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612 results for “Croatia”
Fig. 41. A–D. Turbicellepora avicularis. A in Northern Adriatic Bryozoa From The Vicinity Of Rovinj, Croatia
Fig. 41. A–D. Turbicellepora avicularis. A. general aspect (AMNH 996; 0.5 mm). B. autozooid (top left), maternal zooid with ovicell (top center) and (bottom center) vicarious avicularium (AMNH 997; 0.1 mm). C. reparative budding of autozooid within vicarious avicularium (AMNH 998; 0.1 mm). D. autozooidal orifice (AMNH 996; 0.05 mm). E–H. Turbicellepora camera (AMNH 999). E. general aspect (0.5 mm). F. autozooids and (top center) vicarious avicularium (0.1 mm). G. ontogenetically old autozooid with multiple vicarious avicularia (0.1 mm). H. autozooidal aperture (0.05 mm).
Fig. 42. A–F. Reteporella grimaldii. A in Northern Adriatic Bryozoa From The Vicinity Of Rovinj, Croatia
Fig. 42. A–F. Reteporella grimaldii. A. Delicate colony from within Cellaria meadow (AMNH 1000; 1 mm). B. Robust colony from more exposed locality (AMNH 1001; 1 mm). C. Maternal zooids with partially immersed ovicells (AMNH 1000; 0.1 mm). D. Oblique view of colony surface with autozooids and dimorphic adventitious avicularia (AMNH 1002; 0.1 mm). E. Autozooids (right) and maternal zooids with incompletely formed ovicells (AMNH 1002; 0.1 mm). F. Reverse surface with kenozooids and dimorphic avicularia (AMNH 1001; 0.2 mm).
Fig. 63. Patinella radiata. A in Northern Adriatic Bryozoa From The Vicinity Of Rovinj, Croatia
Fig. 63. Patinella radiata. A. Ontogenetic increase in tentacle and introvert length: Filled circles plot maximum tentacle length within lophophores (Y = 182.581 + 0.300X) and open circles plot lengths of exposed portions of introverts (Y = ‾3.267 + 0.036X). B. Ontogenetic increase in maximum lophophore diameter (Y = 201.918 + 0.26X).
Fig. 40. A–D. Celleporina siphuncula. A in Northern Adriatic Bryozoa From The Vicinity Of Rovinj, Croatia
Fig. 40. A–D. Celleporina siphuncula. A. General aspect (paratype, AMNH 990; 0.5 mm). B. Autozooids and maternal zooids with ovicells (holotype, AMNH 989; 0.1 mm). C. Vicarious avicularia (holotype, AMNH 989; 0.1 mm). D. Autozooidal orifice (holotype, AMNH 989). E–G. Celleporina tubulosa (AMNH 995). E. General aspect (0.5 mm). F. Maternal zooids with ovicells and (top right) vicarious avicularium (0.1 mm). G. Autozooidal orifice (0.05 mm).
Fig. 39. A–D. Celleporina caminata. A in Northern Adriatic Bryozoa From The Vicinity Of Rovinj, Croatia
Fig. 39. A–D. Celleporina caminata. A. general aspect (AMNH 986; 0.5 mm). B. oblique view of colony surface (AMNH 987; 0.1 mm). C. ontogenetically young autozooid (top right), maternal zooid with ovicell (left) and (bottom right) vicarious avicularium (AMNH 986; 0.1 mm). D. autozooidal orifice (AMNH 986; 0.05 mm). E–G. Celleporina canariensis (AMNH 988). E. general aspect (0.5 mm). F. maternal zooids with ovicells and (top left) vicarious avicularium (0.1 mm). G. autozooidal orifice (0.05 mm).
Fig. 33. A–C in Northern Adriatic Bryozoa From The Vicinity Of Rovinj, Croatia
Fig. 33. A–C. Escharina dutertrei protecta (AMNH 968). A. General aspect of untreated colony (0.05 mm). B. Autozooid, with mandibular setae of vicarious avicularia crossed distal to orifice (0.1 mm). C. Maternal zooid with ovicell and setae as in Fig. 33B (0.1 mm). D–G. Margaretta cereoides (AMNH 969). D. Branch segment (1 mm). E. General aspect (0.5 mm). F. Autozooidal orifice (0.1 mm). G. Peristomebearing zooid (0.2 mm).
Fig. 35. A–D in Northern Adriatic Bryozoa From The Vicinity Of Rovinj, Croatia
Fig. 35. A–D. Hagiosynodos latus (BMNH 2001.1.26.20; Western Channel, U.K.). A. General aspect (0.5 mm). B. Autozooids (0.1 mm). C. Maternal zooid with ovicell (0.1 mm). D. Autozooidal orifice (0.05 mm). E–H. Hagiosynodos kirchenpaueri.E. General aspect (lectotype, UIIZ 244; 0.5 mm). F. Autozooids (AMNH 966; 0.1 mm). G. Maternal zooid with ovicell (AMNH 966; 0.1 mm). H. Autozooidal orifice (AMNH 966; 0.05 mm).
