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Figures 9A–C in Deep-water hydroids (Hydrozoa: Leptolida) from Macquarie Island
Figures 9A–C. Filellum conopeum sp. nov., stn 94. A, hydrotheca with ridged and frilled basal perisarc. B, lateral section through coppinia showing gonothecae and protective tubes. C, transverse section through coppinia. Scale bar: A, 0.2 mm; B, 0.5 mm.
Figures 7A–E. Lafoea dumosa, stn 44. A, colony. B in Deep-water hydroids (Hydrozoa: Leptolida) from Macquarie Island
Figures 7A–E. Lafoea dumosa, stn 44. A, colony. B, part of branch. C, hydrotheca with typically twisted pedicel and diaphragm. D, hydrotheca with replicated margin. E, radial arrangement of hydrothecae around stem. Scale bar: A, 10 mm; B, E, 1 mm; C, D, 0.5 mm.
Figures 1A–C in Deep-water hydroids (Hydrozoa: Leptolida) from Macquarie Island
Figures 1A–C. Hydractinia sp., stn 44. A, part of colony. B, trabeculate meshwork of basal perisarc. C, nematocysts, possibly euryteles, undischarged. Scale bar: A, 1 mm; B, 0.1 mm; C, 10 µm.
Figures 4A–C. Eudendrium spec., stn 44. A in Deep-water hydroids (Hydrozoa: Leptolida) from Macquarie Island
Figures 4A–C. Eudendrium spec., stn 44. A, colony on dead branch of primnoid gorgonian, stn 44. B, cluster of male gonophores. C, undischarged nematocyst, probably eurytele; in tentacles and coernosarc. Scale bar: A, 20 mm; B, 0.5 mm; C, 10 µm.
Figures 6A–C. Lafoea tenellula, stn 97. A in Deep-water hydroids (Hydrozoa: Leptolida) from Macquarie Island
Figures 6A–C. Lafoea tenellula, stn 97. A, stolonal colony on branch of Eudendrium, hydrorhiza produced into free stolon. B, regenerated hydrotheca. C, longitudinal section through coppinia. Scale bar: A, 1 mm; B, C, 0.5 mm.
Figures 3A–G. A, Eudendrium deforme. A in Deep-water hydroids (Hydrozoa: Leptolida) from Macquarie Island
Figures 3A–G. A, Eudendrium deforme. A, part of colony on dead branch of primnoid gorgonian, stn 46. B, single stem. C, cluster of male gonophores with paired immature gonophores and partially resorbed tentaclesof hydranth. D, undischarged nematocyst, probably eurytele from coenosarc of stem. E–G, Eudendrium macquariensis sp. nov., stn 44. E, stems from holotype colony on Eudendrium deforme. F, undischarged nematocyst from tentacles. G, undischarged nematocyst, site unknown. Scale bar: A, 25 mm; B, 10 mm; C, 0.5 mm; E, 1 mm; F, G, 10 µm.
Figures 2A–D in Deep-water hydroids (Hydrozoa: Leptolida) from Macquarie Island
Figures 2A–D. Eudendrium?cyathiferum. A, female colony, stn 122. B, cluster of immature female gonophores on colony. C, mature female gonophores with ova from same colony. D, undischarged eurytele from coenosarc of branch. Scale bar: A, 50 mm; B, C, 0.5 mm; D, 10 µm.
Figures 5A–C. Tripoma arboreum, stn 97. A in Deep-water hydroids (Hydrozoa: Leptolida) from Macquarie Island
Figures 5A–C. Tripoma arboreum, stn 97. A, part of stem. B, hydrotheca with closed operculum. C, hydrotheca with operculum open. Scale bar: A, 1 mm; B, C, 0.5 mm.
Figures 8A–E in Deep-water hydroids (Hydrozoa: Leptolida) from Macquarie Island
Figures 8A–E. Lafoea annulata sp. nov., stn 44. A, colony. B, distal stolonisation at end of branch. C, hydrotheca with twisted and partially annulated pedicel. D, hydrotheca with almost smooth pedicel. E, undischarged nematocyst from coenosarc of branch. Scale bar: A, 25 mm; B, 1 mm; C, D, 0.5 mm; E, 20 µm.
Fig. 8 in New deep-water cnidarian sites in the southern Adriatic Sea
Fig. 8: Live scleractinians from Tricase (all from st. MEMA12-36). (A) Juvenile Desmophyllum dianthus (14) growing on subfossil Madrepora; bar = 1 cm; (B) Co-occurring live Lophelia pertusa (10), Madrepora oculata (7) and D. dianthus (14); bar = 1 cm.; (C) Dead Madrepora frame colonized by D. dianthus (14) and Poecillastra compressa (22); bar = 1 cm; (D) Live L. pertusa; bar = 5 cm.
