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It was shown that podzolic soils with morphological characteristics identical to those of the background soils were formed during these time periods. An attempt was made to estimate the “characteristic times” for some chemical characters. The greatest values of this parameter were about 8000 years.",{"EN":163},"The Rate of Soil Cover Recovery in Anthropogenically Disturbed Areas: An Example of Western Siberian Archaeological Landmarks",{"VOID":165},"[\"6501126040113066448\"]",{"VOID":167},"Gennadiev, A.N., Pochvy i vremya: modeli razvitiya (Soils and Time: Models of Development), Moscow: Mosk. Gos. Univ., 1990.\nRozanov, B.G., Morfologiya pochv (Soil Morphology), Moscow: Mosk. Gos. Univ., 1983.\nTargul'yan, V.O. and Sokolov, I.A., Structural and Functional Approaches to the Soil: Soil-Memory and Soil-Moment, in Matematicheskoe modelirovanie v ekologii (Mathematical Modeling in Ecology), Moscow: Nauka, 1978, pp. 17–33.\nVoitkevich, G.V., Miroshnikov, A.E., Povarennykh, A.S., and Prokhorov, V.G., Kratkii spravochnik po geokhimii (A Concise Handbook of Geochemistry), Moscow: Nedra, 1977.",{"VOID":169},"10.1023\u002FA:1009509729821","PUBLICATION","VERIFIED","2024-06-26T17:50:36.782+00:00","Auto Verify","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1023\u002FA:1009509729821",[176,192],{"id":177,"sortIndex":21,"researcher":20,"roles":178,"affiliations":180,"properties":189,"displayName":191,"givenName":20,"familyName":20},"070cce5a-736d-4e33-ad81-f192534acafc",[179],"AUTHOR",[181],{"id":182,"sortIndex":21,"affiliation":183,"properties":20},"e89a1db8-b1b6-4078-80dc-129a5925d2c5",{"id":182,"createTime":20,"updateTime":20,"relativeEntities":184,"slug":20,"properties":185,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":188,"statistic":20},[],{"title":186},{"VI":187},"Ural State University, Yekaterinburg, Russia",[],{"title":190},{"VI":191},"G. 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Changes in the temperature parameters of surface air and the rooting peat horizon, as well as an increase in the degree of decomposition and ash content, a decrease in the bog water level and acidity of the upper layer of the peat deposit in the impact zone of flare, have been recorded. The relationship of changes in the hydrological and temperature regimens with changes in the peat composition and properties is shown. The botanical and spore-and-pollen analyses have revealed a trend in the reciprocal development of the upper horizon of the oligotrophic peat deposit towards eutrophication: the change in the fuscum peat for moss–dwarf-shrub peat.",{"EN":272},"The Peat-Forming Process in an Oligotrophic Bog in the Impact Zone of a Gas Flare in Western Siberia",{"VOID":274},"[\"16101180904644535414\"]",{"VOID":276},"LaBaugh, J.W., Wetland ecosystems studies from a hydrologic perspective, Water Resour. Bull., 1986, vol. 22, pp. 1–10.\nVomperskii, S.E., Biologicheskie osnovy effektivnosti lesoosusheniya (Biological Principles of Effective Forest Draining), Moscow: Nauka, 1968.\nGrabovik, S.I. and Nazarova, L.E., Linear increment of Sphagnum mosses on Karelian mires (Russia), Arctoa, 2013, vol. 22, nos. 1–4, pp. 23–26.\nP’yavchenko, N.I., Peat accumulation and its productivity, in Dinamika organicheskogo veshchestva v protsesse torfoobrazovaniya (Organic Matter Dynamics in the Course of Peat Formation), Kozlovskaya, L.C., Medvedeva, V.M., and P’yavchenko, N.I., Eds., Leningrad: Nauka, 1978, pp. 141–155.\nBragg, O.M. and Tallis, J.H., The sensitivity of peatcovered upland landscapes, Catena, 2001, no. 42, pp. 345–360.\nRydin, H. and Jeglum, J.K., The Biology of Peatlands, New York: Oxford Univ. Press, 2006.\nTyuremnov, S.N., Torfyanye mestorozhdeniya (Peatlands), Moscow: Nedra, 1976.\nWorld Development Report 2010: Development and Climate Change, Washington, DC: IBRD\u002FWorld Bank, 2010.\nPeatlands and Climate Change, Strack, M., Ed., Jyväskylä, Finland: International Peat Society, 2008.\nMitsch, W.J., Bernal, B., Nahlik, A.M., et al., Wetlands, carbon, and climate change, Landsc. Ecol., 2013, vol. 28, no. 4, pp. 583–597.\nTerent’eva, I.E., Sabrekov, A.F., Glagolev, M.V., et al., A new map of wetlands in the southern taiga of the West Siberia for assessing the emission of methane and carbon dioxide, Water Resources, 2017, vol. 44, no. 2, pp. 297–307.\nMinaeva, T.Yu. and Sirin, A.A., Biological diversity of bogs and climate change, Usp. Sovrem. Biol., 2011, vol. 131, no. 4, pp. 393–406.\nKutepova, E.A., Knizhnikov, A.Yu., and Kochi, K.V., Problemy i perspektivy ispol’zovaniya poputnogo neftyanogo gaza v Rossii: ezhegodnyi obzor (Problems and Prospects in Oilwell Gas Utilization in Russia: Annual Review), Moscow: WWF Rossii, 2011, vol. 3.\nBjørge, T. and Bratseth, A., Measurement of radiation heat flux from large scale flares, J. Hazard. Mater., 1996, no. 46, pp. 159–168.\nSchwartz, R.E. and White, J.M., Predict radiation from flares, Chem. Eng. Progr., 1997, vol. 93, no. 7, pp. 42–45.\nShore, D., Making the flare safe, J. Loss Prev. Process Ind., 1996, vol. 9, no. 6, pp. 363–381.\nShavnin, S.A., Yusupov, I.A., Artem’eva, E.P., and Golikov, D.Yu., Effect of ambient temperature rise on the formation of ground vegetation near a gas flare, Izv. Vyssh. Uchebn. Zaved., Lesnoi Zh., 2006, no. 1, pp. 21–28.\nShavnin, S.A., Yusupov, I.A., Montile, A.A., et al., Effect of increased ambient temperature on the growth rate of young pine forests in the impact zone of a petroleum gas flare, Russ. J. Ecol., 2009, vol. 40, no. 1, pp. 1–5.