seen laterally. From samples MNHN-IK-2015-531 (C), MNHN-IK-2015-532 (A, E–G), MNHN-IK-2015-536 (D) and MNHN-IK-2015-539 (B). Scale bars: A–E = 200 µm; F–G = 100 µm.

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Fig. 16. A in Aglaopheniid hydroids (Cnidaria: Hydrozoa: Aglaopheniidae) from off New Caledonia collected during KANACONO and KANADEEP expeditions of the French Tropical Deep-Sea Benthos Program

Fig. 16. A. Lytocarpia cf. spiralis (Totton, 1930), colony from sample MNHN-IK-2015-546. — B. Lytocarpia subtilis sp. nov., colony and corbula (insert) from sample MNHN-IK-2015-525 (holotype). — C–D. Macrorhynchia phoenicea (Busk, 1852) (C), from sample MNHN-IK-2015-512, compared to M. disjuncta (Pictet, 1893) (D), from sample MNHN-IK-2015-513. — E–G. Macrorhynchia spiralis sp. nov., colonies from samples MNHN-IK-2015-519 (E, holotype) and MNHN-IK-2015-520 (F, one paratype), and medusoid gonophore (G) from former sample. Scale bars: A = 3 cm; B–F = 1 cm; B (insert) = 1 mm; G = 100 µm.

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Fig. 8 in Aglaopheniid hydroids (Cnidaria: Hydrozoa: Aglaopheniidae) from off New Caledonia collected during KANACONO and KANADEEP expeditions of the French Tropical Deep-Sea Benthos Program

Fig. 8. Cladocarpus pennatus sp. nov. (part). Portion of stem showing insertions of successive cladia (A) and details of apophysis with its associated nematothecae (B–C). Proximal portions of fertile cladia in frontal (D, with phylactocarp) and dorsal (E, phylactocarp on first cormidium not shown) aspects. Phylactocarp (F). Male (G) and female (H) gonothecae. Hydrotheca seen apically (I). From samples MNHN-IK-2015-532 (A–C), MNHN-IK-2015-533 (E, I), MNHN-IK-2015-537 (G) and MNHN-IK-2015-540 (D, F, H). Scale bars: G = 100 µm; A–F, H, I = 200 µm.

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Fig. 7 in Aglaopheniid hydroids (Cnidaria: Hydrozoa: Aglaopheniidae) from off New Caledonia collected during KANACONO and KANADEEP expeditions of the French Tropical Deep-Sea Benthos Program

Fig. 7. Cladocarpus partitus sp. nov., from sample MNHN-IK-2015-529. Portions from proximal (A, seen frontally; B, seen laterally) and distal (C, with insertion of phylactocarp) parts of stem. Hydrotheca seen laterally (D) and frontally (E), and details of its basal (F) and distal (G) parts; mesial nematotheca (H) seen frontally (left) and apically (right); internal septa in an apical view of the hydrotheca (I). Distal end of phylactocarp with two gonothecae (J). Scale bars: A–C = 500 µm; D–G, J = 200 µm; H, I = 100 µm.

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Fig. 2. Aglaophenia howensis Briggs, 1918 in Aglaopheniid hydroids (Cnidaria: Hydrozoa: Aglaopheniidae) from off New Caledonia collected during KANACONO and KANADEEP expeditions of the French Tropical Deep-Sea Benthos Program

Fig. 2. Aglaophenia howensis Briggs, 1918, from sample MNHN-IK-2015-544. A–B. Portion of a stem in frontal aspect (A) and of another stem in dorsal aspect (B). C–F. Two hydrothecae from one colony in lateral (C, F), frontal (D) and apical (E) views. G–I. A hydrotheca from another colony in lateral (G), frontal (H) and apical (I) aspects. Scale bars: A–H = 200 µm.

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Fig. 1. A–B. Aglaophenia howensis Briggs, 1918 in Aglaopheniid hydroids (Cnidaria: Hydrozoa: Aglaopheniidae) from off New Caledonia collected during KANACONO and KANADEEP expeditions of the French Tropical Deep-Sea Benthos Program

Fig. 1. A–B. Aglaophenia howensis Briggs, 1918, fertile cormoid (A) and corbula (B), both from sample MNHN-IK-2015-544. — C. Aglaophenia sinuosa Bale, 1888, cormoid from sample MNHN- IK-2015-545. — D–E. Cladocarpus asymmetricus sp. nov., fertile cormoid (D) and phylactocarp (E) from sample MNHN-IK-2015-530 (holotype). — F. Cladocarpus keiensis Schuchert, 2003, colony from sample MNHN-IK-2015-534. Scale bars: F = 2 cm; A, C–D = 1 cm; E = 1 mm; B = 500 µm.

