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21.
Подробнее
Article
Б 92
Буслов, А.В.
Эмбриональное развитие тихоокеанской трески Gadus macrocephalus (Gadidae) = Embryonic development of pacific cod Gadus macrocephalus (Gadidae) / Буслов, А.В., Сергеева, Н.П., Ильин, O.И. // Известия ТИНРО. - Владивосток: Изд-во ТИНРО, 2010. Том 160, С. 71-88./Izv. TINRO. - Vladivostok: TINRO Publishing, 2010. Vol. 160, P. 71-88. - 2010
~РУБ Article
Рубрики: Pacific cod
Embryon
Temperature
Development
Morphogenesis
Calculations
Аннотация: Выполнено инкубирование икринок тихоокеанской трески в 8 сериях с разными температурными условиями - от минус 0,04 до плюс 4,03 гр. С, в том числе со сменой температурного режима с тёплого на холодный и наоборот. По результатам инкубирования подробно описаны морфологические изменения, проходящие в период эмбриогенеза. В течение развития выделены 22 морфологических признака, которые легко идентифицируются и отражают процесс морфогенез./Eggs of pacific cod were incubated in the experiment of 8 series in different temperature conditions from -0.04 to +4.03 degrees C including regimes of increasing or decreasing temperature, and morphological transformations in the process of embryogenesis are described in detal. Twenty two morphological signs are revealed which characterize well the process of morphogenesis and can be identified easily.
Доп.точки доступа:
Сергеева, Н.П.
Ильин, O.И.
Б 92
Буслов, А.В.
Эмбриональное развитие тихоокеанской трески Gadus macrocephalus (Gadidae) = Embryonic development of pacific cod Gadus macrocephalus (Gadidae) / Буслов, А.В., Сергеева, Н.П., Ильин, O.И. // Известия ТИНРО. - Владивосток: Изд-во ТИНРО, 2010. Том 160, С. 71-88./Izv. TINRO. - Vladivostok: TINRO Publishing, 2010. Vol. 160, P. 71-88. - 2010
Рубрики: Pacific cod
Embryon
Temperature
Development
Morphogenesis
Calculations
Аннотация: Выполнено инкубирование икринок тихоокеанской трески в 8 сериях с разными температурными условиями - от минус 0,04 до плюс 4,03 гр. С, в том числе со сменой температурного режима с тёплого на холодный и наоборот. По результатам инкубирования подробно описаны морфологические изменения, проходящие в период эмбриогенеза. В течение развития выделены 22 морфологических признака, которые легко идентифицируются и отражают процесс морфогенез./Eggs of pacific cod were incubated in the experiment of 8 series in different temperature conditions from -0.04 to +4.03 degrees C including regimes of increasing or decreasing temperature, and morphological transformations in the process of embryogenesis are described in detal. Twenty two morphological signs are revealed which characterize well the process of morphogenesis and can be identified easily.
Доп.точки доступа:
Сергеева, Н.П.
Ильин, O.И.
22.
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Article
Р 59
Рогачев, К.А.
Антициклоническая циркуляция Уссурийского залива Японского моря и её воздействие на биоту = Anticyclonic circulation in the Ussuri Bay (Japan Sea) and its impact biota / Рогачев, К.А. // Известия ТИНРО. - Владивосток: Изд-во ТИНРО, 2010. Том 160, С. 236-244./Izv. TINRO. - Vladivostok: TINRO Publishing, 2010. Vol. 160, P. 236-244. - 2010
~РУБ Article
Рубрики: Circulation
Ussuri Bay
Mollusks
Salinity
Temperature
Chum salmon
Аннотация: Изучена циркуляция вод Уссурийского залива и прилегающих районов зал. Петра Великого. Показано, что вода, заполняющая Уссурийский залив, происходит из мезомасштабных вихрей, расположенных в его южной части у континентального склона. Развитие субмезомасштабных струй является основным процессом, обеспечивающим поступление воды в залив. Антициклоническая циркуляция существенно понижает относительную завихренность как в самом заливе, так и в области мезомасштабного вихря. Понижение завихренности приводит к значительному увеличению переноса массы воды в Уссурийский залив./Water circulation in the Ussuri Bay is studied on the data of direct currents observations. Water flow enters the Bay from the south driven by mesoscale eddy located at the continental slope, so submesoscale streamers are the major factors of water temperature and salinity heightening there. On the other hand, the anticyclonic circulation decreases the relative vorticity in the Bay. These events establish rapid advection of warm water from the deep sea and determine the thermal limits for species such as salmon and mollusks, in shallow coastal area.
