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Slynko Yu. V., Boltachev A. R., , Slynko E. E.
The Taxonomic Status and Intraspecific Differentiation of the Black Sea Horse Mackerel, Trachurus mediterraneus ponticus (Aleev, 1956) (Carangidae) // Russian Journal of Marine Biology. 2018. Vol. 44, iss. 2. P. 112–121. https://doi.org/10.1134/S1063074018020104 Перевод БС 3 SCOPUS 0.277/Q4 WoS 0.409/Q4
The Taxonomic Status and Intraspecific Differentiation of the Black Sea Horse Mackerel, Trachurus mediterraneus ponticus (Aleev, 1956) (Carangidae) // Russian Journal of Marine Biology. 2018. Vol. 44, iss. 2. P. 112–121. https://doi.org/10.1134/S1063074018020104 Перевод БС 3 SCOPUS 0.277/Q4 WoS 0.409/Q4
Запись создана: 21-08-2018 13:30
Slynko Yu. V., Kulikova A. D., Slynko E. E.,
Genetic Changeability by Loci COI mtDNA for Different Coloring of Shell Phenotypes of Black Sea Mussel Mytilus galloprovincialis Lam. (Mollusca: Bivalvia: Mytilidae) // Russian Journal of Genetics. 2018. Vol. 54, iss. 8. P. 944-949. https://doi.org/10.1134/S1022795418080112 Перевод БС 3 SCOPUS 0.224/Q4 WoS 0.505/Q4
Genetic Changeability by Loci COI mtDNA for Different Coloring of Shell Phenotypes of Black Sea Mussel Mytilus galloprovincialis Lam. (Mollusca: Bivalvia: Mytilidae) // Russian Journal of Genetics. 2018. Vol. 54, iss. 8. P. 944-949. https://doi.org/10.1134/S1022795418080112 Перевод БС 3 SCOPUS 0.224/Q4 WoS 0.505/Q4
Запись создана: 03-09-2018 19:59
Slynko Yu. V., Slynko E. E., , Skvortsova E. G., Filinskaya O. V.
Molecular-genetic identification of chameleon goby Tridentiger trigonocephalus (Gill, 1859) in the Black Sea // Ecologica Montenegrina. 2020. Vol. 32. P. 46-52. https://doi.org/10.37828/em.2020.32.8 БС 2 SCOPUS 0.369/Q2
Molecular-genetic identification of chameleon goby Tridentiger trigonocephalus (Gill, 1859) in the Black Sea // Ecologica Montenegrina. 2020. Vol. 32. P. 46-52. https://doi.org/10.37828/em.2020.32.8 БС 2 SCOPUS 0.369/Q2
Запись создана: 23-07-2020 17:30
Slynko Yu. V., Slynko E. E., , ,
Mitochondrial DNA Barcoding of the Pacific Oyster Crassostrea gigas (Thunberg, 1793) (Mollusca: Bivalvia: Ostreidae), Cultivated in the Black Sea // Russian Journal of Genetics. 2018. Vol. 54, iss. 12. P. 1445-1451. https://doi.org/10.1134/S1022795418120153 Перевод БС 3 SCOPUS 0.224/Q4 WoS 0.505/Q4
Mitochondrial DNA Barcoding of the Pacific Oyster Crassostrea gigas (Thunberg, 1793) (Mollusca: Bivalvia: Ostreidae), Cultivated in the Black Sea // Russian Journal of Genetics. 2018. Vol. 54, iss. 12. P. 1445-1451. https://doi.org/10.1134/S1022795418120153 Перевод БС 3 SCOPUS 0.224/Q4 WoS 0.505/Q4
Запись создана: 06-02-2019 07:33
Slynko Yu. V., Slynko E. E., ,
The Black Sea Flexopecten species-complex (Mollusca: Bivalvia: Pectinidae): Shell morphology and 16S rDNA variation // Ecologica Montenegrina. 2020. Vol. 32. P. 10-18. https://doi.org/10.37828/em.2020.32.2 БС 2 SCOPUS 0.325/Q3
The Black Sea Flexopecten species-complex (Mollusca: Bivalvia: Pectinidae): Shell morphology and 16S rDNA variation // Ecologica Montenegrina. 2020. Vol. 32. P. 10-18. https://doi.org/10.37828/em.2020.32.2 БС 2 SCOPUS 0.325/Q3
Запись создана: 04-06-2020 10:02
Slynko Е. Е., Slynko Y. V.,
Adaptive strategy of Rapana venosa (Gastropoda, Muricidae) in the invasive population of the Black Sea // Biosystems Diversity. 2020. Vol. 28, no. 1. P. 48-52. https://doi.org/10.15421/012008 БС 3 SCOPUS –/– WoS –/–
Adaptive strategy of Rapana venosa (Gastropoda, Muricidae) in the invasive population of the Black Sea // Biosystems Diversity. 2020. Vol. 28, no. 1. P. 48-52. https://doi.org/10.15421/012008 БС 3 SCOPUS –/– WoS –/–
Запись создана: 28-04-2020 09:27
Sokolov S. G., Shchenkov S. V., Khasanov F. K., , Gordeev I. I.