Fig. 38. A–D. Cellepora adriatica. A in Northern Adriatic Bryozoa From The Vicinity Of Rovinj, Croatia
Fig. 38. A–D. Cellepora adriatica. A. General aspect (holotype, AMNH 982; 0.5 mm). B. Oblique view of colony surface (holotype, AMNH 982; 0.1 mm). C. Maternal zooids, upper one with complete ovicell, lower with partially formed ovicell (holotype, AMNH 982; 0.1 mm). D. Autozooidal orifice (paratype, AMNH 983; 0.05 mm). E–G. Buskea nitida.E. General aspect (AMNH 984; 0.5 mm). F. Maternal zooid with partially submerged ovicell (AMNH 985; 0.1 mm). G. Two autozooidal orifices (AMNH 984; 0.05 mm).
Fig. 32. A–D in Northern Adriatic Bryozoa From The Vicinity Of Rovinj, Croatia
Fig. 32. A–D. Schizoporella cf. S. tetragona (AMNH 966). A. General aspect (0.5 mm). B. Autozooid (0.1 mm). C. Maternal zooid with ovicell (0.1 mm). D. Autozooidal orifice (0.05 mm). E–I. Escharina vulgaris. E. General aspect (AMNH 967; 0.5 mm). F. Autozooid (AMNH 967; 0.1 mm). G. Untreated autozooids with setaelike mandibles of avicularia (type specimen of Lepralia botterii, UIIZ 217; 0.1 mm). H. Oblique view of autozooidal orifice (AMNH 967; 0.05 mm). I. Ancestrula (lower right) and early autozooids (AMNH 947; 0.1 mm).
Fig. 34. A–D in Northern Adriatic Bryozoa From The Vicinity Of Rovinj, Croatia
Fig. 34. A–D. Myriapora truncata (AMNH 970). A. Truncated branch tip (1 mm). B. General aspect with autozooids and maternal zooids with embedded ovicells (0.5 mm). C. Autozooidal orifice (0.1 mm). D. Maternal zooid orifice (0.1 mm). E–G. Calyptotheca rugosa (AMNH 971). E. General aspect (0.5 mm). F. Autozooid (0.1 mm). G. Ancestrula (0.1 mm).
Fig. 31. A–E. Schizoporella dunkeri. A in Northern Adriatic Bryozoa From The Vicinity Of Rovinj, Croatia
Fig. 31. A–E. Schizoporella dunkeri. A. General aspect (AMNH 891; 0.5 mm). B. Autozooid with large adventitious avicularium adjacent to orifice (AMNH 891; 0.1 mm). C. Untreated specimen with mandibles and polypide rudiment preserved in avicularia (AMNH 963; 0.1 mm). D. Maternal zooid with ovicell (AMNH 891; 0.1 mm). E. Autozooidal orifice (AMNH 963; 0.05 mm). F–J. Schizoporella magnifica. F. General aspect (AMNH 964; 0.5 mm). G. Autozooid (AMNH 964; 0.1 mm). H. Maternal zooid with ovicell (AMNH 964; 0.1 mm). I. Autozooidal orifice (AMNH 964; 0.05 mm). J. Ancestrula (lower left) and early autozooids (AMNH 965; 0.1 mm).
Fig. 36. A–D. Hagiosynodos hadros. A in Northern Adriatic Bryozoa From The Vicinity Of Rovinj, Croatia
Fig. 36. A–D. Hagiosynodos hadros. A. general aspect (holotype, AMNH 972; 0.5 mm). B. Autozooid (holotype, AMNH 972; 0.1 mm). C. Naternal zooid with ovicell (holotype, AMNH 972; 0.1 mm). D. Autozooidal orifice (paratype, AMNH 973; 0.05 mm). E, F. Cryptosula pallasiana (AMNH 974). E. General aspect (0.5 mm). F. Autozooid (0.1 mm).
Fig. 26. A–D. Schizomavella cornuta. A in Northern Adriatic Bryozoa From The Vicinity Of Rovinj, Croatia
Fig. 26. A–D. Schizomavella cornuta. A. General aspect (neotype, UIIZ 270; 0.5 mm). B. Orifice of autozooid (neotype, UIIZ 270; 0.05). C. autozooids and kenozooid (bottom right), with variablesized suboral avicularia (AMNH 949; 0.1 mm). D. Maternal zooids with ovicells (AMNH 895; 0.1 mm). E– G. Schizomavella linearis (AMNH 950). E. General aspect (0.5 mm). F. Autozooids and (bottom center) maternal zooid with ovicell (0.1 mm). G. autozooidal orifice (0.05 mm).
