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FIGURE 12. Terebellides akares n in Telothelepodidae, Thelepodidae and Trichobranchidae (Annelida, Terebelliformia) from Lizard Island, Great Barrier Reef, Australia
FIGURE 12. Terebellides akares n. sp., holotype NTM W.023143. A–D. Entire worm, right dorso-lateral, right and left laterals, and ventral view, respectively; E–H. Anterior end, ventral, left and right laterals, and right dorso-lateral views; I–M. Close ups of anterior end, left and right lateral, each in two progressively closer views, and ventral view, respectively, unspecified arrow in J points to nephridial papilla, arrows in M point to neuropodia; N–O. Posterior end, right and left lateral views, respectively. Abbreviations: numbers refer to segments, ll = lower lip, ul = upper lip. Scale bars: A–D = 0.7 mm, E–F, H–I, K, N–O = 0.3 mm, G = 0.5 mm, J, L–M = 0.2 mm.
FIGURE 2. Rhinothelepus oculeus n in Telothelepodidae, Thelepodidae and Trichobranchidae (Annelida, Terebelliformia) from Lizard Island, Great Barrier Reef, Australia
FIGURE 2. Rhinothelepus oculeus n. sp., holotype AM W.47507. A–E. Entire worm, left dorso-lateral, left lateral and three progressively more ventral views, from right ventro-lateral to ventral, respectively; F–H. Close ups of the anterior end, left dorso-lateral and two progressively closer right ventro-lateral views, respectively; I. Posterior body, right lateral view; J–M. Close ups of anterior end, left dorso-lateral, left lateral, right ventro-lateral and ventral views, respectively. Abbreviations: numbers refer to segments, unspecified arrows point to genital papillae, ll = lower lip, P = basal part of prostomium, PP = prostomial process, ul = upper lip. Scale bars: A–E = 0.4 mm, F–G, I = 0.2 mm, H, J–M = 0.15 mm.
FIGURE 15. Terebellides akares n in Telothelepodidae, Thelepodidae and Trichobranchidae (Annelida, Terebelliformia) from Lizard Island, Great Barrier Reef, Australia
FIGURE 15. Terebellides akares n. sp., paratype NTM W.025894. A–B. Progressively closer views of anterior end, left lateral view; C. Posterior end, right lateral view; D. Notopodia, segments 5–10, arrows point to genital papillae of segments 6–7; E–G. Notochaetae, segment 7, in progressively closer views; H–I. Neuropodia, segments 7–8, from right and left sides of body; J. Neuropodium, segment 22; K. Uncini, segment 22; L. Neuropodial spines, segment 7; M. Uncini, segment 13; N. Uncini, segment 22. Scale bars: A = 300 Μm, B = 200 Μm, C–D = 100 Μm, E, H = 50 Μm, F = 20 Μm, G, J = 10 Μm, I = 40 Μm, K, M = 5 Μm, L = 6 Μm, N = 2 Μm.
FIGURE 18. Trichobranchus hirsutus n in Telothelepodidae, Thelepodidae and Trichobranchidae (Annelida, Terebelliformia) from Lizard Island, Great Barrier Reef, Australia
FIGURE 18. Trichobranchus hirsutus n. sp., holotype AM W.44608 (A–C), paratype AM W.44946 (D–J). A–C. Close ups of anterior end, right dorso-lateral, ventral and left lateral views, respectively; D. Parapodia, segments 20–22; E–G. Notochaetae, segment 17, general and chaetae from anterior and posterior rows, under higher magnifications; H–J. Uncini, segments 16, 24–25 and 25 under higher magnification, respectively. Abbreviations: numbers refer to segments, ll = lower lip, P = prostomium, Pe = peristomial lobe, ul = upper lip. Scale bars: A–C = 200 Μm, D = 50 Μm, E = 40 Μm, F = 30 Μm, G, I = 20 Μm, H = 10 Μm, J = 5 Μm.
