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309
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309 results for “Yellow Sea”
FIGURES 50–53. Microeciella parvoris n in Cyclostome bryozoans from Qingdao, South Yellow Sea, China
FIGURES 50–53. Microeciella parvoris n. sp. Jiaozhou Bay. 50. Holotype MBM 284365, showing the position of the minute gonozooid. 51, 52. Paratype MBM 092366. 51. Minute gonozooid on the margin of the colony with an oval ooeciopore attached to the autozooidal tube. 52. Gonozooid showing a more circular ooeciopore. 53. Holotype MBM 284365, marginal gonozooid with a circular ooeciopore. Scale bars: 50 = 1 mm; 51–53 = 100 µm.
FIGURES 46–49. Hemipustulopora tuoyuan n in Cyclostome bryozoans from Qingdao, South Yellow Sea, China
FIGURES 46–49. Hemipustulopora tuoyuan n. sp. Jiaozhou Bay. 46, 47. Holotype MBM 284503. 46. Very large gonozooid. 47. Detail of the pseudopores. 48. Paratype MBM 284360, detail of the elongate ooeciopore attached to the autozooidal tube. 49. Paratype MBM 284358, dorsal side of the colony showing minute pseudopores. Scale bars: 46, 49 = 1 mm; 47 = 10 µm; 48 = 100 µm.
FIGURES 11–15. Tubulipora perforata n in Cyclostome bryozoans from Qingdao, South Yellow Sea, China
FIGURES 11–15. Tubulipora perforata n. sp. from Jiaozhou Bay (Qingdao). 11, 12. Holotype MBM 284359 from Jiaozhou Bay. 11. Autozooids arranged in fascicles of 2–10 autozooidal tubes. 12. Part of the gonozooecium and ooeciopore. 13. MBM 284369, colony with marginal autozooids. 14. MBM 284490, protoecium with smooth margins. 15. MBM 284346, oval ooeciopore adjacent to the proximal margin of the closest distal autozooidal tube. Scale bars: 11, 13 = 1 mm; 12, 14, 15 = 100 µm.
FIGURES 7–10 in Cyclostome bryozoans from Qingdao, South Yellow Sea, China
FIGURES 7–10. Tubulipora similis Liu in Liu, Yin & Ma, 2001, specimens MBM 284496 from First Bathing Beach. 7. General view of the specimen. 8. Protoecium. 9, 10. Gonozooid and details of the ooeciopore. Scale bars: 7 = 1 mm; 8–10 = 100 µm.
FIGURES 16–21. Exidmonea intercalata n in Cyclostome bryozoans from Qingdao, South Yellow Sea, China
FIGURES 16–21. Exidmonea intercalata n. sp. Lingshan Island. 16–18. Holotype MBM 284444 from Lingshan Island. 16. General view showing the position of gonozooids. 17. Detail of the gonozooid situated at bifurcation. 18. Detail of the ooeciopore hidden between bifurcating branches and forming a down-curved, swan-neck shape. 19. Paratype MBM 284470, showing the position of the gonozooid and cross-section of the triangular branch. 20. Dorsal side of specimens MBM 284469, showing circular pseudopores. 21. Paratype MBM 284470, detail of the ooeciopore. Scale bars: 16 = 1 mm; 17–21 = 100 µm.
FIGURES 36–39. Qingdaoella conaria n in Cyclostome bryozoans from Qingdao, South Yellow Sea, China
FIGURES 36–39. Qingdaoella conaria n. sp. Lingshan Island. 36, 37. Holotype MBM 284351. 36. Autozooidal apertures in uniserial fascicles. 37. Detail of the short, conical ooeciostome, directed frontally. 38, 39. Paratype MBM 284352. 38. Detail of the gonozooid and ooeciopore. 39. Protoecium with smooth margins and a flat frontal part. Scale bars: 36–39 = 100 µm.
FIGURES 3–6. Crisia guang n in Cyclostome bryozoans from Qingdao, South Yellow Sea, China
FIGURES 3–6. Crisia guang n. sp. 3, 4. Holotype MBM 284486 from Yangkou (Laoshan). 5, 6. Paratypes MBM 284371 and MBM 284372 from Lingshan Island (Jiaonan), showing the frontally oriented, oval ooeciopore with straight distal margins. Scale bars: 3, 4 = 1 mm; 5, 6 = 100 µm.