Fig. 2 in New deep-water cnidarian sites in the southern Adriatic Sea
Fig. 2: (A) Paramuricea macrospina (1) growing on muddy bottom at st. A65; bar =10 cm; (B-D) Gorgonians (P. macrospina: 1 and Callogorgia verticillata: 3) and sponges (Pachastrella monilifera: 2) co-occurring at st. A65 and ALTRO31; bar = 10 cm; (E) Large colony of C. verticillata (3); note the unidentified nudibranch (4, red circle) at st. ALTRO31; bar = 10 cm; (F) The yellow coral Dendrophyllia cornigera (5) at st. ALTRO31; note the sponge P. monilifera (2) growing on subfossil branches of D. cornigera and the Euphasiacean Stylocheiron sp. (6); bar = 5 cm; (G) Madrepora oculata (7) fouling a lost fishline at st. A67; bar = 10 cm; (H) A gorgonian garden at st. ALTRO31 characterized by many individuals of C. verticillata (3) growing over a hardground; bar = 25 cm.
Fig. 3 in New deep-water cnidarian sites in the southern Adriatic Sea
Fig. 3: Montenegrin margin. (A) Hardground at st. ALTRO31 colonized by gorgonians Callogorgia verticillata (3) and Paramuricea macrospina (1); note the pencil sea urchin Cidaris cidaris (8), one of the most common vagile organisms observable at such depths; bar = 25 cm; (B) A large colony of the anthipatharian Leiopathes glaberrima (11) settled by the scleractinian Lophelia pertusa (10) at st. A63; observe Rochinia rissoana (9) in the coral frame and the abundant zooplankton in the surrounding water (i.e. Stylocheiron sp.: 6); bar = 10 cm; (C) The fish Phycis phycis (12) hidden under a hardground at st. A63; bar = 10 cm; (D) Close-up of L. pertusa (10) growing on L. glaberrima (11) at st. A63 surrounded by abundant zooplankton (i.e. the euphasiacean Stylocheiron sp.: 6), bar = 10 cm; (E) A remarkable cnidarian assemblage at st. ALTRO35 ca. -505 m water depth, formed by a large (up to 2 m) colony of L. glaberrima (11), the scleractinians Madrepora oculata (7) and L. pertusa (10) and Desmophyllum dianthus (14); inset shows the byssate bivalve Delectopecten vitreus (13) and Annelida (Serpula vermicularis: 15) attached to L. glaberrima (11). C. verticillata (3) is visible below on the right. Scale bar = 10 cm; (F) The "Gorgonian garden" at st. A65 formed by a dense aggregation of C. verticillata colonies (3). The red circle shows the gorgonian P. macrospina (1). Scale bar = 10 cm.
Fig. 6 in New deep-water cnidarian sites in the southern Adriatic Sea
Fig. 6: Coral-sponge assemblages from the Bari Canyon. (A) Assemblage dominated by the white sponge Pachastrella monilifera (2) at st. A210; insets show an actiniarian belonging to the genus Peachia in the soft sediments (23); and the vagrant echinoid Echinus melo (24); bar = 25 cm; (B) The shrimp Plesionika martia (20) on Madrepora oculata (7) - Serpula vermicularis (15) bioconstruction at st. A210, undetermined fish belonging to the family Argentinidae (25); bar = 25 cm; (C) Madrepora-Pachastrella assemblage at st. A210; note the tiny seastar Peltaster placenta (27) hidden under the coral frame, and the encrusting yellow sponge Hexadella sp. (26); bar = 10 cm; (D) Canyon's flank at st. A210 showing the conspicuous presence of serpulids, mostly Bispira sp. (28) and the presence of the vagrant echinoid Cidaris cidaris (8); bar = 10 cm; (E) Benthos at st. A210 showing the encrusting sponge Hexadella sp. (26) and the cup-like sponge P. monilifera (2); also note the asteroid P. placenta (27); bar = 10 cm; (F) Scleractinian-sponge-serpulid cluster at st. A210, inset shows close-up of the sponges P. monilifera (2) and Poecillastra compressa (22); note the echinoid E. melo (24) and the scleractinian M. oculata (7); bar =10 cm; (G) The fish Phycis blennoides (29) and a fish related to family Argentinidae (25), foraging next to coral-sponge grounds at st. A210 (M. oculata 7; P. monilifera 2); bar = 10 cm; (H) Close-up of the orange cup-like sponge P. compressa (22) at st. A208, sheltering the decapod P. martia (20); note M. oculata (7) on the left side of the sponge; bar = 10 cm.