Р 59
Рогачев, К.А.
Антициклоническая циркуляция Уссурийского залива Японского моря и её воздействие на биоту = Anticyclonic circulation in the Ussuri Bay (Japan Sea) and its impact biota / Рогачев, К.А. // Известия ТИНРО. - Владивосток: Изд-во ТИНРО, 2010. Том 160, С. 236-244./Izv. TINRO. - Vladivostok: TINRO Publishing, 2010. Vol. 160, P. 236-244. - 2010
Рубрики: Circulation
Ussuri Bay
Mollusks
Salinity
Temperature
Chum salmon
Аннотация: Изучена циркуляция вод Уссурийского залива и прилегающих районов зал. Петра Великого. Показано, что вода, заполняющая Уссурийский залив, происходит из мезомасштабных вихрей, расположенных в его южной части у континентального склона. Развитие субмезомасштабных струй является основным процессом, обеспечивающим поступление воды в залив. Антициклоническая циркуляция существенно понижает относительную завихренность как в самом заливе, так и в области мезомасштабного вихря. Понижение завихренности приводит к значительному увеличению переноса массы воды в Уссурийский залив./Water circulation in the Ussuri Bay is studied on the data of direct currents observations. Water flow enters the Bay from the south driven by mesoscale eddy located at the continental slope, so submesoscale streamers are the major factors of water temperature and salinity heightening there. On the other hand, the anticyclonic circulation decreases the relative vorticity in the Bay. These events establish rapid advection of warm water from the deep sea and determine the thermal limits for species such as salmon and mollusks, in shallow coastal area.
23.
Подробнее
Article
И 37
Измятинский, Д.В.
Состав и количество рыб в элиторали российских вод Японского моря в тёплое и холодное время года = Composition and abundance of fish species in the outer sublittoral zone of the Japan Sea within Russian EEZ in warm and cold seasons / Измятинский, Д.В., Калчугин, П.В. // Известия ТИНРО. - Владивосток: Изд-во ТИНРО, 2010. Том 161, С. 79-91./Izv. TINRO. - Vladivostok: TINRO Publishing, 2010. Vol. 161, P. 79-91. - 2010
~РУБ Article
Рубрики: Trawl
Fish
Biomass
Temperature
Distribution
Depths
Аннотация: С ноября по апрель по сравнению с тёплым периодом года количество видов рыб в траловых уловах уменьшается примерно в 3 раза: 85 и 272 вида. Однако в зимние месяцы в элиторали было отмечено 4 вида, отсутствующих здесь летом. У большинства видов рыб биомасса на единицу площади в элиторали в холодное время года ниже, чем в тёплое, что в первую очередь связано со смещением рыб на свал глубин при похолодании. Но есть виды, у которых биомассы в элиторали в холодное время года увеличиваются./Fish population in the bottom and near-bottom layers is investigated for the depth range 50-200 m on the data of 88 trawl surveys, conducted completely of partially in Russia EEZ of the Japan Sea (in total, 3615 trawls including 2104 in May-October and 1511 in November-April). On average, species composition in the catches obtained in November-April is three times poorer than in May-October: 85 against 272 species.
Доп.точки доступа:
Калчугин, П.В.
И 37
Измятинский, Д.В.