FIGURES 32–35 in Cyclostome bryozoans from Qingdao, South Yellow Sea, China
FIGURES 32–35. Qingdaoella concinna (MacGillivray, 1885) n. comb. First Bathing Beach. 32–34. MBM 284494. 32. Long autozooidal tubes, with apertures in alternating, quincuncial series. 33. Detail of the slender, long, erect ooeciostome with the circular ooeciopore. 34. Position of the wide gonozooid spread among 6–8 autozooids and perforated by autozooidal tubes. 35. MBM 284495, detail of the proximally oriented ooeciostome situated near the distal edge of the gonozooid. Scale bars: 32–35 = 100 µm.
FIGURES 1–2 in Cyclostome bryozoans from Qingdao, South Yellow Sea, China
FIGURES 1–2. Filicrisia cf. allooeciata Liu in Liu, Yin & Ma, 2001, specimen MBM 092324, Jiaozhou Bay (Qingdao), 5 m depth on stone. 1. General view of the infertile colony. 2. Detail of bifurcation showing the wider part of the colony before bifurcation. Scale bars: 1 = 1 mm; 2 = 100 µm.
FIGURES 43–45 in Cyclostome bryozoans from Qingdao, South Yellow Sea, China
FIGURES 43–45. Nevianipora pulcherrimoidea (Liu in Liu, Yin & Ma, 2001) n. comb. Lingshan Island. 43. MBM 284478, general view showing the arrangement of autozooids. 44, 45. MBM 284335 and MBM 284447, details of two gonozooids with an oval ooeciopore and ooeciostome with extended lips. Scale bars: 43 = 1 mm; 44, 45 = 100 µm.
FIGURES 22–25. Idmidronea erecta n in Cyclostome bryozoans from Qingdao, South Yellow Sea, China
FIGURES 22–25. Idmidronea erecta n. sp. Lingshan Island. 22–24. Holotype MBM 284448. 22. General view showing the position of the gonozooid. 23. Detail of the ooeciopore with a straight peristome arranged between regular autozooidal apertures. 24. Dorsal side of the colony showing kenozooids on the distal margin and minute pseudopores. 25. Paratype MBM 284471, detail of the gonozooid situated frontally between the fascicles. Scale bars: 22, 24 = 1 mm; 23, 25 = 100 µm.
FIGURES 26–31. Qingdaoella miaotiao n in Cyclostome bryozoans from Qingdao, South Yellow Sea, China
FIGURES 26–31. Qingdaoella miaotiao n. sp. Lingshan Island. 26–29. Holotype MBM 284350. 26. Colony showing the lobate growth and the position of gonozooids. 27. Extended gonozooid. 28. Detail of the long, tubular ooeciostome directed distally. 29. Discoidal, large protoecium with smooth margins. 30–31. Paratype MBM 284353, detail of the distally directed long ooeciostome, with the circular ooeciopore. Scale bars: 26–31 = 100 µm.
FIGURES 40–42 in Cyclostome bryozoans from Qingdao, South Yellow Sea, China
FIGURES 40–42. Nevianipora rugatata (Liu in Liu, Yin & Ma, 2001) n. comb. Lingshan Island. 40. MBM 284446, general view showing the arrangement of autozooids. 41, 42. MBM 284477, details of the gonozooid with a circular ooeciopore. Scale bars: 40 = 1 mm; 41, 42 = 100 µm.
FIGURE 3 in Two new species, Parabathylaimus gracilis sp. nov. and Belbolla sinica sp. nov (Nematoda: Enoplida), from Yangma Island of the Yellow Sea, China
FIGURE 3. Belbolla sinica sp. nov. A. Lateral view of male anterior region (holotype); B. Lateral view of female anterior region (19YMD2-2-49); C. Lateral view of male anterior region, showing buccal cavity (holotype); D. Lateral view of male posterior body, showing spicules, gubernaculum and precloacal supplements (holotype); E. Lateral view of female posterior body (19YMD2-2-49); F. Lateral view of female entire body; showing vulva (19YMD2-2-49). Scales: A, B, D and F=50 µm; C=20 µm; E=30 µm.
