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99 results for “intertidal zone”
Figure 2 in Two new species of Lauratonema (Nematoda: Lauratonematidae) from the intertidal zone of the East China Sea
Figure 2. Lauratonema macrostoma sp. nov. (A) lateral view of male head end, showing amphids and bacteria; (B) lateral view of male body part, showing spicule; (C) lateral view of female body part, showing eggs; (D) lateral view of female head end, showing buccal cavity; (E) lateral view of female tail. Scale bar: A–D = 10 µm; E = 25 µm.
Figure 3 in Two new species of Lauratonema (Nematoda: Lauratonematidae) from the intertidal zone of the East China Sea
Figure 3. Lauratonema dongshanense sp. nov. (A) lateral view of male head end, showing amphid and cephalic setae; (B) lateral view of female head end, showing buccal cavity; (C) lateral view of female head end, showing amphid and bacteria; (D) lateral view of female body part, showing eggs; (E, F) lateral view of male body part, showing spicules; (G) lateral view of male tail. Scale bar: A–F = 10 µm; G = 25 µm.
Figure 1 in Two new species of Lauratonema (Nematoda: Lauratonematidae) from the intertidal zone of the East China Sea
Figure 1. Lauratonema macrostoma sp. nov. (A) lateral view of male anterior part; (B) lateral view of female tail; (C) lateral view of male tail; (D) lateral view of female posterior part, showing reproductive system; (E) lateral view of female anterior part. Scale bar: A, B, C, E = 20 µm; D = 50 µm.
Fig. 15 in Bivalve mollusks of the intertidal zone of the Far Eastern seas of Russia
Fig. 15. The distribution of biomass of Mya japonica in the intertidal zone of the Far Eastern seas of Russia.
Fig. 18 in Bivalve mollusks of the intertidal zone of the Far Eastern seas of Russia
Fig. 18. The distribution of biomass of Hiatella atctica in the intertidal zone of the Far Eastern seas of Russia.
Fig. 13 in Bivalve mollusks of the intertidal zone of the Far Eastern seas of Russia
Fig. 13. The distribution of biomass of Turtonia minuta in the intertidal zone of the Far Eastern seas of Russia.
Fig. 12 in Bivalve mollusks of the intertidal zone of the Far Eastern seas of Russia
Fig. 12. The distribution of biomass of Protothaca euglypta in the intertidal zone of the Far Eastern seas of Russia.
Рис. 11. Protothaca (Protothaca) euglypta (G.B. Sowerby III, 1914). Fig. 11. Protothaca (Protothaca) euglypta (G.B. Sowerby III, 1914). in Bivalve mollusks of the intertidal zone of the Far Eastern seas of Russia
Рис. 11. Protothaca (Protothaca) euglypta (G.B. Sowerby III, 1914). Fig. 11. Protothaca (Protothaca) euglypta (G.B. Sowerby III, 1914).
Fig. 5 in Bivalve mollusks of the intertidal zone of the Far Eastern seas of Russia
Fig. 5. The distribution of biomass of Macoma balthica in the intertidal zone of the Far Eastern seas of Russia.
Рис. 4. Clinocardium (Сlinocardium) nuttallii (Conrad, 1837). Fig. 4. Clinocardium (Сlinocardium) nuttallii (Conrad, 1837). in Bivalve mollusks of the intertidal zone of the Far Eastern seas of Russia
Рис. 4. Clinocardium (Сlinocardium) nuttallii (Conrad, 1837). Fig. 4. Clinocardium (Сlinocardium) nuttallii (Conrad, 1837).
Fig. 3 in Bivalve mollusks of the intertidal zone of the Far Eastern seas of Russia
Fig. 3. The distribution of biomass of Musculus laevigatus in the intertidal zone of the Far Eastern seas of Russia.
Рис. 17. Распредение биомассы Mya uzenensis на литорали дальневоcточных морей России. Fig. 17. The distribution of biomass of Mya uzenensis in the intertidal zone of the Far Eastern seas of Russia. in Bivalve mollusks of the intertidal zone of the Far Eastern seas of Russia
Рис. 17. Распредение биомассы Mya uzenensis на литорали дальневоcточных морей России. Fig. 17. The distribution of biomass of Mya uzenensis in the intertidal zone of the Far Eastern seas of Russia.