Redescription and phylogenetic assessment of Helicometra antarcticae Holloway & Bier, 1968 (Trematoda, Opecoelidae), with evidence of non-monophyletic status of the genus Helicometra Odhner, 1902 // Zoosystema. 2022. Vol. 44, no. 15. P. 423-433. https://doi.org/10.5252/zoosystema2022v44a15 БС 2 SCOPUS 0.673/Q1 WoS 1.737/Q2
Redescription and phylogenetic assessment of Helicometra antarcticae Holloway & Bier, 1968 (Trematoda, Opecoelidae), with evidence of non-monophyletic status of the genus Helicometra Odhner, 1902 // Zoosystema. 2022. Vol. 44, no. 15. P. 423-433. https://doi.org/10.5252/zoosystema2022v44a15 БС 2 SCOPUS 0.673/Q1 WoS 1.737/Q2
Запись создана: 09-09-2022 17:06
Sokolov S., Vlasenkov S., Khasanov F.,
Phylogenetic Position of Lecithochirium musculus (Looss 1907) Nasir & Diaz, 1971 (Digenea: Hemiuridae) ex Ophidion rochei Müller, 1845 (Ophidiiformes: Ophidiidae) from the Black Sea // Thalassas. 2026. Vol. 42. Art. no. 90 (10 p.). https://doi.org/10.1007/s41208-026-01106-3 БС 3 SCOPUS 0.286/Q3 WoS 0.700/Q4
Phylogenetic Position of Lecithochirium musculus (Looss 1907) Nasir & Diaz, 1971 (Digenea: Hemiuridae) ex Ophidion rochei Müller, 1845 (Ophidiiformes: Ophidiidae) from the Black Sea // Thalassas. 2026. Vol. 42. Art. no. 90 (10 p.). https://doi.org/10.1007/s41208-026-01106-3 БС 3 SCOPUS 0.286/Q3 WoS 0.700/Q4
Запись создана: 15-04-2026 11:21
The Diffusion Capacity of the Hematoparenchymal Barrier in Mammalian and Marine Fish Skeletal Muscles // Journal of Evolutionary Biochemistry and Physiology. 2018. Vol. 54, iss 1. P. 43–49. https://doi.org/10.1134/S0022093018010052 Перевод БС 4 WoS 0.455/Q4
Запись создана: 22-08-2018 07:33
Oxygen Regime of Skeletal Muscles in Teleost Fishes and the Mechanisms of Its Functional Correction (Short Review) // Biology Bulletin Reviews. 2020. Vol. 10, no. 1. P. 28-37. https://doi.org/10.1134/S2079086420010089 Перевод РИНЦ –
Запись создана: 11-03-2020 13:36
Functional Effects of the Use of Anesthetics on Teleostean Fishes (Review) // Inland Water Biology. 2021. Vol. 14, no. 1. P. 67-77. https://doi.org/10.1134/S1995082920060139 Перевод БС 3 SCOPUS 0.331/Q3 WoS 0.481/Q4
Запись создана: 02-03-2021 14:06
Content of Methemoglobin in the Blood of Teleost Fish: Effect of Environmental Factors and Natural States of the Organism (Review) // Inland Water Biology. 2021. Vol. 14, no. 6. P. 747-757. https://doi.org/10.1134/S1995082921060122 Перевод БС 3 SCOPUS 0.274/Q4 WoS 0.472/Q4
Запись создана: 13-12-2021 10:30
On the Nature of the Development of Natural Endogenous Hypoxic States in Aquatic Organisms // Biology Bulletin Reviews. 2023. Vol. 13, no. 5. P. 431-441. https://doi.org/10.1134/S2079086423050055 Перевод РИНЦ –
Запись создана: 22-09-2023 17:39
Cases of a Spontaneous Increase in Methemoglobin Concentration in Fish Blood during the Annual Cycle // Inland Water Biology. 2023. Vol. 16, no. 4. P. 769-775. https://doi.org/10.1134/S1995082923040181 Перевод БС 3 SCOPUS 0.290/Q3 WoS 0.900/Q4
Запись создана: 23-08-2023 10:53
Monocyclicity in the Function of the Erythroid Hematopoietic Lineage in Teleost Fish Exemplified by Platichthys Flesus (Linnaeus, 1758) // Doklady Biological Sciences. 2023. Vol. 512, iss. 1. P. 307-310. https://doi.org/10.1134/S0012496623700564 Перевод БС 2 SCOPUS 0.216/Q3
Запись создана: 15-12-2023 08:47