FIGURE 2 in Two new species, Parabathylaimus gracilis sp. nov. and Belbolla sinica sp. nov (Nematoda: Enoplida), from Yangma Island of the Yellow Sea, China
FIGURE 2. Parabathylaimus gracilis sp. nov. A. Lateral view of male anterior region, showing cephalic setae and buccal cavity (holotype); B. Lateral view of male anterior region, showing amphidial fovea (holotype); C. Lateral view of male posterior region, showing spicules (holotype); D. Lateral view of male posterior region, showing gubernaculum (arrow showing distal projection) (holotype). Scales: 30 μm.
FIGURE 4 in Two new species, Parabathylaimus gracilis sp. nov. and Belbolla sinica sp. nov (Nematoda: Enoplida), from Yangma Island of the Yellow Sea, China
FIGURE 4. Belbolla sinica sp. nov. A. Lateral view of male anterior region, showing buccal cavity and anterior end (holotype); B. Lateral view of male anterior region, showing subcephalic setae (holotype); C. Lateral view of male pharynx region, showing pharynx bulbs (holotype); D. Lateral view of male posterior portion, showing spicules and gubernaculums (holotype); Lateral view of male posterior portion, showing precloacal supplements (holotype);. Scales: A and B =20 μm; C, D and E =30 μm.
FIGURE 1 in Two new species, Parabathylaimus gracilis sp. nov. and Belbolla sinica sp. nov (Nematoda: Enoplida), from Yangma Island of the Yellow Sea, China
FIGURE 1. Parabathylaimus gracilis sp. nov. A. Lateral view of male pharyngeal region (holotype); B. Lateral view of male anterior region, showing buccal cavity, amphidial fovea and cephalic setae (holotype); C. Lateral view of female pharyngeal region (19YMD2-2-30); D. Lateral view of female posterior body (19YMD2-2-30); E. Lateral view of male posterior body, showing spicules and gubernaculum (holotype); F. Lateral view of spicules and gubernaculum (holotype); G. Lateral view of female entire body; showing vulva (19YMD2-2-30). Scales: A, C and D=50 µm; B, E and F=30 µm; G=100 µm.
Sediment exchange between southern Yellow Sea and Yangtze River Estuary in response to storm events
<p>Sediment exchange pattern between Yangtze River Estuary and southern Yellow Sea has been a crucial and controversial scientific question, which limits our understanding on the future prediction of morphological evolution of the radical sand ridges and Jiangsu tidal flats. This study investigates various processes including tides, winds and waves to identify a dominant factor controlling sediment exchange between the southern Yellow Sea and the Yangtze River Estuary under storm conditions using a validated numerical model. Our results show that tide is the dominant force controlling hydrodynamics and sediment transport between the two systems. Tide controlled residual currents and sediment fluxes are towards northwest from the Yangtze River Estuary to the southern Yellow Sea, while wind and wave-induced currents under normal wind condition (Beaufort 3 scale, 3.4m s<sup>-1</sup>) adjust net sediment flux by less than 10% and 40%, respectively. The influences of winds and waves on sediment transport vary with wind directions. South or southeast winds enhance the tide-induced northwestward sediment transport, while north or northeast winds reduce the northwestward sediment transport. Under strong winter storm condition, however, the associated northern winds and waves become more important than tides in sediment transport, leading to southeastern directed residual currents and net sediment fluxes. Sediment transport is more active in nearshore area than offshore areas, with little vertical variations.</p>
FIGURE 4 in Morphological and molecular evidence reveals a new species of Anteaeolidiella (Mollusca, Nudibranchia, Aeolidiidae) from the Yellow Sea, China
FIGURE 4. Anteaeolidiella decorus sp. nov. (MBM Op-21092901). A. Jaw; B. detailed view of the masticatory border; C, D. radular teeth. Scale bar = 100 μm.
FIGURE 3 in Morphological and molecular evidence reveals a new species of Anteaeolidiella (Mollusca, Nudibranchia, Aeolidiidae) from the Yellow Sea, China
FIGURE 3. Anteaeolidiella decorus sp. nov. A. Holotype, Op-21092901, live animal, 2.5 cm in length; B. In situ photo of holotype; C. Op-21100301, 2.0 cm; D. Op-21101301, 2.5 cm; E. In situ photo of spawning; F. Egg mass.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
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