Рис. 2. Распредение биомассы Mytilus trossulus septentrionalis на литорали дальневоcточных морей России. Здесь и далее на гистограммах по оси абцисс после географических пунктов в скобках укаЗана выборка (число иЗученных проб), по оси ординат – максимальные ЗначениЯ биомассы вида. Под Значением биомассы 0.1 г/м² подраЗумеваютсЯ качественные пробы. СокраЩениЯ (бмп) и (топ) оЗначают соответственно беринговоморское и тихоокеанское побережьЯ Восточной Камчатки. Побережье Зал. Петра Великого от устьЯ р. Туманной к северу до м. Поворотного условно отноcитсЯ к южному Приморью; побережье к северу от м. Поворотного (пос. Преображение, б. СоколовскаЯ) до б. Ольга, включительно, условно относитсЯ к среднему Приморью; побережье к северу от б. Ольга до м. Белкина и материковое побережье Татарского пролива относим к северному Приморью. Fig. 2. The distribution of biomass of Mytilus trossulus septentrionalis in the intertidal zone of the Far Eastern seas of Russia. Here and throughout on histograms, on the abcissa is the number of studied samples (numbers in parentheses following the names geographic localities), on the ordinate is the maximum biomass of species. The number 0.1 g wet wt m-2 means the qualitative samples. Abbreviations (bmp) and (top) mean the Bering Sea coast and the Pacific coast of eastern Kamchatka. The coast of Peter the Great Bay from the mouth of the Tumannaya River to Cape Povorotny is conditionally referred to as southern Primorye; the area north of Cape Povorotny (Preobrazhenie Settlement, Sokolovskaya Bay) to Olga Bay inclusive is conditionally referred to as middle Primorye; north of Olga Bay to Cape Belkin and the mainland coast of the Tatar Strait to as northern Primorye. in Bivalve mollusks of the intertidal zone of the Far Eastern seas of Russia
Рис. 2. Распредение биомассы Mytilus trossulus septentrionalis на литорали дальневоcточных морей России. Здесь и далее на гистограммах по оси абцисс после географических пунктов в скобках укаЗана выборка (число иЗученных проб), по оси ординат – максимальные ЗначениЯ биомассы вида. Под Значением биомассы 0.1 г/м² подраЗумеваютсЯ качественные пробы. СокраЩениЯ (бмп) и (топ) оЗначают соответственно беринговоморское и тихоокеанское побережьЯ Восточной Камчатки. Побережье Зал. Петра Великого от устьЯ р. Туманной к северу до м. Поворотного условно отноcитсЯ к южному Приморью; побережье к северу от м. Поворотного (пос. Преображение, б. СоколовскаЯ) до б. Ольга, включительно, условно относитсЯ к среднему Приморью; побережье к северу от б. Ольга до м. Белкина и материковое побережье Татарского пролива относим к северному Приморью. Fig. 2. The distribution of biomass of Mytilus trossulus septentrionalis in the intertidal zone of the Far Eastern seas of Russia. Here and throughout on histograms, on the abcissa is the number of studied samples (numbers in parentheses following the names geographic localities), on the ordinate is the maximum biomass of species. The number 0.1 g wet wt m-2 means the qualitative samples. Abbreviations (bmp) and (top) mean the Bering Sea coast and the Pacific coast of eastern Kamchatka. The coast of Peter the Great Bay from the mouth of the Tumannaya River to Cape Povorotny is conditionally referred to as southern Primorye; the area north of Cape Povorotny (Preobrazhenie Settlement, Sokolovskaya Bay) to Olga Bay inclusive is conditionally referred to as middle Primorye; north of Olga Bay to Cape Belkin and the mainland coast of the Tatar Strait to as northern Primorye.
Рис. 19. Lyonsia cucumerina Ivanova ex Scarlato, 1981. Fig. 19. Lyonsia cucumerina Ivanova ex Scarlato, 1981. in Bivalve mollusks of the intertidal zone of the Far Eastern seas of Russia
Рис. 19. Lyonsia cucumerina Ivanova ex Scarlato, 1981. Fig. 19. Lyonsia cucumerina Ivanova ex Scarlato, 1981.