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Catalase and Superoxide Dismutase Activity in Erythrocytes and the Methemoglobin Level in Blood of the Black Scorpionfish (Scorpaena porcus, Linnaeus 1758) Exposed to Acute Hypoxia // Russian Journal of Marine Biology. 2021. Vol. 47, no. 4. P. 283-289. https://doi.org/10.1134/S106307402104012X Перевод БС 3 SCOPUS 0.255/Q4 WoS 0.621/Q4
Catalase and Superoxide Dismutase Activity in Erythrocytes and the Methemoglobin Level in Blood of the Black Scorpionfish (Scorpaena porcus, Linnaeus 1758) Exposed to Acute Hypoxia // Russian Journal of Marine Biology. 2021. Vol. 47, no. 4. P. 283-289. https://doi.org/10.1134/S106307402104012X Перевод БС 3 SCOPUS 0.255/Q4 WoS 0.621/Q4
Запись создана: 22-09-2021 17:00
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Methemoglobin and the Activities of Catalase and Superoxide Dismutase in Nucleated Erythrocytes of Scorpaena porcus (Linnaeus, 1758) under Experimental Hypoxia (in vitro) // Biophysics. 2020. Vol. 65, iss. 3. P. 452-459. https://doi.org/10.1134/S0006350920030197 Перевод БС 3 SCOPUS 0.226/Q4
Methemoglobin and the Activities of Catalase and Superoxide Dismutase in Nucleated Erythrocytes of Scorpaena porcus (Linnaeus, 1758) under Experimental Hypoxia (in vitro) // Biophysics. 2020. Vol. 65, iss. 3. P. 452-459. https://doi.org/10.1134/S0006350920030197 Перевод БС 3 SCOPUS 0.226/Q4
Запись создана: 02-09-2020 11:59
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Effect of Acute Hypoxia on the Functional State of Erythrocytes and Hemoglobin in Black Scorpionfish // Journal of Stress Physiology and Biochemistry. 2023. Vol. 19, no. 3. P. 5-15. http://www.jspb.ru/issues/2023/N3/JSPB_2023_3_05-15.html БС 3 РИНЦ 0.207
Effect of Acute Hypoxia on the Functional State of Erythrocytes and Hemoglobin in Black Scorpionfish // Journal of Stress Physiology and Biochemistry. 2023. Vol. 19, no. 3. P. 5-15. http://www.jspb.ru/issues/2023/N3/JSPB_2023_3_05-15.html БС 3 РИНЦ 0.207
Запись создана: 16-08-2023 07:51
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The Effect of Acute Hypoxia and Hydrogen Sulfide Contamination on Succinate Dehydrogenase Activity and the Adenylate Complex in Tissues in the Bivalve Mollusk Anadara kagoshimensis (Tokunaga, 1906) // Russian Journal of Marine Biology. 2024. Vol. 50, no. 6. P. 312-318. https://doi.org/10.1134/S1063074024700445 Перевод БС 3 SCOPUS 0.207/Q4 WoS 0.500/Q4
The Effect of Acute Hypoxia and Hydrogen Sulfide Contamination on Succinate Dehydrogenase Activity and the Adenylate Complex in Tissues in the Bivalve Mollusk Anadara kagoshimensis (Tokunaga, 1906) // Russian Journal of Marine Biology. 2024. Vol. 50, no. 6. P. 312-318. https://doi.org/10.1134/S1063074024700445 Перевод БС 3 SCOPUS 0.207/Q4 WoS 0.500/Q4
Запись создана: 16-01-2025 11:14
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Effect of Hydrogen Sulfide Loading on the Activity of Energy Metabolism Enzymes and the Adenylate System in Tissues of the Anadara kagoshimensis Clam // Inland Water Biology. 2022. Vol. 15, no. 5. P. 632-640. https://doi.org/10.1134/S1995082922050194 Перевод БС 3 SCOPUS 0.288/Q3 WoS 0.686/Q4
Effect of Hydrogen Sulfide Loading on the Activity of Energy Metabolism Enzymes and the Adenylate System in Tissues of the Anadara kagoshimensis Clam // Inland Water Biology. 2022. Vol. 15, no. 5. P. 632-640. https://doi.org/10.1134/S1995082922050194 Перевод БС 3 SCOPUS 0.288/Q3 WoS 0.686/Q4
Запись создана: 18-10-2022 12:05