Состав и количество рыб в элиторали российских вод Японского моря в тёплое и холодное время года = Composition and abundance of fish species in the outer sublittoral zone of the Japan Sea within Russian EEZ in warm and cold seasons / Измятинский, Д.В., Калчугин, П.В. // Известия ТИНРО. - Владивосток: Изд-во ТИНРО, 2010. Том 161, С. 79-91./Izv. TINRO. - Vladivostok: TINRO Publishing, 2010. Vol. 161, P. 79-91. - 2010
Рубрики: Trawl
Fish
Biomass
Temperature
Distribution
Depths
Аннотация: С ноября по апрель по сравнению с тёплым периодом года количество видов рыб в траловых уловах уменьшается примерно в 3 раза: 85 и 272 вида. Однако в зимние месяцы в элиторали было отмечено 4 вида, отсутствующих здесь летом. У большинства видов рыб биомасса на единицу площади в элиторали в холодное время года ниже, чем в тёплое, что в первую очередь связано со смещением рыб на свал глубин при похолодании. Но есть виды, у которых биомассы в элиторали в холодное время года увеличиваются./Fish population in the bottom and near-bottom layers is investigated for the depth range 50-200 m on the data of 88 trawl surveys, conducted completely of partially in Russia EEZ of the Japan Sea (in total, 3615 trawls including 2104 in May-October and 1511 in November-April). On average, species composition in the catches obtained in November-April is three times poorer than in May-October: 85 against 272 species.
Доп.точки доступа:
Калчугин, П.В.
24.
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Article
D87
Dukhova, L.A.
Hydrochemical Features of Primary Production within the Peruvian and Canary Upwelling Areas / Dukhova, L.A., Sapozhnikov, V.V. // Modern methods for assessing the biological productivity of waters in industrial areas of the World ocean: VNIRO proceedings. - M.: VNIRO Publishing, 2014. - V. 152. - P. 85-100. - 2014
~РУБ Article
Рубрики: Hydrochemistry
The Peruvian upwelling
The Canary upwelling
Bioproductivity
Shelf
Temperature
Аннотация: General features of water mass dynamics, as well as the processes responsible for higher biological productivity, appear to be similar for the geographically distinct areas of the Peruvian and Canary upwelling ecosystems. Variations in productivity of both ecosystems are driven by regional specifics of the upward flow, including the hydrochemical parameters of the upwelled waters. Northern sub-division of the Peruvian upwelling and southern sub-division of the Canary upwelling ecosystems are supplied by waters of the subsurface poleward flows over slope, for the rest it is water of Peruvian Coastal and Canary currents respectively. Biological productivity of these ecosystems was estimated indirectly using the hydrochemical data, and these results correspond well with direct observational data.
Доп.точки доступа:
Sapozhnikov, V.V.
D87
Dukhova, L.A.
Hydrochemical Features of Primary Production within the Peruvian and Canary Upwelling Areas / Dukhova, L.A., Sapozhnikov, V.V. // Modern methods for assessing the biological productivity of waters in industrial areas of the World ocean: VNIRO proceedings. - M.: VNIRO Publishing, 2014. - V. 152. - P. 85-100. - 2014
Рубрики: Hydrochemistry
The Peruvian upwelling
The Canary upwelling
Bioproductivity
Shelf
Temperature
Аннотация: General features of water mass dynamics, as well as the processes responsible for higher biological productivity, appear to be similar for the geographically distinct areas of the Peruvian and Canary upwelling ecosystems. Variations in productivity of both ecosystems are driven by regional specifics of the upward flow, including the hydrochemical parameters of the upwelled waters. Northern sub-division of the Peruvian upwelling and southern sub-division of the Canary upwelling ecosystems are supplied by waters of the subsurface poleward flows over slope, for the rest it is water of Peruvian Coastal and Canary currents respectively. Biological productivity of these ecosystems was estimated indirectly using the hydrochemical data, and these results correspond well with direct observational data.
Доп.точки доступа:
Sapozhnikov, V.V.
25.
Подробнее
Article
A81
Arzhanova, N.V.
Hydrochemical Structure of Water Masses in Areas of the Antarctic Krill (Euphausia Superba Dana) Fisheries / Arzhanova, N.V., Artamonova, K.V. // Modern methods for assessing the biological productivity of waters in industrial areas of the World ocean: VNIRO proceedings. - M.: VNIRO Publishing, 2014. - V. 152. - P. 118-132. - 2014
~РУБ Article
Рубрики: Hydrochemistry
Antarctic krill
Fishery
Vortexes
Salinity
Temperature
Аннотация: Antarctic krill (Euphausia superba Dana) is considered a most valuable fishing object in the Antarctic waters. According to some estimates, its stocks totals hundred million tons. Besides, krill makes the basic part of feeding ration for numerous consumers, including sea birds, seals, whales, etc. Hydrochemical conditions in areas of the Antarctic krill concentrations in the Southern Ocean are reviewed. We have identified hydrochemical parameters which allow us to differentiate main water masses in the Antarctic waters (i.e. waters associated Antarctic Circumpolar Current (ACC) vs. water with the high-latitude modification associated with continental seas) and distinguish a zone of their interaction, the Secondary Frontal Zone (SFZ). This zone basically makes the areas of the krill dense concentrations.