Рис. 15. ПляЖи и пляЖевые танатоценоЗы б. Теляковского (июнь 2015 г.): А – северная часть бухты: пляЖ и валунно-глыбовая литораль; В – срединная часть бухты; С – массовые выбросы устриц (Crassostrea gigas), мидий (Crenomytilus grayanus) и модиолусов (Modiolus kurilensis) в северной части бухты; D – выбросы спиЗулы (Spisula sachalinensis) в срединной части бухты. Fig. 15. Beaches and beach thanatocoenoses of Telyakovskogo Bay (June 2015): A – northern part of the bay: a beach and rocky intertidal zone; B – middle part of the bay; C – abundant strandings of oysters (Crassostrea gigas), mussels (Crenomytilus grayanus and Modiolus kurilensis) in the northern part; D – strandings of Spisula sachalinensis in the middle part. in Mollusks from the shell-midden of the Telyakovskogo 2 site in southern Primorye (Yankovskaya culture), their paleoecology and role in paleoeconomy
Рис. 15. ПляЖи и пляЖевые танатоценоЗы б. Теляковского (июнь 2015 г.): А – северная часть бухты: пляЖ и валунно-глыбовая литораль; В – срединная часть бухты; С – массовые выбросы устриц (Crassostrea gigas), мидий (Crenomytilus grayanus) и модиолусов (Modiolus kurilensis) в северной части бухты; D – выбросы спиЗулы (Spisula sachalinensis) в срединной части бухты. Fig. 15. Beaches and beach thanatocoenoses of Telyakovskogo Bay (June 2015): A – northern part of the bay: a beach and rocky intertidal zone; B – middle part of the bay; C – abundant strandings of oysters (Crassostrea gigas), mussels (Crenomytilus grayanus and Modiolus kurilensis) in the northern part; D – strandings of Spisula sachalinensis in the middle part.
Рис. 16. Mya (Mya) uzenensis Nomura et Zinbo, 1937. Fig. 16. Mya (Mya) uzenensis Nomura et Zinbo, 1937. in Bivalve mollusks of the intertidal zone of the Far Eastern seas of Russia
Рис. 16. Mya (Mya) uzenensis Nomura et Zinbo, 1937. Fig. 16. Mya (Mya) uzenensis Nomura et Zinbo, 1937.
Рис. 10. Распредение биомассы Liocyma fluctuosum на литорали дальневоcточных морей России. Fig. 10. The distribution of biomass of Liocyma fluctuosum in the intertidal zone of the Far Eastern seas of Russia. in Bivalve mollusks of the intertidal zone of the Far Eastern seas of Russia
Рис. 10. Распредение биомассы Liocyma fluctuosum на литорали дальневоcточных морей России. Fig. 10. The distribution of biomass of Liocyma fluctuosum in the intertidal zone of the Far Eastern seas of Russia.
Рис. 1. Карта-схема литоральных Экспедиций Института биологии морЯ (Национального научного центра морской биологии им. А.В. Жирмунского ДВО РАН) и Дальневосточного государственого университета (Дальневосточного федерального университета) (по: Ivanova, Tsurpalo [2012], с дополнениЯми). Fig. 1. A schematic map of intertidal expeditions performed by the Institute of Marine Biology (A.V. Zhirmunsky National Scientific Centre of Marine Biology FEB RAS) and Far Eastern State University (Far Eastern Federal University) (after Ivanova, Tsurpalo [2012], with additions). in Bivalve mollusks of the intertidal zone of the Far Eastern seas of Russia
Рис. 1. Карта-схема литоральных Экспедиций Института биологии морЯ (Национального научного центра морской биологии им. А.В. Жирмунского ДВО РАН) и Дальневосточного государственого университета (Дальневосточного федерального университета) (по: Ivanova, Tsurpalo [2012], с дополнениЯми). Fig. 1. A schematic map of intertidal expeditions performed by the Institute of Marine Biology (A.V. Zhirmunsky National Scientific Centre of Marine Biology FEB RAS) and Far Eastern State University (Far Eastern Federal University) (after Ivanova, Tsurpalo [2012], with additions).
Figure 1 in A new species of the genus Ethmolaimus de Man, 1880 (Nematoda, Ethmolaimidae) from intertidal zone of the Yellow Sea, China
Figure 1. Ethmolaimus multispiralis sp. nov. A. Anterior end of holotype, showing buccal cavity, teeth, cephalic setae, amphidial fovea and cuticle dots; B. Pharyngeal region of female, showing papilliform anterior sensilla, amphid, pharyngeal bulb and excretory system; C. Entire body of holotype; D. Cloacal region of holotype, showing spicule, lateral piece, gubernaculum and precloacal supplement; E. Entire body of female. Scale bars: A, B, D = 20 µm. C, E = 50 µm.
Figure 2 in A new species of the genus Ethmolaimus de Man, 1880 (Nematoda, Ethmolaimidae) from intertidal zone of the Yellow Sea, China
Figure 2. Ethmolaimus multispiralis sp. nov. A. Anterior end of holotype, showing buccal cavity, teeth, outer labial and cephalic setae; B. Anterior end of male, showing amphidial fovea and cuticle dots; C. Amphidial fovea of male; D. Pharyngeal bulb; E. Posterior portion of holotype, showing spicule and precloacal supplement; F. Cloacal region of holotype, showing spicule, lateral piece, gubernaculum and precloacal supplement. Scale bars: A–C = 10 µm; D–F = 20 µm.
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