\nDegradatsiya i demutatsiya lesnykh ekosistem v usloviyakh neftedobychi (Degradation and Demutation of Forest Ecosystems under the Impact of Oil Production), Zalesov, S.V., Kryazhevskikh, N.A., Krupinin, N.Ya., Eds., Yekaterinburg, 2001.\nShavnin, S.A., Yusupov, I.A., and Artem’eva, E.P., Structural transformation of lower forest–bog vegetation layers in the zone of thermal impact from a gas flare, Izv. Orenburg. Gos. Agrarn. Univ., 2013, no. 40, pp. 20–25.\nYevdokimov, I.V., Yusupov, I.A., Larionova, A.A., et al., Thermal impact of gas flares on the biological activity of soils, Euras. Soil Sci., 2017, vol. 50, no. 12, pp. 1455–1462.\nGvozdetskii, N.A., Krivolutskii, A.E., and Makunina, A.A., Scheme of physiographic zoning of Tyumen oblast, in Fiziko-geograficheskoe raionirovanie Tyumenskoi oblasti (Physiographic Zoning of Tyumen Oblast), Moscow: Mosk. Gos. Univ., 1973, pp. 9–28.\nLiss, O.L., Abramova, L.I., Avetov, N.A., et al., Bolotnye sistemy Zapadnoi Sibiri i ikh prirodookhrannoe znachenie (Bog Systems of Western Siberia and Their Significance for Nature Conservation), Tula: Grif i K°, 2001.\nOST (State Standard) 56-69-83: Forest Management Test Plots: Methods of Establishment, 1983.\nInstruktsiya po nivelirovaniyu I, II, III i IV klassov GKINP(GNTA)-03-010-03 (GKINP(GNTA)-03-010-03: Directions for Conducting Class I, II, II, and IV Leveling Surveys), Moscow: TsNIIGAiK, 2004.\nPaleopalinologiya (Paleopalynology), vol. 1, Leningrad: Nedra, 1966.\nP’yavchenko, N.I., Elina, G.A., and Chachkhiani, V.N., Main stages in the Holocene history of vegetation and peat deposition in the east of the Baltic Shield, Byull. Kom. Izuch. Chetvert. Perioda, 1976, no. 45, pp. 3–24.\nLiss, O.L. and Berezina, N.A., Bolota Zapadno-Sibirskoi ravniny (Bogs of the West Siberian Plain), Moscow: Mosk. Gos. Univ., 1981.\nMul’diyarov, E.Ya. and Lapshina, E.D., Dating of the upper layers of peat deposit used for studies on space aerosols, in Meteoritnye i meteornye issledovaniya (Meteorite and Meteor Studies), Novosibirsk: Nauka, 1983, pp. 75–84.\nLapshina, E.D., Flora bolot yugo-vostoka Zapadnoi Sibiri (The Flora of Bogs in the Southeast of Western Siberia), Tomsk: Tomsk. Gos. Univ., 2003.\nMoney, R.P. and Wheeler, B.D., Some critical questions concerning the restorability of damaged raised bogs, Appl. Veget. Sci., 1999, vol. 2, pp. 107–116.\nEvans, M.G., Burt, T.P., Holden, J., and Adamson, J.K., Runoff generation and water table fluctuations in blanket peat: Evidence from UK data spanning the dry summer of 1995, J. Hydrol., 1999, vol. 221, nos. 3–4, pp. 141–160.\nMakovskii, V.I. and Chindyaev, A.S., Lesovodstvennoekologicheskie osnovy melioratsii lesov na Srednem Urale (Forestry-Ecological Principles of Forest Amelioration in the Middle Urals), Sverdlovsk: Ural. Otd. Akad. Nauk SSSR, 1988.\nClymo, R.S., Models of peat growth, Suo, 1992, vol. 43, no. 4, pp. 127–136.\nPreston, M.D., Smemo, K.A., McLaughlin, J.W., and Basiliko, N., Peatland microbial communities and decomposition processes in the James Bay Lowlands, Canada, Front. Microbiol., 2012, vol. 3, pp. 64–74.\nGavril'chik, A.P. and Kashinskaya, T.Ya., Transformatsiya svoistv torfa pri antropogennom vozdeistvii (Transformation of Peat Properties under Anthropogenic Impact), Lishtvan, I.I., Ed., Minsk: Belaruskaya Navuka, 2013.\nLishtvan, I.I. and Korol’, N.T., Osnovnye svoistva torfa i metody ikh opredeleniya (Basic Properties of Peat and Methods for Their Assessment), Minsk: Nauka i Tekhnika, 1975.\nBoch, M.S. and Mazing, V.V., Ekosistemy bolot SSSR (Bog Ecosystems in the Soviet Union), Leningrad: Nauka, 1979.\nMakovskii, V.I. and Fil’roze, E.M., On the study of bogs and bog forests in the mountain part of the Southern Urals, in Lesoobrazovatel’nyi protsess na Urale i v Zaural’e (Forest Formation Processes in the Urals and Transural Region), Sverdlovsk, 1975, pp. 81–93.\nTarnocai, C. and Zoltai, S.C., Wetlands of arctic Canada, in Wetlands of Canada, Land Classification Series no. 24, National Wetlands Working Group, Montreal: Polyscience Publ. Inc., 1988, part 2, pp. 29–53.\nNoskova, N.E. and Tret’yakova, I.N., Scots pine reproduction under conditions of global climate warming, and strategic directions in species conservation, Khvoinye Boreal. 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Biol., 1985, vol. 7, pp. 261–314.",{"doi":553},{"id":20,"text":615,"url":20,"identifiers":616},"Leutin, V.P. and Nikolaeva, E.I., Funktsional’naya asimmetriya mozga: mify i deistvitel’nost’ (Brain Functional Asymmetry: Myths and Reality), St. Petersburg: Rech’, 2005.",{},{"id":20,"text":618,"url":20,"identifiers":619},"Morenkov, E.D., Sexual Dimorphism of Functional Brain Asymmetry in Rodents, in Funktsional’naya mezhpolusharnaya asimmetriya. Khrestomatiya (Functional Interhemispheric Asymmetry: An Anthology), Moscow: Nauchnyi Mir, 2004, pp. 369–385.",{},{"id":20,"text":621,"url":20,"identifiers":622},"Moshkin, M.P. and Shilova, S.A., Qualitative Differences between Individuals As a Mechanism for Maintaining Stability of Population Structures, Usp. Sovrem. Biol., 2008, vol. 128, no. 3, pp. 307–320.",{},{"id":20,"text":624,"url":20,"identifiers":625},"Nalivaeva, N.N., Plesneva, S.A., Chekulaeva, U.B., et al., Some Biochemical Features of the Sensomotor Cortex in Left-Pawed, Right-Pawed, and Ambidextrous Rats, Zh. Evol. Fiziol. Biokhim., 1996, vol. 32, no. 1, pp. 75–81.",{},{"id":549,"text":627,"url":551,"identifiers":628},"Neveu, P.J., Brain Lateralization and Immunomodulation, Int. J. Neurosci., 