FIGURE 5. Streblosoma curvus n in Telothelepodidae, Thelepodidae and Trichobranchidae (Annelida, Terebelliformia) from Lizard Island, Great Barrier Reef, Australia
FIGURE 5. Streblosoma curvus n. sp., holotype AM W.47508 (A–D), paratype AM W.47522 (E–K). A. Close up of the anterior end, dorsal view; B. Mid-body segments; arrow begins to first neuropodium with uncini in curved row, on segment 21; C–D. Posterior end of fragment, right and left lateral views, respectively; E–F, Notochaetae from segment 4 under progressively higher magnifications; G–H. Notochaetae, segment 23, in progressively higher magnifications; I–K, Uncini from segment 7 under progressively higher magnifications and from segment 23, respectively. Abbreviations: numbers refer to segments, P = basal part of prostomium, ul = upper lip, * = distal part of prostomium. Scale bars: A–C = 0.2 mm, D = 0.3 mm, E, G = 40 Μm, F, H = 20 Μm, I, K = 10 Μm, J = 5 Μm.
FIGURE 4. Streblosoma curvus n in Telothelepodidae, Thelepodidae and Trichobranchidae (Annelida, Terebelliformia) from Lizard Island, Great Barrier Reef, Australia
FIGURE 4. Streblosoma curvus n. sp., holotype AM W.47508. A–D. Entire incomplete worm, ventral, dorsal, right and left lateral views, respectively; E–H. Anterior end, dorsal, ventral, left and right lateral views, respectively; I–L. Close ups of anterior end, dorsal, left lateral, ventral and right lateral views, respectively. Abbreviations: numbers refer to segments, ll = lower lip, P = prostomium, ul = upper lip. Scale bars: A–D = 0.5 mm, E–H = 0.3 mm, I = 0.2 mm, J–L = 0.15 mm.
FIGURE 7. Euthelepus aserrula n in Telothelepodidae, Thelepodidae and Trichobranchidae (Annelida, Terebelliformia) from Lizard Island, Great Barrier Reef, Australia
FIGURE 7. Euthelepus aserrula n. sp., holotype AM W.47509. A. Posterior end, right lateral view; B. Notochaetae, segment 5; C–D. Notochaetae, segment 17 under progressively higher magnifications; E–I. Uncini, segments 6, 17 and 30, the latter two under lower and higher magnifications. Scale bars: A = 300 Μm, B–C= 80 Μm, D = 50 Μm, E, G–H = 10 Μm, F, I = 5 Μm.
FIGURE 11. Thelepus paiderotos n in Telothelepodidae, Thelepodidae and Trichobranchidae (Annelida, Terebelliformia) from Lizard Island, Great Barrier Reef, Australia
FIGURE 11. Thelepus paiderotos n. sp., AM W.44282. A. Close up of oral area; B–C. Close ups of anterior end, dorsal view, showing origin of branchiae under progressively higher magnifications; D–E. Notopodia, segments 7–8 and 17, respectively; F–H, K. Notochaetae from anterior row, segments 7 and 8, respectively, latter under three progressively higher magnifications; I–J. Notochaetae from posterior row, segment 17, under progressively higher magnifications; L–M. Uncini, segments 7 and 26. Abbreviations: ll = lower lip, ul = upper lip, 1 = segment 1, * = distal part of prostomium. Scale bars: A = 150 Μm, B = 200 Μm, C = 60 Μm, D = 70 Μm, E = 40 Μm, F–J = 20 Μm, K = 10 Μm, L = 7 Μm, M = 5 Μm.
FIGURE 1. Live specimens. A, Streblosoma curvus n in Telothelepodidae, Thelepodidae and Trichobranchidae (Annelida, Terebelliformia) from Lizard Island, Great Barrier Reef, Australia
FIGURE 1. Live specimens. A, Streblosoma curvus n. sp., AM W.44276, MI QLD 2355; B–C. AM W.44287, MI QLD 2375; D–F. Thelepus paiderotos n. sp., AM W.44600, MI QLD 2397 (D–E), AM W.44283, MI QLD 2368 (F); G–H. Terebellides akares n. sp., AM W.45450, MI QLD 2445; I. Trichobranchus hirsutus n. sp., AM W.45444, MI QLD 2444. Photos: A–I – A. Semenov.