Fig. 5 in New deep-water cnidarian sites in the southern Adriatic Sea
Fig. 5: Underwater photographs from the Bari Canyon. (A, B) Hardgrounds and boulders along the canyon's flank at st. A208 colonized by a cnidarian-sponge assemblage dominated by Madrepora oculata (7) and Pachastrella monilifera (2); note the occurrence of orange sponge (Poecillastra compressa: 22) and Cidaris cidaris (8) one of most common elements of the vagile bathyal benthos; bar = 25 cm; (C) Close-up of a cnidarian-sponge assemblage at st. A208 showing the coalescent growth of sponges and corals, and the subordinate presence of Serpula vermicularis (15); bar = 25 cm; (D) Intimately associated S. vermicularis (15) and M. oculata (7) established on a hardground crest at st. A210; bar =10 cm.
Fig. 1 in New deep-water cnidarian sites in the southern Adriatic Sea
Fig. 1: Location of sites discussed in this study. Bathymetry from EMODnet (European Marine Observation and Data Network) Hydrography portal (resolution 500 m) (http://www. emodnet-hydrography.eu).
Fig. 7 in New deep-water cnidarian sites in the southern Adriatic Sea
Fig. 7: Cnidarian habitats in the Bari Canyon: (A) Assemblage dominated by white massive sponges (Pachastrella monilifera: 2) and scleractinians (Madrepora oculata: 7) at st. A208; note Plesionika martia (20), one of the most recurrent decapods in such habitats; bar = 10 cm; (B) Hardground at st. A208, colonized by encrusting sponges (Hexadella sp.: 26) and serpulids (Parasabella sp.: 30); bar =10 cm; (C) Colony of the yellow coral Dendrophyllia cornigera (5) at st. A210, note the fish belonging to the family Myctophidae (31); bar = 10 cm; (D) Vermiliopsis sp. (32) and Serpula vermicularis (15) are the main constituents of the cnidarianserpulid assemblage at st. A208; Echinus melo (24) is probably grazing on a M. oculata (7) colony; bar = 10 cm; (E) M. oculata (7) - S. vermicularis (15) cluster at st. A210; bar =10 cm; (F) Canyon's flank at st. A210, inhabited by sponges (P. monilifera, 2; Hexadella sp., 26), cnidarians (M. oculata, 7) and serpulids (S. vermicularis, 15) plus vagile echinoids (Cidaris cidaris, 8); bar = 25 cm; (G, H) Scleractinian-sponge dominated habitats at st. A210, (M. oculata: 7, P. monilifera: 2, Hexadella sp.: 26), serving also as refuge for the decapods Munida tenuimana (18) and P. martia (20); the sea anemone Peachia sp. (23) inhabit surrounding soft substrata; bar = 10 cm.
Fig. 4 in New deep-water cnidarian sites in the southern Adriatic Sea
Fig. 4: Non-sessile fauna associated with cnidarian assemblages in the Montenegrin margin. (A) Large Madrepora oculata bush (up to 1 m) (7), at st. ALTRO36, hosting the crab Bathynectes maravigna (16), inset shows Helicolenus dactylopterus (17); (B) Munida tenuimana (18) taking shelter under hardground at st. ALTRO31; (C) Paromola cuvieri (19) carrying the sponge Pachastrella monilifera on its back (2) (possibly an antipredatory strategy: Capezzuto et al., 2012); (D) The shrimp Plesionika martia (20) and the fish Hoplostethus mediterraneus (21) from st. ALTRO31.
Figure 2 in First report of the Ecuadorian deep-sea scorpionfish, Trachyscorpia verai Béarez & Motomura, 2009 (Actinopteri: Scorpaenidae) from Peruvian marine waters
Figure 2. – Lateral view of Trachyscorpia verai. A: IMARPE-18787, 223 mm SL. B: IMARPE-18789, 266 mm SL. Photographed approximately one hour after capture and prior to preservation (photo F. Zavalaga).
Figure 1 in Length-weight relationship of 15 species of deep-water chondrichthyans in the Canary Islands (eastern-central Atlantic)
Figure 1. – Length-weight relationships estimated for 15 deep-water chondrichthyan species from the slopes of the Canary Islands.
Figure 4 in First report of the Ecuadorian deep-sea scorpionfish, Trachyscorpia verai Béarez & Motomura, 2009 (Actinopteri: Scorpaenidae) from Peruvian marine waters
Figure 4. – Endoparasites of the genus Anisakis (larva L3) found in the mesentery of Trachyscorpia verai.
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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.