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209 results for “scanning electron microscopy”

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FIGURE 51. Fedora edwardsi Jullien, 1882. North Atlantic Ocean, Josephine Bank. A–D. SMNH-128030. A, C in Scanning electron microscopy study of Lars Silén's cheilostome bryozoan type specimens in the historical collections of natural history museums in Sweden

FIGURE 51. Fedora edwardsi Jullien, 1882. North Atlantic Ocean, Josephine Bank. A–D. SMNH-128030. A, C. Lateral views of two colonies. B. Group of zooids with operculum, some also with an adventitious avicularium. D. Close-up of two zooids showing the orifice. E–G. SMNH-128029. E, G. Proximal view of two colonies with emanation point of zooidal rows. F. Closeup of the proximal end with?ancestrula. H, I. SMNH-127677. H. Proximal view of a colony with?ancestrula. I. Group of autozooids with adventitious avicularia. Scale bars: A, C = 1 mm; B, E = 400 µm; D, F = 200 µm; G, I = 300 µm; H = 500 µm.

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FIGURE 48 in Scanning electron microscopy study of Lars Silén's cheilostome bryozoan type specimens in the historical collections of natural history museums in Sweden

FIGURE 48. Anoteropora latirostris Silén, 1947a. Lectotype (designated here) SMNH-Type-8746a, Indian Ocean, Bab-elMandeb, Aden Island. A, B. General view of two fragments of the same colony figured in Silén (1947a, pl. 5, figs 25–27). C. Close-up of two zooids, one ovicellate, and associated interzooidal avicularia. D. Close-up of two zooids, one ovicellate, at the colony edge. E. General view of another colony fragment. F. Close-up of an autozooid showing the robust orifice condyles. Scale bars: A, B, E = 3 mm; C, D = 400 µm; F = 200 µm.

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FIGURE 50 in Scanning electron microscopy study of Lars Silén's cheilostome bryozoan type specimens in the historical collections of natural history museums in Sweden

FIGURE 50. Fedora nodosa Silén, 1947a. Gulf of Mexico, Florida, United States. A, B. Lectotype (designated here) SMNH- Type-8735a. C–E. Paralectotype SMNH-Type-8735b. F, G. Paralectotype SMNH-Type-8735c. H, I. Paralectotype SMNH-Type- 8735d. A. Lateral view of the colony. The nature of the chitinous tubes here and in (C) is unclear. It can either be interpreted as a kenozooidal attachment rootlet or as the polypide tubes of a coronate scyphozoan. B. Close-up of autozooids with operculum or closure plate. C. General view of the colony. D. Close-up of autozooids with adventitious avicularia. E. Close-up of two orifices with and without operculum, and additional orifice rims due to subsequent intramural budding. F. General view of the proximal end of the colony (i.e. ancestrular region). G. Close-up of the proximal end of colony with emanation point of zooidal rows. H. General view of the distal end of the colony. I. Close-up of the distal end of colony with kenozooids. Scale bars: A = 2 mm; B = 400 µm; C, F, H = 1 mm; D, G, I = 500 µm; E = 200 µm.

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FIGURE 46 in Scanning electron microscopy study of Lars Silén's cheilostome bryozoan type specimens in the historical collections of natural history museums in Sweden

FIGURE 46. Crucescharellina japonica Silén, 1947a. Holotype UPSZTY 2483, Japan. A, B. General frontal view of three fragments. C. Group of autozooids. D, E. Close-up of avicularia. F. General dorsal view of two additional fragments. G. Closeup of dorsal avicularia. Scale bars: A, B, F = 500 µm; C = 200 µm; D, E = 50 µm; G = 60 µm.

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FIGURE 45. A–E in Scanning electron microscopy study of Lars Silén's cheilostome bryozoan type specimens in the historical collections of natural history museums in Sweden

FIGURE 45. A–E. Conescharellina sp. SMNH-220511, Java Sea, Malay Archipelago. A. Lateral view of the colony. B. Group autozooids and interzooidal avicularia. C. Close-up of an orifice. D. Close-up of avicularia. E. Close-up of the apical cone with kenozooids and avicularia. F–H. Conescharellina longirostris Silén, 1947a SMNH-Type-4605, Java Sea, Malay Archipelago. F. Apical view of a colony. G. Apical view of some zooids showing a well-developed proximolateral peristome. H. Antapical view of a colony. Scale bars: A, F, H = 500 µm; B, E, G = 200 µm; C, D = 100 µm.

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FIGURE 44 in Scanning electron microscopy study of Lars Silén's cheilostome bryozoan type specimens in the historical collections of natural history museums in Sweden

FIGURE 44. Conescharellina laevis Silén, 1947a. Java Sea, Malay Archipelago. A–C. Lectotype (designated here) SMNH- Type-4606a. D, E. Paralectotype SMNH-Type-4606b. F. Paralectotype SMNH-Type-4606c. G. Paralectotype SMNH-Type- 4606d. A, D. Lateral views of two colonies. B. Group of zooids. C. Close-up of orifices and avicularia. E. Close-up of two rows of autozooids and avicularia. F. Apical view of a colony with the zone of kenozooids. G. Antapical view of a colony with radial rows of avicularia between autozooids. Scale bars: A, D, F, G = 500 µm; B, E = 300 µm; C = 100 µm.