Доп.точки доступа:
Artamonova, K.V.
A81
Arzhanova, N.V.
Hydrochemical Structure of Water Masses in Areas of the Antarctic Krill (Euphausia Superba Dana) Fisheries / Arzhanova, N.V., Artamonova, K.V. // Modern methods for assessing the biological productivity of waters in industrial areas of the World ocean: VNIRO proceedings. - M.: VNIRO Publishing, 2014. - V. 152. - P. 118-132. - 2014
Рубрики: Hydrochemistry
Antarctic krill
Fishery
Vortexes
Salinity
Temperature
Аннотация: Antarctic krill (Euphausia superba Dana) is considered a most valuable fishing object in the Antarctic waters. According to some estimates, its stocks totals hundred million tons. Besides, krill makes the basic part of feeding ration for numerous consumers, including sea birds, seals, whales, etc. Hydrochemical conditions in areas of the Antarctic krill concentrations in the Southern Ocean are reviewed. We have identified hydrochemical parameters which allow us to differentiate main water masses in the Antarctic waters (i.e. waters associated Antarctic Circumpolar Current (ACC) vs. water with the high-latitude modification associated with continental seas) and distinguish a zone of their interaction, the Secondary Frontal Zone (SFZ). This zone basically makes the areas of the krill dense concentrations.
Доп.точки доступа:
Artamonova, K.V.
26.
Подробнее
Article
M37
Maslennikov, V.V.
Temporal and Spatial Variability of Total Productivity of the Antarctic Waters / Maslennikov, V.V., Artamonova, K.V., Dukhova, L.A. // Modern methods for assessing the biological productivity of waters in industrial areas of the World ocean: VNIRO proceedings. - M.: VNIRO Publishing, 2014. - V. 152. - P. 133-145. - 2014
~РУБ Article
Рубрики: Bioproductivity
Circulation
Climate
Krill
Calculations
Temperature
Аннотация: Temporal and spatial variability of total productivity in Antarctic water depending on climatic conditions is considered. Favorable and unfavorable periods of commercial Antarctic krill concentration are established. The Antarctic krill is a most valuable fishing object in the Antarctic waters. It makes a basic part of feeding ration for numerous consumers. A spatial inhomogeneity of the Antarctic krill distribution is shown. Chemical indices of the high-productivity areas of the Antarctic water are established. It is shown the chemical indices of the dense Antarctic Shelf waters in the Slope areas intensified the Antarctic Slope front that is a most high-fish capacity area in Antarctic.
Доп.точки доступа:
Artamonova, K.V.
Dukhova, L.A.
M37
Maslennikov, V.V.
Temporal and Spatial Variability of Total Productivity of the Antarctic Waters / Maslennikov, V.V., Artamonova, K.V., Dukhova, L.A. // Modern methods for assessing the biological productivity of waters in industrial areas of the World ocean: VNIRO proceedings. - M.: VNIRO Publishing, 2014. - V. 152. - P. 133-145. - 2014
Рубрики: Bioproductivity
Circulation
Climate
Krill
Calculations
Temperature
Аннотация: Temporal and spatial variability of total productivity in Antarctic water depending on climatic conditions is considered. Favorable and unfavorable periods of commercial Antarctic krill concentration are established. The Antarctic krill is a most valuable fishing object in the Antarctic waters. It makes a basic part of feeding ration for numerous consumers. A spatial inhomogeneity of the Antarctic krill distribution is shown. Chemical indices of the high-productivity areas of the Antarctic water are established. It is shown the chemical indices of the dense Antarctic Shelf waters in the Slope areas intensified the Antarctic Slope front that is a most high-fish capacity area in Antarctic.
Доп.точки доступа:
Artamonova, K.V.
Dukhova, L.A.
27.
Подробнее
Article
M52
Melchenkov, Ye.A.
