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242 results for “Sea of Okhotsk”

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Fig. 7 in Thoridae (Crustacea: Decapoda) can penetrate the Abyss: a new species of Lebbeus from the Sea of Okhotsk, representing the deepest record of the family

Fig. 7. Phylogenetic relationships within Thoridae (Hippolyte Leach, 1814 as outgroup) based on COI mtDNA gene markers. Bootstrap support (> 50%) is shown by the numbers along the branches (BA/ML analysis). Line thickness is also correlated with support values.

opencc-by-4.0Feb 2020View details →
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Fig. 4 in Thoridae (Crustacea: Decapoda) can penetrate the Abyss: a new species of Lebbeus from the Sea of Okhotsk, representing the deepest record of the family

Fig. 4. Lebbeus sokhobio sp. nov., ♀ from st. 4-3 (paratype, ZMMU Ma6097) (A–H, J–K, M) and ♂ from st. 4-9 (paratype, SMF 51579) (I, L). A. Basal segments of pereiopods I–III. B. Maxilliped III. C. Antepenultimate segment of maxilliped III. D. Pereiopod I. E. Chela of pereiopod I. F. Proximal segments of pereiopod I. G. Pereiopod II. H. Pereiopod III. I. Merus of pereiopod III. J. Dactylus of pereiopod III. K. Pereiopod IV. L. Merus of pereiopod IV. M. Pereiopod V.

opencc-by-4.0Feb 2020View details →
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Fig. 2 in Thoridae (Crustacea: Decapoda) can penetrate the Abyss: a new species of Lebbeus from the Sea of Okhotsk, representing the deepest record of the family

Fig. 2. Lebbeus sokhobio sp. nov., general view, ♀ from st. 4-3 (paratype, ZMMU Ma6097) and ♂ from st. 4-9 (paratype, SMF 51579).

opencc-by-4.0Feb 2020View details →
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Fig. 3 in Thoridae (Crustacea: Decapoda) can penetrate the Abyss: a new species of Lebbeus from the Sea of Okhotsk, representing the deepest record of the family

Fig. 3. Lebbeus sokhobio sp. nov., ♀ from st. 4-3 (paratype, ZMMU Ma6097) (A–I) and ♂ from st. 4-10 (paratype, MIMB 39426) (J–K). A–B. Anterior part of carapace. C. Abdominal pleonites IV–V, lateral view. D–E. Antennula. F. Antenna. G. Telson and uropods. H. Distal margin of telson. I. Distolateral margin of exopod. J. Endopod of pleopod I. K. Endopod of pleopod II.

opencc-by-4.0Feb 2020View details →
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Figure 3 in Harpacticoida (Copepoda) of the northern East Sea (the Sea of Japan) and the southern Sea of Okhotsk: diversity, taxocenes, and biogeographical aspects

Figure 3. Biogeographical structure of the faunas from the three main species complexes in the East Sea and the southern part of the Sea of Okhotsk. Relative species abundances with different distribution ranges are presented.

opencc-by-4.0Jun 2015View details →
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Figure 4 in Inter-oceanic comparison of planktonic copepod ecology (vertical distribution, abundance, community structure, population structure and body size) between the Okhotsk Sea and Oyashio region in autumn

Figure 4. Copepod species composition (centre) and copepodid stage structures of the dominant species (left: Oyashio region, right: Okhotsk Sea). All data are integrated means of a 0– 500 m water column based on the IONESS samples in the Oyashio region (St. 19) and Okhotsk Sea (St. OK24) from October to November 1996. Error bars for the copepodid stage indicate standard deviations of each daily duplicate.

opencc-by-4.0Jun 2015View details →
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Figure 3 in Inter-oceanic comparison of planktonic copepod ecology (vertical distribution, abundance, community structure, population structure and body size) between the Okhotsk Sea and Oyashio region in autumn

Figure 3. Vertical distribution of zooplankton biovolume in the Oyashio region (upper panels) and Okhotsk Sea (lower panels) from September to December in 1996–1998. Note that the biovolume axes are not the same between panels. Tc: thermocline.

opencc-by-4.0Jun 2015View details →
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Fig. 8 in New species of deep-sea Heteropolypus soft corals (Anthozoa: Octocorallia) from the Kurile Islands, Sea of Okhotsk (Northwest Pacific), with summary data on distinctive characters of the known species of the genus