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Fig. 1 in A new Myxobolus (Cnidaria: Myxosporea) infecting the ornamental catfish Corydoras schwartzi from the Purus River in Brazil

Fig. 1. Corydoras schwartzi Rössel, 1963 infected by Myxobolus adrianoi sp. nov. A. Sampled fish captured in the Purus River near Lábrea Municipality, Amazonas State, Brazil. B. Histological sections of the fish intestine showing large cyst in the serosa layer (black arrow).

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Figure 3 in Four new species and one new genus of zoanthids (Cnidaria, Hexacorallia) from the Galapagos Islands

Figure 3. Terrazoanthus onoi sp. n. in situ in the Galapagos. a and c paratype USNM 1134066, at Whale Rock, San Cristobel I., depth 21 m, by JDR, March 12, 2007 b paratype CMNH-ZG 05885, Glynn's Reef, Darwin I., depth 13 m, by Fred Liss, March 8, 2007. All scale bars: 1 cm.

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Fig. 4. — A–B in Two new genera and nine new species of hydroids (Cnidaria: Hydrozoa) from off New Caledonia

Fig. 4. — A–B. Solenoscyphus candelabrum gen. et sp. nov. A. Portion of stem with basal parts of five cladia. B. Hydrotheca, showing internal projections of the perisarc. — C–D. Solenoscyphus decidualis gen. et sp. nov. C. Portion of stem with basal parts of two consecutive cladia. D. Hydrotheca. — E–G. Solenoscyphus striatus gen. et sp. nov. E. Portion of stem with basal part of a side branch. F. Hydrotheca, showing the characteristic striation of the perisarc. G. Operculum. Scale bars: A, C, E = 2 mm; B, D, F = 500 μm; G = 300 μm.

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Fig. 3. A in Two new genera and nine new species of hydroids (Cnidaria: Hydrozoa) from off New Caledonia

Fig. 3. A. Solenoscyphus candelabrum gen. et sp. nov., colony silhouette (holotype). B. Solenoscyphus decidualis gen. et sp. nov., colony silhouette (holotype). C. Solenoscyphus striatus gen. et sp. nov., colony silhouette (holotype). Scale bars: A = 2 cm; B–C = 1 cm.

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Fig. 1. A in Two new genera and nine new species of hydroids (Cnidaria: Hydrozoa) from off New Caledonia

Fig. 1. A. Caledoniana alata gen. et sp. nov., holotype (below) and paratype (above). B. Caledoniana decussata gen. et sp. nov., colony silhouette (part of holotype). C. Caledoniana microgona gen. et sp. nov., colony silhouette (holotype). The red arrows indicate the presence of gonothecae. Scale bars: 1 cm.

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Fig. 2. — A–B in Two new genera and nine new species of hydroids (Cnidaria: Hydrozoa) from off New Caledonia

Fig. 2. — A–B. Caledoniana alata gen. et sp. nov. A. Portion of fertile stem (note gonotheca above) and basal part of a side branch, showing positions of hydrothecae. B. Hydrotheca. — C–D. Caledoniana decussata gen. et sp. nov. C. Portion of stem with first and second order side branches from region of colony with coplanar hydrothecae, showing their relative position. D. Hydrotheca. — E–G. Caledoniana microgona gen. et sp. nov. E. Portion of stem. F. Hydrotheca. G. Three gonothecae. Scale bars: A, C, E, G = 3 mm; B, D, F = 1 mm.

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Fig. 2 in Can Aurelia (Cnidaria, Scyphozoa) species be differentiated by comparing their scyphistomae and ephyrae?

Fig. 2. Body proportions of polpys (shown as percentage). Error Bars show standard deviation. Abbreviations: see Table 2.

opencc-by-3.0Dec 2014View details →
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Fig. 1 in Can Aurelia (Cnidaria, Scyphozoa) species be differentiated by comparing their scyphistomae and ephyrae?

Fig. 1. Measurements of: A. Scyphistomae. B. Ephyrae. C. Lappets of an ephyra: the marginal lappet can be divided into rhopalial lappet and lappet stem; also visible are the rhopalial and velar canals. D. Rhopalial lappet and gastric canal forms of ephyrae in this study: 1. Rhopalial lappet forms (i.e. left lappet): (a) pointed spoon-like, (b) round spatula-like, (c) lancet-like and (d) bread knife-like; 2. Rhopalial canal forms: (a) forked, sharp points, (b) club-shaped, forked, sharp points and (c) spade-like; 3. Velar canal forms: (a) spade-like and (b) rhombic. Abbreviations: RH = rhopalium; RhC = rhopalial canal; RL = rhopalial lappet; Sta = statolith; UR = umbrella rim; VC = velar canal. Other abbreviations: see Table 2. Modified after Straehler-Pohl & Jarms (2010).

opencc-by-3.0Dec 2014View details →

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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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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