Results of Investigations in the Field of Acclimatization and Fish-Farming Cultivating Perspective Objects of Aquaculture / Melchenkov, Ye.A., Kanid'eva, T.A. // Artificial reproduction and aquaculture: VNIRO proceedings. - M.: VNIRO Publishing, 2015. - V. 153. - P. 42-56. - 2015
~РУБ Article
Рубрики: Aquaculture
Acclimatization
Biotechnics
Sturgeon breeding
Temperature
Fish farm
Аннотация: Results of long-term investigations, carried out by the laboratory of sturgeon farming and acclimatization of VNIIPRKh in the field of fish-farming cultivating herbivorous fishes and other perspective objects of aquaculture, are being considered.
Доп.точки доступа:
Kanid'eva, T.A.
M52
Melchenkov, Ye.A.
Results of Investigations in the Field of Acclimatization and Fish-Farming Cultivating Perspective Objects of Aquaculture / Melchenkov, Ye.A., Kanid'eva, T.A. // Artificial reproduction and aquaculture: VNIRO proceedings. - M.: VNIRO Publishing, 2015. - V. 153. - P. 42-56. - 2015
Рубрики: Aquaculture
Acclimatization
Biotechnics
Sturgeon breeding
Temperature
Fish farm
Аннотация: Results of long-term investigations, carried out by the laboratory of sturgeon farming and acclimatization of VNIIPRKh in the field of fish-farming cultivating herbivorous fishes and other perspective objects of aquaculture, are being considered.
Доп.точки доступа:
Kanid'eva, T.A.
28.
Подробнее
Article
K42
Khoroshutina, O.A.
Distribution of Some Species of Gastropods Depending on Habitat Conditions in the Northwestern Part of the Okhotsk Sea / Khoroshutina, O.A., Metelyov, E.A. // Commercial species and their biology: VNIRO proceedings. - M.: VNIRO Publishing, 2015. - V. 155. - P. 14-19. - 2015
~РУБ Article
Рубрики: Gastropods Buccinidae
Distribution
The Okhotsk Sea
Ecology
Soil
Temperature
Аннотация: Bottom trawl survey was carried out in summer-autumn period 2013 in the northwestern part of the Sea of Okhotsk. Such representatives of the Buccinum genus as Buccinum osagawai, Buccinum ectomocyma, Buccinum pemphigus, Buccinum rossicum Buccinum kinukatsugi, Buccinum miyauchii, and Lussivolutopsius marinae, Neptunea lamellosa, Neancistrolepis beringianus played the main role in catches. The areas of distribution, the preferred depth, soils and temperature ranges are shown for each species. For almost all of the species our data confirmed the previously published. Data on the temperature range of B. osagawai and B. ectomocyma occurrence as well as on the depths range of B. pemphigus and N. beringianus occurrence was refined. A comparison was made between ecological zones district, the map of major benthic groups of the Sea of Okhotsk, the map with the sediment and distribution area of the species.
Доп.точки доступа:
Metelyov, E.A.
K42
Khoroshutina, O.A.
Distribution of Some Species of Gastropods Depending on Habitat Conditions in the Northwestern Part of the Okhotsk Sea / Khoroshutina, O.A., Metelyov, E.A. // Commercial species and their biology: VNIRO proceedings. - M.: VNIRO Publishing, 2015. - V. 155. - P. 14-19. - 2015
Рубрики: Gastropods Buccinidae
Distribution
The Okhotsk Sea
Ecology
Soil
Temperature
Аннотация: Bottom trawl survey was carried out in summer-autumn period 2013 in the northwestern part of the Sea of Okhotsk. Such representatives of the Buccinum genus as Buccinum osagawai, Buccinum ectomocyma, Buccinum pemphigus, Buccinum rossicum Buccinum kinukatsugi, Buccinum miyauchii, and Lussivolutopsius marinae, Neptunea lamellosa, Neancistrolepis beringianus played the main role in catches. The areas of distribution, the preferred depth, soils and temperature ranges are shown for each species. For almost all of the species our data confirmed the previously published. Data on the temperature range of B. osagawai and B. ectomocyma occurrence as well as on the depths range of B. pemphigus and N. beringianus occurrence was refined. A comparison was made between ecological zones district, the map of major benthic groups of the Sea of Okhotsk, the map with the sediment and distribution area of the species.
Доп.точки доступа:
Metelyov, E.A.
Страница 3, Результатов: 28