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FIGURE 3. Alcyonidium bullitum n in Korean ctenostome bryozoans-observations on living colonies, new records, five new species, and an updated checklist
FIGURE 3. Alcyonidium bullitum n. sp., Junghwadong, Baengnyeong Island. A. Very young colony encrusting sea grass with tentacle crowns expanded (MBRBKP4). B. Large multilayered colony enveloping a crab from deeper water, including its eye (BKF1). C. Another view of seagrass colony in A. D. Preserved rock-encrusting colony showing position of retracted polypides (BKF1). E. SEM image of dried surface of colony from enveloped crab, showing area with protruding orifices and tips of tentacle sheaths of many autozooids (BKF1). F. Part of crab-encrusting colony surface with mostly kenozooids, some still with bubble-like frontal membranes, others collapsed (BKF1). Scale bars: A, C = 0.50 mm; D = 0.60 mm; E, F = 0.10 mm.
FIGURE 8 in Korean ctenostome bryozoans-observations on living colonies, new records, five new species, and an updated checklist
FIGURE 8. Nolella cf. papuensis (Busk, 1886), Seongsan port, Jeju Island (MBRBK1706). A. Live colony attached to shell substratum. B. Cylindrical, translucent to opaque zooids. C. Single tentacle crown of Nolella (next to asterisk) between two larger tentacle crowns of a stolonate hydroid colony. D. Zooids at the edge of a cheilostome colony. E. Compound-microscope image of distal end of Nolella zooid showing striated cuticle. F. Same, showing portions of three zooids, with squared orifice at the distal end of the middle zooid tube. Scale bars: A = 2 mm; B, D = 1 mm; E, F = 0.20 mm.
FIGURE 2. Alcyonidium bullitum n in Korean ctenostome bryozoans-observations on living colonies, new records, five new species, and an updated checklist
FIGURE 2. Alcyonidium bullitum n. sp., Junghwadong, Baengnyeong Island (MBRBKH4). A. Live encrusting colony on intertidal rock. B. Higher-magnification view of same colony showing large orifice and outer area with bubble-like kenozooids. C. Close-up of white orifice and long tentacle sheaths of autozooids. D. View of preserved colony through compound microscope showing large dark-colored autozooids and many interspersed kenozooids. E. Part of colony with many transparent kenozooids, showing rock surface beneath. F. Compound-microscope image showing very large orifices of autozooids and a few small kenozooids. Scale bars: A = 3 mm; B, C = 1.2 mm; E = 0.60 mm; F = 0.30 mm.
FIGURE 13. Penetrantia taeanata n in Korean ctenostome bryozoans-observations on living colonies, new records, five new species, and an updated checklist
FIGURE 13. Penetrantia taeanata n. sp., Cheongpodae. A. Cast of a densely growing colony in an area heavily bored by endolithic filaments. B, C. Casts of zooids with roundly tapering to nearly pointed proximal ends and cuticular-wall striations. D. Cast of zooid showing the peduncle that connects it to the principal stolon. E. Stolon with zooid bud. Scale bars: A = 0.50 mm; B–D= 0.10 mm; E = 0.05 mm.
FIGURE 10 in Korean ctenostome bryozoans-observations on living colonies, new records, five new species, and an updated checklist
FIGURE 10. Resin casts of shell-boring colonies of Immergentia cheongpodensis n. sp. from Cheongpodae. A. Partial and complete zooid and stolon casts in a shell also heavily bored by filamentous endolithic organisms, note new zooid buds in area under the scale bar. B. Another part of colony, zooid buds under the "B" in upper right of image. C. Autozooid and stolons with branch. D. Zooid and stolon trifurcation. E. swollen gonozooid in partial profile. F. Another gonozooid. Scale bars: A, B = 0.20 mm; C–F = 0.10 mm.
FIGURE 4. Alcyonidium pulposum n in Korean ctenostome bryozoans-observations on living colonies, new records, five new species, and an updated checklist
FIGURE 4. Alcyonidium pulposum n. sp., Yeonhwa-ri, Baengnyeong Island (MBRBKH5). A. Whole live colony. B. Close-up of branch tip showing thick side walls of zooids and yellow clusters of embryos. C. View of a larger bulbous area of the colony, again showing zooids and embryo clusters. D–F. Compound-microscope images. D. Part of colony surface showing very thick lateral walls and small oral papillae. E. Several more zooids showing thick lateral walls, small orifices. F. Two zooids at higher magnification to show very thick wall structure. Scale bars: B, C = 1 mm; D, E = 0.36 mm; F = 0.25 mm.
FIGURE 7 in Korean ctenostome bryozoans-observations on living colonies, new records, five new species, and an updated checklist
FIGURE 7. Arachnoidella cf. protecta (Harmer, 1915), west of Cheongsan Island, south Sea (MBRBK1704). A. Remains of a colony encrusting subtidal rock. B. Five reconstituted zooids, showing dilatations and some caudae and peristomes. C. Cuticularized outlines of six zooids visible. D. Chain of zooids in lateral view. E. Compound-microscope image of a single detached autozooid, showing weakly irregular margins, indication of opening of peristome, and caudate proximal end. Scale bars: B–E = 0.25 mm.