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FIGURE 43 in Scanning electron microscopy study of Lars Silén's cheilostome bryozoan type specimens in the historical collections of natural history museums in Sweden

FIGURE 43. Conescharellina brevirostris Silén, 1947. Daidokutsu submarine cave, Ie Island, Okinawa, Japan. A. Lateral view of the colony. Arrows indicate adventitious avicularia placed distolaterally to the orifice in some zooids. B. Close-up of a zooid with surrounding interzooidal avicularia. The arrow indicates the adventitious avicularium distolaterally to the orifice. C. Antapical view of a colony. D. Close-ups of the central antapical surface with avicularia. Scale bars: A, C = 200 µm; B = 100 µm; D = 100 µm.

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FIGURE 42 in Scanning electron microscopy study of Lars Silén's cheilostome bryozoan type specimens in the historical collections of natural history museums in Sweden

FIGURE 42. Conescharellina brevirostris Silén, 1947a. SMNH-Type-4604, Java Sea, Malay Archipelago. A, E. Lateral views of two colonies. Arrows indicate adventitious avicularia placed distolaterally to the orifice in some zooids. B. Close-up of a zooid with surrounding interzooidal avicularia. C. Close-up of an orifice showing the proximolaterally developed peristome. D. Close-up of an avicularium. F. Apical view of a colony. G. Close-up of the apical kenozooids. H. Antapical view of a colony. I, J. Close-ups of the antapical surface and avicularia. Scale bars: A, E, F, H = 500 µm; B, C = 100 µm; D = 200 µm; G, I = 300 µm; J = 50 µm.

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FIGURE 40 in Scanning electron microscopy study of Lars Silén's cheilostome bryozoan type specimens in the historical collections of natural history museums in Sweden

FIGURE 40. Triphyllozoon microstigmatum Silén, 1954. Holotype LUZM 53, Western Australia. A. View of the tubular colony. B. Labels accompanying the specimen. C. Group of autozooids. D, E. Close up of autozooids with frontal avicularia, some with open or closed mandibles. Arrows indicate the two varieties, round with raised, finely denticulate rostrum (white arrows), and elliptical flat (black arrows). F. Large avicularium with bicuspid rostrum located at the fenestra. G. Close-up of the avicularium in (F) showing the bicuspid rostrum and the triangular, hooked mandible. H. Group of zooids, two of which ovicellate. I. Close-up of an ooecium. J. General view of the dorsal side. Arrows point to circular avicularia protruding from the edge of some fenestrae. K. Close-up of circular avicularia protruding from the dorsal edge of the fenestrae. L, M. Close-ups of dorsal avicularia. Given the tubular shape of the colony exposing the dorsal side of the autozooids towards the exterior and the frontal side towards the interior, SEM micrographs were taken from two fragments subsampled from the tips of the holotype colony. Scale bars: A = 2 cm; C, F, H = 500 µm; D = 400 µm; E = 300 µm; G, I = 100 µm; J = 1 mm; K = 45 µm; L, M = 50 µm.

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FIGURE 41 in Scanning electron microscopy study of Lars Silén's cheilostome bryozoan type specimens in the historical collections of natural history museums in Sweden

FIGURE 41. Triphyllozoon regulare Silén, 1954. Holotype LUZM 55, Western Australia. A. General view of the colony fragment. Arrows indicate the large avicularia adjacent to the fenestrae. B. Group of autozooids, one with elliptical frontal avicularium. C. Close-up of a secondary orifice lacking the peristomial avicularium. D. Close-up of a secondary orifice showing the peristomial avicularium with denticulate rostrum and two 'telescopic' lateral spines. E. Autozooids with large frontal avicularia. F. Closeup of the frontal avicularium. G. Close-up of the large frontal avicularium usually located at the fenestra. H. General view of the dorsal side. I. Close-up of a dorsal avicularium and tuberculation. J, K. Close-ups of dorsal avicularia with closed and open mandibles. Scale bars: A = 1 mm; B, G = 200 µm; C, D, I, J, K = 50 µm; E = 250 µm; F = 100 µm; H = 500 µm.

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FIGURE 32 in Scanning electron microscopy study of Lars Silén's cheilostome bryozoan type specimens in the historical collections of natural history museums in Sweden

FIGURE 32. Pseudolepralia ellisinae Silén, 1941. Holotype UPSZTY 2469, Bonin Islands, Japan. A. General view of the colony. B. Two autozooids with complete lamina and associated avicularia. C, D. Autozooids with incomplete frontal shield at different stage. E. Close-up of avicularia with open mandibles. F. Ovicellate zooids, some with broken ooecium. Scale bars: A, F = 200 µm; B–D = 100 µm; E = 50 µm.

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FIGURE 36 in Scanning electron microscopy study of Lars Silén's cheilostome bryozoan type specimens in the historical collections of natural history museums in Sweden

FIGURE 36. Triphyllozoon cornutum Silén, 1954. Holotype LUZM 54, Western Australia. A. General view of the colony; scale bar 1 cm. B. Labels accompanying the specimen.