1993, vol. 70, pp. 135–143.",{"doi":553},{"id":20,"text":630,"url":20,"identifiers":631},"Rogovin, K.A. and Moshkin, M.P., Self-Regulation of Population Size in Mammals and Stress: Strokes to the Picture Painted Long Ago, Zh. Obshch. Biol., 2007, vol. 68, no. 4, pp. 244–267.",{},{"id":20,"text":633,"url":20,"identifiers":634},"Shilov, I.A., Fiziologicheskaya ekologiya zhivotnykh (Physiological Ecology of Animals), Moscow: Vysshaya Shkola, 1985.",{},{"id":20,"text":636,"url":20,"identifiers":637},"Shilova, S.A., Populyatsionnaya ekologiya kak osnova kontrolya chislennosti melkikh mlekopitayushchikh (Population Ecology As a Basis for Small Mammal Population Control), Moscow: Nauka, 1993.",{},{"id":20,"text":639,"url":20,"identifiers":640},"Shilova, S.A., Chabovskii, A.V., and Popov, V.S., Specific Features of Colony Formation in Yellow Ground Squirrels (Spermophilus fulvus Licht., 1823) Occupying a Vacant Area, Byul. Mosk. O-va Ispyt. Prir., Otd. Biol., 2006, vol. 111, no. 5, pp. 71–75.",{},{"id":549,"text":642,"url":551,"identifiers":643},"Takeda, S. and Endo, A., Paw Preference in Mice: A Reappraisal, Physiol. Behav., 1993, vol. 53, no. 4, pp. 727–730.",{"doi":553},{"id":20,"text":645,"url":20,"identifiers":646},"Vasil’eva, Yu.V., Varlinskaya, E.I., and Petrov, E.S., Studies on Alteration of Locomotor Habits in Rats with Different Motor Preferences, Zh. Vyssh. Nervn. Deyat., 1995, vol. 45, no. 5, pp. 1029–1035.",{},{"id":20,"text":648,"url":20,"identifiers":649},"Villablanca, J.R., Schmanke, T.D., Crutcher, H.A., et al., The Growth of the Feline Brain from fetal into Adult Life. A Morphometric Study of Subcortical Nuclei, Dev. Brain Res., 2000, vol. 122, pp. 21–33.",{},{"id":549,"text":651,"url":551,"identifiers":652},"Ward, R. and Collins, R.L., Brain Size and Shape in Strongly and Weakly Lateralized Mice, Brain Res., 1985, vol. 328, pp. 243–249.",{"doi":553},{"id":549,"text":654,"url":551,"identifiers":655},"Waters N.S., Badura, L.L., and Deneberg, V.H., Differential Prolactin Responsiveness to Stress in Left- and Right-Pawed Mice, Behav. Brain Res., 1996, vol. 724, no. 1, pp. 112–116.",{"doi":553},{"id":657,"createTime":658,"updateTime":659,"relativeEntities":660,"slug":661,"properties":662,"entityType":170,"verifyStatus":171,"verifyTime":673,"verifyNote":173,"languages":20,"translateLanguages":20,"viewCount":21,"primaryUrl":674,"fullTextUrl":20,"authors":675,"publicationType":205,"publisherRelationship":704,"citationCount":752,"citationInfo":753,"publishDate":756,"publishYear":754,"citationAnalyzeStatus":757,"lastCitationAnalyze":758,"indexDatabases":759,"openAccess":20,"references":20,"isForceReanalyzing":261},"d6019e14-eb54-4679-8132-3324d248a83d","2024-02-19T07:01:28.928+00:00","2026-07-18T10:04:16.810+00:00",[],"Ecological-aspects-of-larval-drift-in-coregonids-with-long-migration-routes",{"abstract":663,"title":665,"gsPaper":667,"references":669,"doi":671},{"EN":664},"Downstream migration (larval drift) of coregonids in the lower reaches of the Severnaya Sos’va River (the largest spawning tributary of the Lower Ob) has been analyzed from ecological aspects such as the long-term, seasonal, and daily dynamics and the spatial distribution, growth, and feeding of larvae in the current. Considerable changes in the abundance of coregonid generations have been revealed. It is shown that downstream larval migration over a long route has a number of features distinguishing it from that at spawning grounds. In particular, mass migration takes place after the ice drift, and its intensity is independent of changes in flow discharge. The drifting larvae display species-specific distribution in the current, and their density is the lowest in the surface water layer. In the course of migration, their linear body growth is accompanied by considerable depletion of endogenous food reserves and transition to active feeding.",{"EN":666},"Ecological aspects of larval drift in coregonids with long migration routes",{"VOID":668},"[\"13485261271542606593\"]",{"VOID":670},"Afanas’ev, G.A., Sorokin, V.N., and Sorokina, A.A., The Ecology of Downstream Migration of Omul Larvae in the Selenga River, in Ekologiya, bolezni i razvedenie baikal’skogo omulya (The Baikal Omul: Ecology, Diseases, and Breeding), Novosibirsk, 1981, pp. 44–55.\nBogdanov, V.D., Hatching and Downstream Migration of Coregonid Larvae in Ural Tributaries of the Lower Ob, in Biologiya i ekologiya gidrobiontov ekosistemy Nizhnei Obi (Biology and Ecology of Hydrobionts in the Lower Ob Ecosystem), Sverdlovsk, 1983, pp. 55–79.\nBogdanov, V.D., Studies on the Dynamics of Abundance and Distribution of Coregonid Larvae in the Severnaya Sos’va River, Preprint of Ural Branch, USSR Acad. Sci., Sverdlovsk, 1987.\nBogdanov, V.D., Spatial Distribution of Coregonid Larvae over the Lower Ob Water Area, in Biologiya sigovykh ryb (Biology of Coregonid Fishes), Moscow, 1988, pp. 178–191.\nBogdanov, V.D., Specific Features of the Spatial Distribution of Coregonus tugun Larvae in the Ob River Basin, Vopr. Ikhtiol., 1992, vol. 32, no. 1, pp. 64–69.\nBogdanov, V.D., Morfologicheskie osobennosti razvitiya i opredelitel’ lichinok sigovykh ryb r. Obi (Coregonid Larvae in the Ob River Basin: Morphological Developmental Features and Identification Key), Yekaterinburg: Ural Otd. Ross. Akad. Nauk, 1998.\nBogdanov, V.D., The State of the Lower Ob Ichthyofauna, Nauchn. Vestnik (Salekhard), 2005, no. 1 (32), pp. 40–49.