FIGURE 10. Thelepus paiderotos n in Telothelepodidae, Thelepodidae and Trichobranchidae (Annelida, Terebelliformia) from Lizard Island, Great Barrier Reef, Australia
FIGURE 10. Thelepus paiderotos n. sp., AM W.44282. A–F. Anterior end, right and left laterals, dorsal in progressively closer views, ventral and right lateral views, respectively; G–J. Close ups of anterior end, left lateral in progressively closer views, ventral and right lateral views, respectively, arrows in G point to nephridial/genital papillae, arrow in J points to nuchal organ; K. Notopodia of segments 3–6. Abbreviations: numbers refer to segments, ll = lower lip, P = basal part of prostomium, ul = upper lip, * = distal part of prostomium. Scale bars: A–B, E = 0.5 mm, C, F = 0.4 mm, D, H–J = 0.2 mm, G = 0.3 mm, K = 0.1 mm.
FIGURE 14. Terebellides akares n in Telothelepodidae, Thelepodidae and Trichobranchidae (Annelida, Terebelliformia) from Lizard Island, Great Barrier Reef, Australia
FIGURE 14. Terebellides akares n. sp., paratype NTM W.025894. A–B. Entire worm, left lateral and ventral views, respectively; C–D. Progressively closer views of anterior end, dorsal view; E–F. Close ups of buccal tentacles; G. Notopodia, segments 5–10; H–J. Close ups of branchia; K–L. Close ups of anterior end, left lateral view in progressively higher magnifications, ventral and right ventro-lateral views, respectively. Abbreviations: numbers refer to segments, ll = lower lip. Scale bars: A = 500 Μm, B = 700 Μm, C = 400 Μm, D, K = 300 Μm, E = 100 Μm, F, I = 20 Μm, G = 150 Μm, H, J = 70 Μm, L = 200 Μm.
FIGURE 16. Terebellides akares n in Telothelepodidae, Thelepodidae and Trichobranchidae (Annelida, Terebelliformia) from Lizard Island, Great Barrier Reef, Australia
FIGURE 16. Terebellides akares n. sp., paratype AM W.45831. A. Anterior end, dorsal view; B–C. Anterior end, right lateral view, under progressively higher magnifications, arrow points to nephridial papilla; D, F, I–J. Close ups of branchia; E. Close up of anterior end, ventral view; G. Uncini, segment 14; H. Close up of tips of some buccal tentacles. Abbreviations: numbers refer to segments, ll = lower lip. Scale bars: A = 400 Μm, B = 300 Μm, C–E, H = 100 Μm, F = 40 Μm, G = 4 Μm, I = 20 Μm, J = 10 Μm.
FIGURE 1 in A new species of Amphimedon (Porifera, Demospongiae, Haplosclerida, Niphatidae) from the CapricornBunker Group of Islands, Great Barrier Reef, Australia: target species for the ' sponge genome project'
FIGURE 1. Amphimedon queenslandica sp.nov. A, Holotype QMG315611 in aquarium (scale 1 cm) (photo Nelson Lauzon). B, Peripheral skeletal reticulation (scale 1 mm). C, Closer view of the subectosomal skeleton (scale 1 mm). D, Paratype QMG322874 in aquarium (scale 1 cm) (photo Simon Walker). E, Thicker fibres with embedded spicules forming a denser surface skeleton, supported beneath by the more cavernous subectosomal reticulation (scale 500 μm). F, Network of smaller secondary (uni and paucispicular) tracts overlaying the thicker primary (multi and paucispicular) fibres (scale 500 μm). G, Uni and paucispicular secondary skeletal tracts interconnecting the larger primary fibres (scale 100 μm). H, Isodictyal reticulation of smaller secondary (uni and paucispicular) tracts (scale 50 μm). I, Oxeas embedded in spongin binding the nodes of smaller secondary tracts (scale 50 μm). J, Oxea megascleres (scale 50 μm).