Fig. 22. A–C in Northern Adriatic Bryozoa From The Vicinity Of Rovinj, Croatia
Fig. 22. A–C. Smittina cervicornis (AMNH 940). A. General aspect (0.5 mm). B. Autozooid (0.1 mm). C. Autozooidal orifice (0.05 mm). D–H. Prenantia cheilostoma.D. General aspect (AMNH 941; 0.5 mm). E. Maternal zooid with ovicell (AMNH 941; 0.1 mm). F. Autozooidal orifice (AMNH 942; 0.05 mm). G. Ancestrula (AMNH 932; 0.1 mm). H. Early autozooids surrounding orifice (center) of ancestrula covered by autozooids (AMNH 941; 0.1 mm).
Fig. 21. A–C in Northern Adriatic Bryozoa From The Vicinity Of Rovinj, Croatia
Fig. 21. A–C. Umbonula ovicellata (AMNH 937). A. General aspect (0.5 mm). B. Orifices of ontogenetically young autozooids with suboral avicularia (0.2 mm). C. Ontogenetically mature maternal zooids with ovicells (0.1 mm). D–G. Parasmittina rouvillei. D. General aspect (AMNH 938; 0.5 mm). E. Autozooids (upper right), maternal zooids with ovicells (lower left), and variablesized vicarious avicularia (AMNH 938; 0.2 mm). F. Autozooidal orifice (AMNH 939; 0.05 mm). G. Orificial condyle (AMNH 939; 0.01 mm).
Fig. 17. A–C. Puellina hincksi. A in Northern Adriatic Bryozoa From The Vicinity Of Rovinj, Croatia
Fig. 17. A–C. Puellina hincksi. A. General aspect (AMNH 901; 0.5 mm). B. Autozooid flanked by avicularia (AMNH 901; 0.1 mm). C. Two maternal zooids with ovicells (AMNH 927; 0.1 mm). D–F. Savignyella lafontii (AMNH 928). D. General aspect (0.5 mm). E. Distal portion of autozooid with aberrant, elongate, twisted suboral avicularium (0.1 mm). F. lateral view of distal end of zooid with intact oral spines and normal suboral avicularium (0.1 mm).
Fig. 25. A–E. Pentapora fascialis. A in Northern Adriatic Bryozoa From The Vicinity Of Rovinj, Croatia
Fig. 25. A–E. Pentapora fascialis. A. General aspect (AMNH 945; 0.5 mm). B. Autozooid (AMNH 946; 0.1 mm). C. Maternal zooid with partially calcified ovicell and small suboral avicularium (AMNH 945; 0.1 mm). D. Autozooid with large suboral avicularium (AMNH 947; 0.1 mm). E. straight colony margin generated by kenozooids (AMNH 945; 0.5 mm). F–H. Schizomavella asymetrica (AMNH 948). F. General aspect (0.5 mm). G. Autozooid (right) and (center) maternal zooid with ovicell (0.1 mm). H. Autozooidal orifice (0.05 mm).
Fig. 14. A–E. Rosseliana rosselii. A in Northern Adriatic Bryozoa From The Vicinity Of Rovinj, Croatia
Fig. 14. A–E. Rosseliana rosselii. A. General aspect (AMNH 1053; 0.5 mm). B. Autozooid (AMNH 1053; 0.1 mm). C. Maternal zooid with largely immersed ovicell (AMNH 1054; 0.1 mm). D. Growing edge of colony (AMNH 1055; 0.10 mm). E. Ancestrula and early autozooids (AMNH 1055; 0.2 mm).
Fig. 20. A–E. Adeonella pallasii. A in Northern Adriatic Bryozoa From The Vicinity Of Rovinj, Croatia
Fig. 20. A–E. Adeonella pallasii. A. General aspect (lectotype, UIIZ 169; 1 mm). B. Untreated autozooids (lectotype, UIIZ 169; 0.2 mm). C. Ontogenetically young autozooids at branch tip (AMNH 934; 0.1 mm). D. Autozooidal orifice (AMNH 935; 0.05 mm). E. Autozooid (AMNH 936; 0.1 mm). F–H. Escharoides mamillata (AMNH 895). F. General aspect (0.2 mm). G. Autozooid (0.1 mm). H. Maternal zooid with ovicell, flanked by two avicularia (0.1 mm).
Fig. 10. A, B in Northern Adriatic Bryozoa From The Vicinity Of Rovinj, Croatia
Fig. 10. A, B. Beania magellanica (AMNH 907). A. General aspect (0.5 mm). B. Autozooid with paired lateral stalked avicularia (0.1 mm). C, D. Beania mirabilis. (AMNH 908) C. Frontal view of single zooid (0.1). D. Lateral view of single zooid (0.1 mm). E, F. Synnotum aegyptiacum (AMNH 909). E. Uniserial erect branch (0.5 mm). F. Single zooid (0.1 mm). G–I. Scrupocellaria delilii (AMNH 910). G. Frontal surface of two biserial branches (0.5 mm). H. Reverse surface of untreated branch; vibracular setae visible (0.5). I. Autozooid with scutum, single outer and paired inner distal spines, and lateral avicularium (0.1 mm).
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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
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
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