\nBogdanov, V.D., Specific Features of the Downstream Migration of Coregonid Larvae over Long-Distance Routes, in Biota Yamala i problemy regional’noi ekologii (The Biota of Yamal and Problems in Regional Ecology), Nauchn. Vestnik (Salekhard), 2006, no. 1 (38), pp. 85–91.\nBogdanov, V.D and Agafonov L.N. Influence of Hydrologic Conditions of the Lower Ob Floodplain on Reproduction in Coregonids, Russ. J. Ecol., 2001, no. 1, pp. 45–51.\nBogdanov, V.D. and Bogdanova, E.N., Specific Features of Downstream Migration of Coregonid Larvae in the Lower Reaches of the Severnaya Sos’va River, in Morfologicheskaya kharakteristika nekotorykh vidov ryb Ob’-Irtyshskogo basseina (Morphological Characteristics of Some Fish Species in the Ob-Irtysh Basin), Sverdlovsk, 1984, pp. 11–28.\nBogdanov, V.D. and Kizhevatov, Ya.A., Dynamics of Ichthyofauna in the Sob’ River, in Materialy k poznaniyu fauny i flory Yamalo-Nenetskogo Avtonomnogo Okruga (Materials on the Study of Fauna and Flora of the Yamalo-Nenets Autonomous Area), Nauchn. Vestnik (Salekhard), 2000, no. 4, part 2, pp. 3–15.\nBogdanov, V.D., Mel’nichenko, S.M., and Mel’nichenko, I.P., Downstream Migration of Coregonid Larvae in the Region of Spawning Grounds on the Man’ya River, the Lower Ob Basin, Vopr. Ikhtiol., 1991, vol. 31, pp. 776–782.\nBogdanova, E.N., Ecological Aspects of Feeding of Peled Whitefish Larvae in the Ob River, III Vsesoyuz. soveshch. po biologii i biotekhnike razvedeniya sigovykh ryb: tez dokl. (Abstr. III All-Union Conf. on Biology and Breeding Technology of Coregonid Fishes), Tyumen, 1985, pp. 54–56.\nBogdanova, E.N., Zooplankton in the Lyapin River Tributaries, the Eastern Slope of the Polar Urals, in Ekologicheskie issledovaniya na Yamale: itogi i perspektivy (Ecological Studies on the Yamal Peninsula: Results and Prospects), Nauchn. Vestnik (Salekhard), 2005, no. 1 (32), pp. 68–77.\nChernyaev, Zh.A., Embrional’noe razvitie baikal’skogo omulya (Embryonic Development of the Baikal Omul), Moscow: Nauka, 1968.\nDmitrieva, T.M. and Voinova, N.V., Specific Features of Energy Metabolism during Early Postnatal Ontogeny of the Baikal Omul, III Vsesoyuz. soveshch. po lososevidnym rybam: Tez. dokl. (Abstr. III All-Union Conf. on Salmoniform Fishes), Tolyatti, 1988, pp. 88–89.\nGos’kova, O.A., Interannual Fluctuations in the Abundance of Coregonid Fish Generations in the Synya River, the Lower Ob Basin, Biologiya, biotekhnika razvedeniya i sostoyanie zapasov sigovykh ryb: mat-ly soveshch. (Abstr. Conf. on the Biology, Breeding Technology, and the State of Coregonid Fish Stocks), Tyumen: Gosrybtsentr, 2010, pp. 105–109.\nIvanchinov, V.T., The Shchuchya River: Biology and Harvesting of Ob Herring, Raboty Ob’-Tazovskoi Nauchn. Rybkhoz. Stantsii, 1935, vol. 1, no. 2, pp. 1–139.\nKemmerikh, A.O., Gidrografiya Severnogo, Pripolyarnogo i Polyarnogo Urala (Hydrography of the Northern and Polar Urals), Moscow: Akad. Nauk SSSR, 1961.\nKharakteristika ekosistemy reki Severnoi Sos’vy (Characteristics of the Sos’va River Ecosystem), Sverdlovsk: Ural. Otd. Akad. Nauk SSSR, 1990.\nKhokhlova, L.V., Fluctuations in the Yield of Omul Fry in the Selenga River, Vopr. Ikhtiol., 1965, vol. 5, no. 3, pp. 419–425.\nKokova, V.E., Larval Feeding of the Common Whitefish Coregonus lavaretus ludoga Poljakow, Baikal Omul C. autumnalis migratorius (Georgi), and Peled Whitefish C. peled (Gmelin), Vopr. Ikhtiol., 1978, vol. 18, no. 6, pp. 1072–1079.\nKrasnoshchekov, S.I. On the Biology of Baikal Omul Larvae, Nauchno.-Tekhn. Byull. VNIORKh, 1958, nos. 6–7, pp. 51–54.\nKugaevskaya, L.V. and Sergienko, L.L., Ecological Requirements for Some Environmental Factors in Coregonid Larvae, III Vsesoyuz. soveshch. po biologii i biotekhnike razvedeniya sigovykh ryb: tez dokl. (Abstr. III All-Union Conf. on Biology and Breeding Technology of Coregonid Fishes), Tyumen, 1985, pp. 88–89.\nMaksimova, L.P., Lebedeva, L.I., and Korovina, V.M., Experience in Rearing Coregonid Fish Larvae Using Live Feed, Sb. Tr. Karel. Otd. GosNIORKh, 1967, vol. 5, no. 1, pp. 421–425.\nMetodicheskoe posobie po izucheniyu pitaniya i pishchevykh otnoshenii ryb v estestvennykh usloviyakh (Methodological Guidelines for Studies on the Feeding and Trophic Relationships of Fishes under Natural Conditions), Moscow: Nauka, 1974.\nMisharin, K.I., Natural Reproduction and Artificial Breeding of Omul in Lake Baikal, Izv. BGI Irkutsk. Gos. Univ., Irkutsk, 1953, vol. 14, nos. 1–4, pp. 3–133.\nMoskalenko, B.K., Biologicheskie osnovy ekspluatatsii i vosproizvodstva sigovykh ryb obskogo basseina (Biological Foundations of Exploitation and Reproduction of Coregonid Fish Stocks in the Ob Basin), Tyumen: Sredne-Ural. Knizhn. Izd., 1958.\nNorenko, D.S., Dzyumenko, I.F., and Dzyumenko, Z.M., On the Results of Rearing Juvenile Baikal Omul, Peled Whitefish, and Sturgeon in Ponds of the Vei’skii Fish Hatchery, in Ryby i rybnoe khozyaistvo Vostochnoi Sibiri (Fishes and Fisheries of Eastern Siberia), Ulan-Ude: Buryat. Knizhn. Izd., 1977.\nPakhorukov, A.M., Izuchenie raspredeleniya ryb v vodokhranilishchakh i ozerakh (Studies on the Distribution of Fishes in Reservoirs and Lakes), Moscow: Nauka, 1980.\nPavlov, D.S., Biologicheskie osnovy upravleniya povedeniem ryb v potoke vody (Biological Foundations of Control over Fish Behavior in the Current), Moscow: Nauka, 1979.\nPavlov, D.S., Nezdolii, V.K., Khodorevskaya, R.P., et al., Pokatnaya migratsiya molodi ryb v rekakh Volge i Ili (Downstream Migration of Fish Early Life Stages in the Volga and Ili Rivers), Moscow: Nauka, 1981.