Fig. 8. Heteropolypus roseus sp. nov., holotype (MIMB 42495); sclerites from the autozooid pharynx, anthocodiae, and the colony body. A. Waisted plates. B. Rods. C. Anthocodiae capstans. D. Capitulum surface capstans. E. Stalk surface capstans. F. Needles. G. Ends of the same needle. Scale bars: A–F = 0.1 mm; G = 0.02 mm.

opencc-by-4.0Mar 2022View details →
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Fig. 7 in New species of deep-sea Heteropolypus soft corals (Anthozoa: Octocorallia) from the Kurile Islands, Sea of Okhotsk (Northwest Pacific), with summary data on distinctive characters of the known species of the genus

Fig. 7. Heteropolypus roseus sp. nov., holotype (MIMB 42495); sclerites from the autozooid tentacles. A. Waisted plates. B. Plates. C. Plates with diagonal keel. D. Asymmetrical plates. E. Club-like spindle. F. Clubs. G. Warty spindles. H. Capstans. Scale bar = 0.1 mm.

opencc-by-4.0Mar 2022View details →
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Fig. 6 in New species of deep-sea Heteropolypus soft corals (Anthozoa: Octocorallia) from the Kurile Islands, Sea of Okhotsk (Northwest Pacific), with summary data on distinctive characters of the known species of the genus

Fig. 6. Heteropolypus roseus sp. nov., holotype (MIMB 42495), Kurile Islands, Sea of Okhotsk. A. Whole specimen. B. Surface of the capitulum. C. Section of the capitulum; 1 = mesozooid. Scale bars: A = 10 mm; C = 1 mm.

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Fig. 5 in New species of deep-sea Heteropolypus soft corals (Anthozoa: Octocorallia) from the Kurile Islands, Sea of Okhotsk (Northwest Pacific), with summary data on distinctive characters of the known species of the genus

Fig. 5. Heteropolypus annae sp. nov., paratype (MIMB 42494); sclerites from the autozooid pharynx, anthocodiae, and the colony body. A. Waisted plates. B. Waisted rods. C. Anthocodiae capstans. D. Capitulum surface capstans. E. Stalk surface capstans. F. Needles. G. Ends of the same needle. Scale bars: A–F = 0.1 mm; G = 0.02 mm.

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Fig. 4 in New species of deep-sea Heteropolypus soft corals (Anthozoa: Octocorallia) from the Kurile Islands, Sea of Okhotsk (Northwest Pacific), with summary data on distinctive characters of the known species of the genus

Fig. 4. Heteropolypus annae sp. nov., paratype (MIMB 42494); sclerites from the autozooid tentacles. A. Waisted plates. B. Plates. C. Flanged spindles. D. Warty spindles. E. Club-like spindle. F. Clubs. G. Capstans. H. Slender capstans. Scale bar = 0.1 mm.

opencc-by-4.0Mar 2022View details →
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Fig. 3 in New species of deep-sea Heteropolypus soft corals (Anthozoa: Octocorallia) from the Kurile Islands, Sea of Okhotsk (Northwest Pacific), with summary data on distinctive characters of the known species of the genus

Fig. 3. Heteropolypus annae sp. nov., holotype (MIMB 42493); sclerites from the autozooid pharynx, anthocodiae, and colony body. A. Waisted plates. B. Waisted rods. C. Anthocodiae capstans. D. Capitulum surface capstans. E. Stalk surface capstans. F. Needles. G. Ends of the same needle. Scale bars: A–F = 0.1 mm; G = 0.02 mm.

opencc-by-4.0Mar 2022View details →
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Fig. 2 in New species of deep-sea Heteropolypus soft corals (Anthozoa: Octocorallia) from the Kurile Islands, Sea of Okhotsk (Northwest Pacific), with summary data on distinctive characters of the known species of the genus

Fig. 2. Heteropolypus annae sp. nov., holotype (MIMB 42493); sclerites from the autozooid tentacles. A. Waisted plates. B. Plates. C. Flanged spindles. D. Warty spindles. E. Club-like spindle. F. Clubs. G. Capstans. H. Slender capstans. Scale bar = 0.1 mm.

opencc-by-4.0Mar 2022View details →
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Fig. 1 in New species of deep-sea Heteropolypus soft corals (Anthozoa: Octocorallia) from the Kurile Islands, Sea of Okhotsk (Northwest Pacific), with summary data on distinctive characters of the known species of the genus