FIGURE 1 in Korean ctenostome bryozoans-observations on living colonies, new records, five new species, and an updated checklist
FIGURE 1. Map of Korean Peninsula showing numbered collecting localities of ctenostome specimens used in this study. Numbers refer to the localities shown in Table 1.
FIGURE 12. Penetrantia taeanata n in Korean ctenostome bryozoans-observations on living colonies, new records, five new species, and an updated checklist
FIGURE 12. Penetrantia taeanata n. sp., Cheongpodae, various uncataloged shells. A. Low-magnification appearance of a densely growing colony. B, C. Higher-magnification views showing that, while the openings at the shell surface may look paired, the actual zooids are offset diagonally in a herringbone pattern. D, E. Variations in angle of zooid chambers within the shell. F. Part of stolon showing tubulets. Scale bars: A = 1 mm; B, C = 0.50 mm; D–F = 0.10 mm.
FIGURE 9 in Korean ctenostome bryozoans-observations on living colonies, new records, five new species, and an updated checklist
FIGURE 9. Light micrographs of various uncataloged shell-borings of Immergentia cheongpodensis n. sp. and Penetrantia taeanata n. sp. from Cheongpodae. A. Immergentia, frontal view of tear-drop-shaped excavations on bivalve shell. B. Highermagnification view of Immergentia excavations on same shell. C. Penetrantia, characteristic 'railroad-track' arrangement of seemingly paired openings either side of stolon traces in a densely bored shell. D. Borings of both species in the same shell, scattered, smaller openings of Immergentia colonies are visible in the upper less-bored half of the image. E. More-magnified Penetrantia colonies showing zooid openings and stolon traces. F. Translucent shell back-lit to show presence of Penetrantia zooid chambers beneath the openings at the shell surface. Scale bars: A = 2 mm; B = 1 mm; C = 4 mm; D = 0.20 mm.
FIGURE 17 in Korean ctenostome bryozoans-observations on living colonies, new records, five new species, and an updated checklist
FIGURE 17. Amathia cf. gracilis (Leidy, 1855), Seongsan port, Jeju Island (MBRBK1707). A. Two expanded 8-tentacled tentacle crowns and introverts of zooids attached to the sides of a hole bored in an intertidal stone. B. Zooids of another colony, the one inside hole is flicking tentacle crown tentacles to capture food particles. C. Zooids of A. gracilis to lower right of small crisiid in upper left of image.
FIGURE 16. Amathia acervata Lamouroux, 1824 in Korean ctenostome bryozoans-observations on living colonies, new records, five new species, and an updated checklist
FIGURE 16. Amathia acervata Lamouroux, 1824, Tongyeong yacht anchorage, south Sea (MBRBK1710). A. Branch clusters on stolons. B. Closer view of same area. C. Branch bifurcation and part of two zooid clusters. D. Distal part of a single cluster. Scale bars: A, B = 1.2 mm; C, D = 0.47 mm.
Observational Basket Trial to Collect Tissue to Develop and Train a Live Tumor Diagnostic Platform
ClinicalTrials.gov study NCT05520099. IPD Sharing: NO. Countries: 1. Publications: 3.
Observational Real-world Evidence (RWE) Study to Assess Patient-reported Wellbeing Using Tildrakizumab in Live Setting - POSITIVE Study
ClinicalTrials.gov study NCT04823247. IPD Sharing: NO. Countries: 1. Publications: 2.
An Observational Study to Evaluate Patient-Reported Experiences of Living With Moderate-to-Severe Plaque Psoriasis
ClinicalTrials.gov study NCT01555606. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Observational Lung Trial to Collect Tissue to Train and Validate a Live Tumor Diagnostic Platform
ClinicalTrials.gov study NCT05478538. IPD Sharing: NO. Countries: 1. Publications: 6.
Fig. 10. Stephanella hina Oka, 1908. A in Freshwater bryozoans of Korea-observations on living colonies and three new records
Fig. 10. Stephanella hina Oka, 1908. A, Colony (white arrow); B, Dorsal view, floatoblast. Scale bars: A = 3 mm; B = 100 μm.
Fig. 6 in Freshwater bryozoans of Korea-observations on living colonies and three new records
Fig. 6. Plumatella fungosa (Pallas, 1768). A, Dorsal view, flatoblast; B, Ventral view, flatoblast; C, Annulus and fenestra in detail; D, Sessoblast. Scale bars: A, B, D = 100 μm, C = 30 μm.
Fig. 3 in Freshwater bryozoans of Korea-observations on living colonies and three new records
Fig. 3. Fredericella sultana (Blumenbach, 1779). A, Colonies (white arrows); B, Piptoblasts (black arrows), within colony; C, D, Piptoblast. Scale bars: A = 1 cm, B = 1 mm, C = 300 μm, D = 100 μm.
A Post Marketing Observational Study of Activities of Daily Living in Advanced Parkinson's Disease Patients With Early Troublesome Motor Fluctuations and Treated With Duodopa - a Multi-country Study
ClinicalTrials.gov study NCT01747655. IPD Sharing: Not stated. Countries: 0. Publications: 0.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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
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.