\nPavlov, D.S., Kostin, V.V., Nezdolii, V.K, et al., Pokatnaya migratsiya ryb iz vodoemov s zamedlennym vodoobmenom (Downstream Migration of Fishes from Water Bodies with Retarded Water Exchange), Moscow: Inst. Eksp. Morfol. Ekol. Zhiv. Akad. Nauk SSSR, 1985.\nPavlov, D.S., Mikheev, V.K, Vasil’ev, M.V., and Pekhlivanov, L.Z., Pitanie, raspredelenie i migratsii molodi ryb iz vodokhranilishcha “Aleksandr Stamboliiski” (Feeding, Distribution, and Migration of Fish Early Life States from the Aleksandr Stamboliiski Reservoir), Moscow: Nauka, 1988.\nPavlov, D.S, Lupandin, A.I., and Kostin, V.V., Mekhanizmy pokatnoi migratsii molodi rechnykh ryb (Mechanisms of Downstream Migration of Early Life Stages of Riverine Fishes), Moscow: Nauka, 2007.\nPrasolov, P.P., Assessment of Natural Reproduction of Coregonid Fishes in the Voikar River Basin, Puti povysheniya produktivnosti i ratsional’nogo ispol’zovaniya rybnykh resursov vnutrennikh vodoemov: Tez. dokl. (Abstr. Conf. on Approaches to Improvement of Productivity and Rational Management of Fish Resources in Inland Waters), Tyumen, 1988, pp. 20–22.\nReshetnikov, Yu.S., Mukhachev, K.S., Bolotova, N.L., et al., Pelyad’ (The Peled Whitefish), Moscow: Nauka, 1989.\nSemenchenko, S.M., Effect of the Duration of Starvation on the Subsequent Growth and Energy Metabolism of Baikal Omul Larvae, IV konf. po rannemu ontogenezu ryb: Tez. dokl (Abstr. IV Conf. on Early Fish Ontogeny), Murmansk, 1988, part 2, pp. 90–92.\nSemenchenko, S.M. and Semenchenko, I.V., Larval Feeding in the Barguzin Population of Baikal Omul during Downstream Migration, Problemy ekologii Pribaikal’ya: Tez. dokl. 3-i Vsesoyuz. konf. (Ecological Problems in the Baikal Region: Abstr. 3rd All-Union Conf.), Irkutsk, 1988, part 3, p. 141.\nSergienko, L.L., Biological Bases for Improvement of Coregonid Fish Reproduction in Hatcheries, Extended Abstract of Cand. Sci. (Biol.) Dissertation, Yekaterinburg, 1995.\nSergienko, L.L. and Kugaevskaya, L.V., The Lower Temperature Threshold for the Onset of Feeding in Coregonid Larvae, IV Vsesoyuz. soveshch. po biologii i biotekhnike razvedeniya sigovykh ryb: Tez dokl. (Abstr. IV All-Union Conf. on Biology and Breeding Technology of Coregonid Fishes), Leningrad, 1990, pp. 67–68.\nShcherbakov, A.M., Dynamics of the Downstream Migration of Baikal Omul Larvae from Spawning Grounds on the Kichera River, in Dinamika chislennosti produtsirovaniya ryb Baikala (Dynamics of Abundance and Production of Baikal Fishes), Novosibirsk, 1983, pp. 141–152.\nShestakov, A.V., Some Results of Studies on the Ecology of Coregonid Fishes at Early Stages of Ontogeny in the Anadyr River, in Biologicheskie problemy Severa: Sovremennye problemy sigovykh ryb (Biological Problems in the North: Current Problems with Coregonid Fishes), Vladivostok, 1991a.\nShestakov, A.V., Initial Data on the Dynamics of Downstream Migration of Coregonid Fish Larvae in the Anadyr River, Vopr. Ikhtiol., 1991b, vol. 31, no. 1, pp. 65–72.\nShirobokov, I.I., Effects of Biotic and Abiotic Factors on the Timing of Transition to Active Feeding in Lake Whitefish Larvae, in Morfologiya i ekologiya ryb (Morphology and Ecology of Fishes), Novosibirsk, 1987, pp. 64–77.\nShumilov, I.P., Dynamics of Downstream Migration of Baikal Omul Larvae from Spawning Grounds on the Upper Angara River, in Biologiya ozer (Biology of Lakes), Vilnus, 1970, pp. 290–298.\nSorokin, V.N. and Sorokina, A.A., Reproduction and Ecology of Early Life Stages in the Selenga Population of Baikal Omul, in Biologicheskaya produktivnost’ pelagiali Baikala i ee izmenchivost’ (Biological Productivity and Its Variation in the Lake Baikal Pelagic Zone), Novosibirsk, 1977, pp. 141–155.\nSorokin, B.H., Sorokina, A.A., Mikhalkin, A.F., and Sherbakova, A.M., Characteristics of Spawning Grounds and Downstream Migration of North Baikal Omul Larvae, in Ozera Pribaikal’skogo uchastka zony BAM (Lakes in the Baikal Region of the Baikal-Amur Railroad Zone), Novosibirsk, 1981, pp. 185–194.\nToporkov, I.G., Downstream Migration of Baikal Omul Larvae in the Bol’shaya River in 1960–1961, in Kratkie soobshcheniya i doklady o nauchnoi rabote (Brief Communications and Reports on Scientific Research), Irkutsk, 1964, pp. 39–48.\nVolkova, L.V., Ecomorphological Patterns in Peled Whitefish Development, Extended Abstract of Cand. Sci. (Biol.) Dissertation, Minsk, 1965.\nYusupov, P.P., Dynamics of Downstream Migration and Abundance of Coregonid Larvae in the Anadyr River, Sb. Tr. VNII Prud. Ryb. Khoz., 1990, no. 59, pp. 175–183.\nZamyatin, V.A., Efficiency of Natural Reproduction of Coregonid Fishes in the Ob River, in Problemy rybnogo khozyaistva vodoemov Sibiri (Fishery Problems in Water Bodies of Siberia), Tyumen, 1971, pp. 96–101.",{"VOID":672},"10.1134\u002FS1067413612040042","2024-06-23T16:23:38.464+00:00","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1134\u002FS1067413612040042",[676,691],{"id":677,"sortIndex":21,"researcher":20,"roles":678,"affiliations":679,"properties":688,"displayName":690,"givenName":20,"familyName":20},"06deefbe-03b3-4807-8424-6edbb52c822b",[179],[680],{"id":681,"sortIndex":21,"affiliation":682,"properties":20},"1867d550-4ab4-484e-80f3-8a665894cc4d",{"id":681,"createTime":20,"updateTime":20,"relativeEntities":683,"slug":20,"properties":684,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":687,"statistic":20},[],{"title":685},{"VI":686},"Institute of Plant and Animal Ecology, Ural Branch, Russian Academy of Sciences, Yekaterinburg, Russia",[],{"title":689},{"VI":690},"V. 