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FIGURE 24 in Scanning electron microscopy study of Lars Silén's cheilostome bryozoan type specimens in the historical collections of natural history museums in Sweden

FIGURE 24. Semikinetoskias dubia Silén, 1941. Lectotype (designated here) UPSZTY 191153D, Japan. A. General view of the specimen. B. Close-up of two autozooids lacking pedunculate avicularia because detached. C. Close-up of an autozooid with pedunculate avicularium. D. Close-up of avicularium. E. Dorsal side. Scale bars: A = 1 mm; B = 200 µm; C = 120 µm; D = 100 µm; E = 500 µm.

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FIGURE 18 in Scanning electron microscopy study of Lars Silén's cheilostome bryozoan type specimens in the historical collections of natural history museums in Sweden

FIGURE 18. Gregarinidra incrustans (Silén, 1941). Holotype UPSZTY 2473, Japan. A. Group of zooids and interzooidal avicularia. B. Close-up of an autozooid showing the bifurcating spines and an avicularium with pointed rostrum. C. Close-up of an ovicell subimmersed in the distal avicularium. Scale bars: A = 200 µm; B = 120 µm; C = 100 µm.

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FIGURE 17 in Scanning electron microscopy study of Lars Silén's cheilostome bryozoan type specimens in the historical collections of natural history museums in Sweden

FIGURE 17. Cribralaria curvirostris Silén, 1941. Holotype UPSZTY 2484, Bonin Islands, Japan. A. Group of zooids, one ovicellate, interzooidal avicularia and a kenozooid. B. Close-up of the ooecium immersed in the distal avicularium. C. Tilted view of two autozooids showing the latero-oral, prominent spines. D. Close-up of interzooidal avicularia with curved, serrated rostrum. E. Close-up of the orifice. Scale bars: A = 200 µm; B, C = 120 µm; D = 100 µm; E = 40 µm.

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FIGURE 14 in Scanning electron microscopy study of Lars Silén's cheilostome bryozoan type specimens in the historical collections of natural history museums in Sweden

FIGURE 14. Mangana incrustata (Silén, 1941) n. comb. A, B. Holotype UPSZTY 2474, Goto Islands, Japan. A. Group of zooids, two ovicellate. Arrows indicate distolateral opesial spine bases. B. Close-up of two autozooids and an avicularium. C, D. Paratype UPSZTY 191149, Bonin Islands, Japan. C. Group of zooids showing the variable appearance owing to the development or not of the calcified 'lamina'. Arrows indicate distolateral opesial spine bases. D. Ancestrula (see dashed ellipse) and first budded autozooids lacking the calcareous lamina. All scale bars are 200 µm.

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FIGURE 13 in Scanning electron microscopy study of Lars Silén's cheilostome bryozoan type specimens in the historical collections of natural history museums in Sweden

FIGURE 13. Mangana canui (Silén, 1941) n. comb. A. Paratype UPSZTY 191147, Japan. Close-up of ovicellate zooids and avicularia of different sizes. B. Paratype UPSZTY 191146, Japan. Close-up of an autozooid showing multiporous septula distally and distolaterally. Scale bars are 200 µm.

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FIGURE 28 in Scanning electron microscopy study of Lars Silén's cheilostome bryozoan type specimens in the historical collections of natural history museums in Sweden

FIGURE 28. Cellaria boninenis Silén, 1938. Lectotype (designated here) UPSZTY 2477A, Bonin Islands, Japan. A. View of internodes at branch bifurcation. B, C. Close-up of each internode in (A). D. Close-up of autozooids, the one at the bottom showing zooid reparation by intramural budding. E. Close-up of the avicularium. F. Close-up of the orifice. Scale bars: A–C = 500 µm; D = 200 µm; E = 100 µm; F = 20 µm.

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FIGURE 39 in Scanning electron microscopy study of Lars Silén's cheilostome bryozoan type specimens in the historical collections of natural history museums in Sweden

FIGURE 39. Triphyllozoon mauritzoni Silén, 1943. Paralectotype LUZM 57b (bleached), Australia. A. General view of the frontal surface. B. Close-up of autozooids. C. Group of zooids, one ovicellate. D. Autozooids at the growing edge showing a denticulate anter and up to five spine bases. E. General view of basal kenozooids. F. General view of the dorsal side. Scale bars: A = 1 mm; B, D = 150 µm; C = 250 µm; E, F = 500 µm.

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FIGURE 10 in Scanning electron microscopy study of Lars Silén's cheilostome bryozoan type specimens in the historical collections of natural history museums in Sweden

FIGURE 10. Antropora erecta Silén, 1941. Holotype UPSZTY 2455, Bonin Islands, Japan. A. Group of zooids, some ovicellate (arrowed), and interzooidal avicularia. B. Close-up of two zooids, one ovicellate, and interzooidal avicularia. C. Close-up of an ovicell and two interzooidal avicularia. D. Irregularly shaped zooids at colony bifurcation. Scale bars: A, D = 200 µm; B = 120 µm; C = 50 µm.

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