Fig. 1. Heteropolypus annae sp. nov. A. Holotype (MIMB 42493), Kurile Islands, Sea of Okhotsk. View from above. B. Holotype (MIMB 42493), Kurile Islands, Sea of Okhotsk. View from below. C. One specimen, Kurile Islands, Sea of Okhotsk (MIMB 42496). D. One specimen, Kurile Islands, Sea of Okhotsk (MIMB 42496). E. Paratype (MIMB 42494), Kurile Islands, Sea of Okhotsk. F. Holotype (MIMB 42493); section of the capitulum; 1 = autozooid, 2 = mesozooid. G. Holotype (MIMB 42493); surface of the capitulum; 1 = mesozooids. Scale bars: A–E = 10 mm; F–G = not to scale.

opencc-by-4.0Mar 2022View details →
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Рис. 3. Buccinum pemphigus на дне (ст. 13, гл. 778 м). Fig. 3. Buccinum pemphigus on the bottom (st. 13, depth 778 m). in Rare and interesting deep-sea finds of the buccinid gastropods (Gastropoda: Buccinidae) from the Sea of Okhotsk

Рис. 3. Buccinum pemphigus на дне (ст. 13, гл. 778 м). Fig. 3. Buccinum pemphigus on the bottom (st. 13, depth 778 m).

opencc-by-4.0Dec 2015View details →
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Рис. 1. Места отбора проб телеуправлЯемым подводным аппаратом в Охотском море. Fig. 1. The map of the studied area in the Sea of Okhotsk. in Rare and interesting deep-sea finds of the buccinid gastropods (Gastropoda: Buccinidae) from the Sea of Okhotsk

Рис. 1. Места отбора проб телеуправлЯемым подводным аппаратом в Охотском море. Fig. 1. The map of the studied area in the Sea of Okhotsk.

opencc-by-4.0Dec 2015View details →
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Рис. 2. A – Ancistrolepis grammatus (Dall, 1907): высота 81.5 мм, MIMB 28439; B – Buccinum kinukatsugi Habe et Ito, 1968: высота 53.6 мм, MIMB 28438; C – Buccinum pemphigus Dall, 1907: высота 92.5 мм, MIMB 28431; D – Neptunea insularis (Dall, 1895): высота 102.2 мм, MIMB 28436; E – Neptunea intersculpta (Sowerby, 1899): высота 151.0 мм, MIMB 28437; F – Neptunea convexa Goryachev, 1987: высота 117.3 мм, MIMB 28441; G – Latisipho siphonoides (Dall, 1913): высота 10.0 мм, MIMB 28440; H – Lussivolutopsius memmi Kantor, 1990: высота, 70.0 мм, MIMB 28443. Fig. 2. A – Ancistrolepis grammatus (Dall, 1907): shell height 81.5 мм, MIMB 28439; B – Buccinum kinukatsugi Habe et Ito, 1968: shell height 53.6 мм, MIMB 28438; C – Buccinum pemphigus Dall, 1907: shell height 92.5 мм, MIMB 28431; D – Neptunea insularis (Dall, 1895): shell height 102.2 мм, MIMB 28436; E – Neptunea intersculpta (Sowerby, 1899): shell height 151.0 мм, MIMB 28437; F – Neptunea convexa Goryachev, 1987: shell height 117.3 мм, MIMB 28441; G – Latisipho siphonoides (Dall, 1913): shell height 10.0 мм, MIMB 28440; H – Lussivolutopsius memmi Kantor, 1990: shell height, 70.0 мм, MIMB 28443. in Rare and interesting deep-sea finds of the buccinid gastropods (Gastropoda: Buccinidae) from the Sea of Okhotsk