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Manag., 2005, vol. 30, pp. 71–73. doi 10.3969\u002Fj.issn.1673-1212.2005.04.026",{},{"id":20,"text":1315,"url":20,"identifiers":1316},"The Forestry of Jilin, Beijing: China Forestry Publishing House, 1988.",{},{"id":1318,"createTime":1319,"updateTime":1320,"relativeEntities":1321,"slug":1322,"properties":1323,"entityType":170,"verifyStatus":171,"verifyTime":1334,"verifyNote":173,"languages":20,"translateLanguages":20,"viewCount":21,"primaryUrl":1335,"fullTextUrl":20,"authors":1336,"publicationType":205,"publisherRelationship":1365,"citationCount":20,"citationInfo":20,"publishDate":1413,"publishYear":1414,"citationAnalyzeStatus":19,"lastCitationAnalyze":1415,"indexDatabases":1416,"openAccess":20,"references":20,"isForceReanalyzing":261},"dda90d29-a049-4db3-8147-4a86b090ac72","2024-01-20T10:23:36.364+00:00","2026-07-16T13:58:47.921+00:00",[],"Demographic-features-of-populations-of-the-marsh-frog-Rana-ridibunda-Pall-introduced-into-water-bodies-of-the-Middle-Urals",{"abstract":1324,"title":1326,"gsPaper":1328,"references":1330,"doi":1332},{"EN":1325},"Demographic characteristics of marsh frog (Rana ridibunda Pall.) populations have been studied in cooling reservoirs of Middle Ural thermal power plants, where this species was introduced accidentally. The reservoirs are similar in hydrochemical characteristics but differ in the thermal regime. The populations studied have been found to differ from the reference (natural) populations and from each other in a number of parameters, including the size and age composition of spawners, the type of spawning, and fecundity. Analysis of the results indicates that the observed differences have adaptive significance.",{"EN":1327},"Demographic features of populations of the marsh frog (Rana ridibunda Pall.) introduced into water bodies of the Middle Urals",{"VOID":1329},"[\"3938033602543774645\"]",{"VOID":1331},"Arano, B., Llorente, K., Garcia-Paris, M., and Herrero, P., Species Translocation Menaces Iberian Waterfrogs, Conserv. Biol, 1995, no. 1, pp. 196–198.\nBannikov, A.G., On Specific Features and Timing of Reproduction in Anuran Amphibians of Different Ecological Groups, Uch. Zap. Mock. Gos. Ped. Inst. im. V.P. 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(Problems in the Geography of the Urals and Bordering Areas: Proc. 2nd Interregional Sci.-Pract. Conf.), Chelyabinsk, 2006, pp. 112–116.\nKleinenberg, S.E. and Smirina, E.M., On Methods for Determining the Age of Amphibians, Zool. Zh., 1969, vol. 48, no. 7, pp. 1090–1094.\nKubantsev, B.S., Zhukova, T.I., and Nikiforova, T.N., Reproductive Biology of the Marsh Frog and Green Toad in the Northern Caucasus, in Gerpetologiya (Hetrpetology), Krasnodar: Kuban. Gos. Univ., 1979, pp. 19–36.\nKyriakopoulou-Sklavounou, P. and Loumbourdis, N., Annual Ovarian Cycle in the Frog, Rana ridibunda, in Northern Greece, J. Herpetol., 1990, vol. 24, no. 2, pp. 185–191.\nMisyura, A.N., The Ecology of a Background Amphibian Species in the Central Steppe Dnieper Region under Conditions of Industrial Pollution of Water Bodies, Extended Abstract of Cand. Sci. (Biol.) Dissertation, Moscow, 1989.\nMoore, I., Geographic Variation of Adaptive Characters in Rana pipiens Schreber, Evolution, 1949, no. 3, p. 24.\nMoyle, P.B., Effects of Introduced Bullfrogs, Rana catesbeiana, on the Native Frogs of Sun Joaquin Valley, California, Copeia, 1973, no. 1, pp. 18–22.\nMurkina, N.V., The Black-Spotted Frog from the Kara Kum Desert, Nauch. Tr. Mosk. Vet. Akad., 1976, vol. 84, pp. 120–133.\nPerril, S.A. and Daniel, R.E., Multiple Egg Clutches in Hyla regilla, H. cinerea, and H. gratiosa, Copeia, 1983, no. 2, pp. 513–515.\nPisanets, E.M., Zemnovodni Ukraini (Amphinians in Ukraine), Kiiv: Izd. Raevs’kogo, 2007.\nShvarts, S.S., Smirnov, V.S., and Dobrinskii, L.N., Metod morfofiziologicheskikh indikatorov v ekologii nazemnykh pozvonochnykh zhivotnykh (The Method of Morphophysiological Indicators in the Ecology of Terrestrial Vertebrates), Sverdlovsk: Ural. Fil. Akad. Nauk SSSR, 1968.\nToporkova, L.Ya., Effect of Human Activities on the Distribution of Amphibians, in Voprosy gerpetologii (Problems in Herpetology), Leningrad: Nauka, 1977, pp. 204–205.\nToporkova, L.Ya., Bogolyubova, T.V., and Khafizova, R.T., On the Ecology of the Marsh Frog Introduced into Water Bodies of the Mountain Taiga Zone of the Northern Urals, in Fauna Urala i Evropeiskogo Severa (The Fauna of the Urals and Northern Europe), Sverdlovsk: Ural. Gos. Univ., 1979.\nVasil’chikova, A.P., Popov, A.N., and Berdysheva, G.V., Phytoplankton Asd an Indicator of Water Quality in Cooling Reservoirs in the Urals, in Gidrobiologicheskaya kharakteristika vodoemov Urala (Hydrobiological Characteristics of Water Bodies in the Urals), Sverdlovsk: Ural. Otd. Akad. Nauk SSSR, 1989, pp. 13–22.\nVershinin, V.L. and Ivanova, N.L., Specific Features of Trophic Connections of Rana ridibunda Pall. As an Introduced Species Depending on Habitat Conditions, Povolzh. Ekol. Zh., 2006, no. 3, pp. 119–128.\nVolyanskii, B., Amphibians and Reptiles in the Environs of the City of Odessa, Zap. Prirod.-Mat. Nauk Odessk. Nauk. Tovar. Ukr. Akad. Nauk, 1928, no. 2, pp. 75–109.\nWilliamson, J., Seasonal Changes in the Clutch Parameters of the Frog Ranidella signifera, Abstr. Second World Congr. of Herpetologists,. 