FIGURE 11. Armandia parva n in New data on the Opheliidae (Annelida) from Lizard Island (Great Barrier Reef, Australia): five new species of the genus Armandia Filippi, 1861
FIGURE 11. Armandia parva n. sp. SEM micrographs (paratype AM W.44558). Parapodia, right side: A, CH12, ventral view; B, CH15, anterolateral view; C, CH16, anterolateral view; D, CH21, anterolateral view.
FIGURE 9. Armandia parva n in New data on the Opheliidae (Annelida) from Lizard Island (Great Barrier Reef, Australia): five new species of the genus Armandia Filippi, 1861
FIGURE 9. Armandia parva n. sp. A–H, holotype AM W.44244; I, paratype AM W.49300. A, anterior end, dorsal view; B, anterior end, ventral view. (C–G) Parapodia, ventral (v, left) and dorsal view (d, right) (C–E) and dorsal view only (F–G): C, CH1; D, CH2; E, CH4; F, CH18 (showing branchia in full); G, CH23 (C–F, right side of body; G, left side). H, last chaetigers and anal tube, ventral view; I, posterior end, lateral view. A–B, C–E, same scale.
FIGURE 8. Armandia opisthoculata n in New data on the Opheliidae (Annelida) from Lizard Island (Great Barrier Reef, Australia): five new species of the genus Armandia Filippi, 1861
FIGURE 8. Armandia opisthoculata n. sp. SEM micrographs (paratype AM W.49298). A, anterior end, right side, ventrolateral view; B, CH11, lateral view; C, CH22, laterodorsal view; D, posterior end, right side; E, anal tube and last chaetigers, right side, lateral view; F, anal tube opening, ventral incision, ventrolateral view. White short arrows pointing prechaetal lobe tip.
FIGURE 10. Armandia parva n in New data on the Opheliidae (Annelida) from Lizard Island (Great Barrier Reef, Australia): five new species of the genus Armandia Filippi, 1861
FIGURE 10. Armandia parva n. sp. SEM micrographs (paratype AM W.44558). A, anterior end, ventral view; B, mouth and ventral groove, detail; C, CH1–3, ventral view; D, CH6–8, ventral view; E, posterior end, lateral view; F, posterior end, ventral view.
FIGURE 6. Armandia mariacapae n in New data on the Opheliidae (Annelida) from Lizard Island (Great Barrier Reef, Australia): five new species of the genus Armandia Filippi, 1861
FIGURE 6. Armandia mariacapae n. sp. (holotype AM W.49294). A, anterior end, left side, lateral view; (B–F) Parapodia, left side, lateral (B, C) and dorsolateral view (D–F): B, CH1; C, CH2; D, CH3; E, CH7; F, CH33. G, posterior end, left side, lateral view. White arrows pointing prechaetal lobe tip; B–F, same scale.
FIGURE 5. Armandia casuarina n in New data on the Opheliidae (Annelida) from Lizard Island (Great Barrier Reef, Australia): five new species of the genus Armandia Filippi, 1861
FIGURE 5. Armandia casuarina n. sp. (holotype AM W.49293). A, anterior end, left side, lateral view. (B–C) Posterior end and anal tube: B, lateral view; C, ventral view, anal tube resting on right side. (D–I) Parapodia, left side, lateral views: D, CH1; E, CH2; F, CH3; G, CH4; H, CH6; I, CH38. White arrows pointing prechaetal lobe tip; D–I, same scale.
FIGURE 4. Armandia buccina n in New data on the Opheliidae (Annelida) from Lizard Island (Great Barrier Reef, Australia): five new species of the genus Armandia Filippi, 1861
FIGURE 4. Armandia buccina n. sp. SEM micrographs (paratypes AM W.49292). A, anal tube, lateral view (detached from body); B, anterior end, ventrolateral view; C, posterior end, last chaetigers, ventral view; D, posterior end, last chaetigers, ventral view, detail; E, anal tube, lateral view (detached from body); F, anal tube opening, ventral incision, lateral view (detached from body).
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
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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
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