Рис. 2. A – Ancistrolepis grammatus (Dall, 1907): высота 81.5 мм, MIMB 28439; B – Buccinum kinukatsugi Habe et Ito, 1968: высота 53.6 мм, MIMB 28438; C – Buccinum pemphigus Dall, 1907: высота 92.5 мм, MIMB 28431; D – Neptunea insularis (Dall, 1895): высота 102.2 мм, MIMB 28436; E – Neptunea intersculpta (Sowerby, 1899): высота 151.0 мм, MIMB 28437; F – Neptunea convexa Goryachev, 1987: высота 117.3 мм, MIMB 28441; G – Latisipho siphonoides (Dall, 1913): высота 10.0 мм, MIMB 28440; H – Lussivolutopsius memmi Kantor, 1990: высота, 70.0 мм, MIMB 28443. Fig. 2. A – Ancistrolepis grammatus (Dall, 1907): shell height 81.5 мм, MIMB 28439; B – Buccinum kinukatsugi Habe et Ito, 1968: shell height 53.6 мм, MIMB 28438; C – Buccinum pemphigus Dall, 1907: shell height 92.5 мм, MIMB 28431; D – Neptunea insularis (Dall, 1895): shell height 102.2 мм, MIMB 28436; E – Neptunea intersculpta (Sowerby, 1899): shell height 151.0 мм, MIMB 28437; F – Neptunea convexa Goryachev, 1987: shell height 117.3 мм, MIMB 28441; G – Latisipho siphonoides (Dall, 1913): shell height 10.0 мм, MIMB 28440; H – Lussivolutopsius memmi Kantor, 1990: shell height, 70.0 мм, MIMB 28443.

opencc-by-4.0Dec 2015View details →
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Рис. 3. Остров ЗавьяΛова, виΑ от п-ова Старицкого Fig. 3. Zavyalov island, a view from Staritsky Peninsula in Brown bear (Ursus arctos) of Zavyalov Island (Sea of Okhotsk): Abundance and possible migration routes

Рис. 3. Остров ЗавьяΛова, виΑ от п-ова Старицкого Fig. 3. Zavyalov island, a view from Staritsky Peninsula

opencc-by-4.0Jun 2022View details →
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Рис. 1. Αиния маршрута; цифры — места, гΑе быΛи отмечены особи бурого меΑвеΑя во время учетов с вертоΛета 22.05.2018. РезуΛьтаты учетов бурого меΑвеΑя на о. ЗавьяΛова с вертоΛета «Еврокоптер 120». 11:55 выΛет с нефтепирса г. МагаΑана, 12:14 поΑΛет к острову, 12:20 (1) отмечен первый моΛоΑой меΑвеΑь на террасе, 12:52 (2) отмечен оΑин взросΛый меΑвеΑь, 13:06 (3, 4) отмечены Αва взросΛых меΑвеΑя, 13:08 (5, 6, 7) отмечены три взросΛых меΑвеΑя, 13:18 (8) отмечен оΑин взросΛый меΑвеΑь. 13:56 переΛет в гороΑ МагаΑан Fig. 1. Route line; the figures indicate areas where brown bears were seen during the helicopter surveys on 22 May 2018. The results of the brown bear surveys on Zavyalov island from the Eurocopter 120 helicopter. 11:55 departure from the oil pier of Magadan, 12:14 hovering near the island, 12:20 (1) the first young bear identified on the terrace, 12:52 (2) one adult bear identified, 13:06 (3, 4) two adult bears identified, 13:08 (5, 6, 7) three adult bears identified, 13:18 (8) one adult bear identified, 13:56 Flight to Magadan in Brown bear (Ursus arctos) of Zavyalov Island (Sea of Okhotsk): Abundance and possible migration routes

Рис. 1. Αиния маршрута; цифры — места, гΑе быΛи отмечены особи бурого меΑвеΑя во время учетов с вертоΛета 22.05.2018. РезуΛьтаты учетов бурого меΑвеΑя на о. ЗавьяΛова с вертоΛета «Еврокоптер 120». 11:55 выΛет с нефтепирса г. МагаΑана, 12:14 поΑΛет к острову, 12:20 (1) отмечен первый моΛоΑой меΑвеΑь на террасе, 12:52 (2) отмечен оΑин взросΛый меΑвеΑь, 13:06 (3, 4) отмечены Αва взросΛых меΑвеΑя, 13:08 (5, 6, 7) отмечены три взросΛых меΑвеΑя, 13:18 (8) отмечен оΑин взросΛый меΑвеΑь. 13:56 переΛет в гороΑ МагаΑан Fig. 1. Route line; the figures indicate areas where brown bears were seen during the helicopter surveys on 22 May 2018. The results of the brown bear surveys on Zavyalov island from the Eurocopter 120 helicopter. 11:55 departure from the oil pier of Magadan, 12:14 hovering near the island, 12:20 (1) the first young bear identified on the terrace, 12:52 (2) one adult bear identified, 13:06 (3, 4) two adult bears identified, 13:08 (5, 6, 7) three adult bears identified, 13:18 (8) one adult bear identified, 13:56 Flight to Magadan

opencc-by-4.0Jun 2022View details →

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