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Nauchn. Tsentr Akad. Nauk SSSR, 1973.",{"id":20,"text":1670,"url":20,"identifiers":20},"Morozov, G.F., Uchenie o lese (The Theory of Forest), Moscow: Gosizdat, 1930.",{"id":20,"text":1672,"url":20,"identifiers":20},"Okrestnosti Ekaterinburga. Topograficheskaya karta. Masshtab 1:100000 (Surroundings of Yekaterinburg. Topographic Map, 1:100000), Voenno-Kartograficheskaya Fabrika UrVO, 2000.",{"id":20,"text":1674,"url":20,"identifiers":20},"Rozenberg, G.S., Adequacy of Mathematical Simulation of Ecological Systems, Ekologiya, 1989, vol. 20, no. 6, pp. 8-14.",{"id":20,"text":1676,"url":20,"identifiers":20},"Shavnin, S.A., Fomin, V.V., and Marina, N.V., Application of the Generalized State Index Determination to Ecological Monitoring of Forest in Polluted Areas, in Measurements and Modeling in Environmental Pollution, Southampton: Computational Mechanics Publications, 1997, pp. 399-407.",{"id":20,"text":1678,"url":20,"identifiers":20},"Sukachev, V.N., Izbrannye trudy (Collected Works), Leningrad: Nauka, 1972, vol. 1.",{"id":20,"text":1680,"url":20,"identifiers":20},"Sysuev, V.V. and Sharyi, P.A., Classification of the Types of Forest Site Conditions for the Purposes of Forest Management by the Plot Method, Lesovedenie, 2000, no. 5, pp. 10-19.",{"id":20,"text":1682,"url":20,"identifiers":20},"Vorobeichik, E.L. and Khantemirova, E.V., Response of For-est Phytocenoses to Technogenic Pollution: Dose–Effect Relationship, Ekologiya, 1994, vol. 25, no. 3, pp. 31-43.",{"id":20,"text":1684,"url":20,"identifiers":20},"Yuknis, R.A. and Lekene, M.I., Growth and Productivity of the Tree Layer in Forest Ecosystems under Conditions of Environmental Pollution, in Problemy ekologicheskogo monitoringa i modelirovaniya ekosistem (Problems of Ecological Monitoring and Ecosystem Modeling), Leningrad: Gidrometeoizdat, 1987, vol. 10, pp. 145-161.",{"id":20,"text":1686,"url":20,"identifiers":20},"Zubareva, R.S., Spatial Differentiation and Classification of Forest Types in the Bilimbaevskii Forest, in Nauchnye osnovy ispol'zovaniya i vosproizvodstva taezhnykh lesov Srednego Urala (Scientific Principles of Taiga Forest Use and Reproduction in the Middle Urals), Sverdlovsk, 1986, pp. 16-44.",{"id":1688,"createTime":1689,"updateTime":1690,"relativeEntities":1691,"slug":1692,"properties":1693,"entityType":170,"verifyStatus":171,"verifyTime":1702,"verifyNote":173,"languages":20,"translateLanguages":20,"viewCount":21,"primaryUrl":1703,"fullTextUrl":20,"authors":1704,"publicationType":205,"publisherRelationship":1720,"citationCount":525,"citationInfo":1768,"publishDate":1771,"publishYear":1769,"citationAnalyzeStatus":19,"lastCitationAnalyze":1772,"indexDatabases":1773,"openAccess":20,"references":1774,"isForceReanalyzing":261},"65c95d23-e7f8-4935-800d-42dd2cc69142","2023-12-06T22:59:32.016+00:00","2026-07-07T05:55:32.086+00:00",[],"Ecology-of-reproduction-of-the-red-king-crab",{"abstract":1694,"title":1696,"gsPaper":1698,"doi":1700},{"EN":1695},"Conditions for reproduction of the red king crab Paralithodes camtschatica (Tilesius) on scallop plantations in Primorye have been studied. It has been found that the settling of larvae and the growth of juveniles to the size sufficient for their survival take place only in the cleanest water areas of Peter the Great Bay. Solar activity (expressed as the Wolfer number) is one of the most important abiotic factors affecting P. camtschatica reproduction. The population dynamics of juvenile crabs are characterized by fluctuations with two-year and five-year cycles.",{"EN":1697},"Ecology of reproduction of the red king crab",{"VOID":1699},"[\"3317159610290098932\"]",{"VOID":1701},"10.1134\u002FS1067413607020087","2024-04-29T06:19:23.218+00:00","http:\u002F\u002Flink.springer.com\u002F10.1134\u002FS1067413607020087",[1705],{"id":1706,"sortIndex":21,"researcher":20,"roles":1707,"affiliations":1708,"properties":1717,"displayName":1719,"givenName":20,"familyName":20},"1eaebf44-67dd-48d1-adf3-333554644c1b",[179],[1709],{"id":1710,"sortIndex":21,"affiliation":1711,"properties":20},"2fd29d06-1f86-4017-b21d-697e13352149",{"id":1710,"createTime":20,"updateTime":20,"relativeEntities":1712,"slug":20,"properties":1713,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":1716,"statistic":20},[],{"title":1714},{"VI":1715},"Zhirmunskii Institute of Marine Biology, Far East Division, Russian Academy of Sciences, Vladivostok, Russia",[],{"title":1718},{"VI":1719},"D. 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Translated under the title Ekologiya: Osobi, populyatsii i soobshchestva, Moscow: Mir, 1989.",{},{"id":20,"text":1779,"url":20,"identifiers":1780},"Chaplygina, S.F., Effects of Repellents on the Growth of the Hydroid Obelia longissima under Experimental Conditions, in Rasprostranenie i ekologiya sovremennykh i iskopaemykh morskikh organizmov (Distribution and Ecology of Recent and Fossil Marine Organisms), Vladivostok: Dal’nevost. Otd. Akad. Nauk SSSR, 1990.",{},{"id":20,"text":1782,"url":20,"identifiers":1783},"Chelysheva, E.A., Epibioses of Ahnfeltia in Peter the Great Bay, Izv. Tikhookean. Nauchno-Issled. Inst. Rybn. Khoz. Okeanogr., 1955, vol. 43, pp. 69–77.",{},{"id":20,"text":1785,"url":20,"identifiers":1786},"Chistyakov, V.F., Physical Variations of Sun and Its Activity, Izv. Tikhookean. Nauchno-Issled. Inst. Rybn. Khoz. Okeanogr., 1997, vol. 122, pp. 40–71.",{},{"id":20,"text":1788,"url":20,"identifiers":1789},"Chistyakov, V.F., Solar Pulsations and Climate Variations, Vestn. Dal’nevost. Otd. Ross. Akad. Nauk, 2000, no. 3, pp. 42–49.",{},{"id":20,"text":1791,"url":20,"identifiers":1792},"Davydov, I.V., On the Problem of Sun-Depended Variation in the Frequencies of Atmospheric Circulation Types, Izv. Tikhookean. Nauchno-Issled. Inst. Rybn. Khoz. Okeanogr., 1975, vol. 96, pp. 19–32.",{},{"id":20,"text":1794,"url":20,"identifiers":1795},"Davydov, I.V., Some Features of Population Dynamics in Pink Salmon Oncorhynchus gorbuscha (Walbaum): An Example of Western Kamchatka Population, Izv. Tikhookean. Nauchno-Issled. Inst. Rybn. Khoz. Okeanogr., 1981, vol. 105, pp. 3–12.",{},{"id":20,"text":1797,"url":20,"identifiers":1798},"Donaldson, W.E., Byersdorfer, S., Pengilly, D., and Blau, S.F., Growth of Red King Crab, Paralithodes camtschaticus (Tilesius, 1815), in Artificial Habitat Collectors at Kodiak, Alaska, J. Shellfish Res., 1992, vol. 11, no. 1, pp. 85–89.",{},{"id":20,"text":1800,"url":20,"identifiers":1801},"Duke, W., Obrabotka dannykh na PK v primerakh (Examples of Data Processing with PC), St. Petersburg: Piter, 1997.",{},{"id":20,"text":1803,"url":20,"identifiers":1804},"Fedoseev, V.Ya. and Gabaev, D.D., Method for Rearing Red King Crab in Collectors, Tez. dokl. Vses. konf. Nauchnotekhnicheskie problemy marikul’tury v strane (Abstr. All-Union Conf. on Scientific and Technical Problems of Mariculture in Russia), Vladivostok: Tikhookean. Nauchno-Issled. Inst. Rybn. Khoz. Okeanogr., 1989, pp. 119–120.",{},{"id":20,"text":1806,"url":20,"identifiers":1807},"Fedoseev, V.Ya. and Grigor’eva, N.I., Reproduction of the Red King Crab in Suspended Plantations in Posiet Bay, the Sea of Japan, Rybn. Khoz., 2001, no. 2, pp. 35–36.",{},{"id":20,"text":1809,"url":20,"identifiers":1810},"Gabaev, D.D., Settling of Bivalve and Starfish Larvae on Collectors in Posiet Bay, the Sea of Japan, Biol. Morya, 1981, no. 4, pp. 59–65.",{},{"id":20,"text":1812,"url":20,"identifiers":1813},"Gabaev, D.D., Trends in Settling of Some Invertebrates on Collectors in Posiet Bay, Vtoraya Vses. konf. po morskoi biologii: Tez. dokl. (Abstr. Second All-Union Conf. on Marine Biology), Vladivostok: Dal’nevost. Nauch. Tsentr Akad. Nauk SSSR, 1982, part 3, p. 54.",{},{"id":20,"text":1815,"url":20,"identifiers":1816},"Gabaev, D. D., USSR Inventor’s Certificate No. 1178371, Byull. Izobret., 1985, no. 34.",{},{"id":20,"text":1818,"url":20,"identifiers":1819},"Gabaev, D.D., On Long-Term Prognosis of the Abundance of Commercial Bivalves Settling on Collectors, Tretii Vses. s’ezd okeanol.: Tez. dokl. (Abstr. Third All-Union Congress of Oceanologists), Leningrad: AANII, 1987, part 1, pp. 99–100.",{},{"id":20,"text":1821,"url":20,"identifiers":1822},"Gabaev, D.D., On some Features of Reproduction of Commercial Bivalves in Primorye, Ratsional’noe ispol’zovanie bioresursov Tikhogo okeana: Tez. dokl. Vses. konf., (Abstr. All-Union Conf. on Rational Use of Biological Resources of the Pacific Ocean), Vladivostok, 1991, pp. 182–183.",{},{"id":20,"text":1824,"url":20,"identifiers":1825},"Gabaev, D.D. and L’vov, S.M., USSR Inventor’s Certificate No. 826998, Byull. Izobret., 1981, no. 17.",{},{"id":20,"text":1827,"url":20,"identifiers":1828},"Gabaev, D.D., L’vov, S.M., and Polikarpova, G.V., Methods of Growing Japanese Scallops, Rybn. Khoz., 1986, no. 5, pp. 23–25.",{},{"id":20,"text":1830,"url":20,"identifiers":1831},"Grigor’eva, N.I. and Fedoseev, V.Ya., On King Crab Reproduction in Southern Primorye, Vestn. Dal’nevost. Otd. Ross. Akad. Nauk, 2000, no. 1, pp. 68–73.",{},{"id":20,"text":1833,"url":20,"identifiers":1834},"Izhevskii, G.K., Sistemnaya osnova prognozirovaniya okeanologicheskikh uslovii i vosproizvodstva promyslovykh ryb (Systemic Principles of Forecasting Oceanological Conditions and Reproduction of Commercial Fishes), Moscow: Vsesoyuzn. Inst. Rybn. Khoz. Okeanogr., 1964.",{},{"id":20,"text":1836,"url":20,"identifiers":1837},"Kobyakova, Z.I., On Some Changes in the Fauna of Coastal Areas in Peter the Great Bay, the Sea of Japan, Vestn. Leningr. Univ., 1962, no. 21, pp. 63–71.",{},{"id":20,"text":1839,"url":20,"identifiers":1840},"Kuvatani, Yu., Cultivation of King Crab and Japanese Scallop in Japan, Biol. Morya, 1989, no. 1, pp. 66–71.",{},{"id":20,"text":1842,"url":20,"identifiers":1843},"Kuz’min, S.A., Biology, Distribution, and Population Dynamics of the Red King Crab Paralithodes camtschaticus (Tilesius, 1815) in the Barents Sea, Extended Abstract of Cand. Sci. (Biol.) Dissertation, Moscow: Russ. Akad. Sci., 2000.",{},{"id":20,"text":1845,"url":20,"identifiers":1846},"Kuz’min, S.A. and Gudimova, E.N., Vselenie kamchatskogo kraba v Barentsevo more. Osobennosti biologii, perspektivy promysla (Introduction of the King Crab to the Barents Sea: Specific Biological Features and Prospects for Shellfishing), Apatity: Kol’sk. Nauch. Tsentr Ross. Akad. Nauk, 2002.",{},{"id":20,"text":1848,"url":20,"identifiers":1849},"Levin, V.S., Kamchatskii krab Paralithodes camtschaticus. Biologiya, promysel, vosproizvodstvo (The Red King Crab Paralithodes camtschaticus: Biology, Harvesting, and Reproduction), St. Petersburg: Izhitsa, 2001.",{},{"id":20,"text":1851,"url":20,"identifiers":1852},"Makarov, R.R., Lichinki krevetok, rakov-otshel’nikov i krabov zapadnokamchatskogo shel’fa i ikh raspredelenie (Larvae of Shrimps, Hermit Crabs, and Crabs of the Western Kamchatka Shelf and Their Distribution), Moscow: Nauka, 1966.",{},{"id":20,"text":1854,"url":20,"identifiers":1855},"Maslennikov, S.I., Kashin, I.A., and Levin, V.S., Harvesting and Reproduction of the King Crab in Coastal Regions of Primorye, Vestn. Dal’nevost. Otd. Ross. Akad. Nauk, 1999, no. 3, pp. 100–106.",{},{"id":20,"text":1857,"url":20,"identifiers":1858},"Neshiba, S., Okeanologiya. Sovremennye predstavleniya o zhidkoi obolochke zemli (Oceanology. 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