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Kuzminova N. S., Melnikova E. B., Petrova T. N., , Maltsev V. I.,
Distinctive Features of the Biology of Black Scorpionfish Scorpaena porcus Linnaeus from Marine Waters along the Coast of Southeast and Southwest Crimea // Contemporary Problems of Ecology. 2024. Vol. 17, iss. 3. P. 433-444. https://doi.org/10.1134/S1995425524700161 Перевод БС 2 SCOPUS 0.259/Q3 WoS 0.700/Q4
Distinctive Features of the Biology of Black Scorpionfish Scorpaena porcus Linnaeus from Marine Waters along the Coast of Southeast and Southwest Crimea // Contemporary Problems of Ecology. 2024. Vol. 17, iss. 3. P. 433-444. https://doi.org/10.1134/S1995425524700161 Перевод БС 2 SCOPUS 0.259/Q3 WoS 0.700/Q4
Запись создана: 24-06-2024 12:05
Kuzminova N., Мartemyanova K.
Distinctive features of species of Spicara genus in Sevastopol coastal area // Eurasian Journal of Biological and Chemical Sciences. 2020. Vol. 3, suppl. 1. P. 189-194. https://doi.org/10.46239/ejbcs.736056
Distinctive features of species of Spicara genus in Sevastopol coastal area // Eurasian Journal of Biological and Chemical Sciences. 2020. Vol. 3, suppl. 1. P. 189-194. https://doi.org/10.46239/ejbcs.736056
Запись создана: 29-12-2020 11:34
Intercellular and Intracellular Networks: Signal Processing and Evolution // Archives in Neurology and Neuroscience. 2023. Vol. 15, iss. 5. Art. no. ANN.MS.ID.000875 (3 p.). https://doi.org/10.33552/ANN.2023.14.000875 РИНЦ –
Запись создана: 20-10-2023 13:02
, Grishin I. Yu., Vtyurina D. N.
Spatial Models of Piezo Proteins and Protein‒Protein Interaction Networks in Trichoplax Animals (Placozoa) // Molecular Biology. 2023. Vol. 57, no. 5. P. 905-912. https://doi.org/10.1134/S0026893323050072 Перевод БС 3 SCOPUS 0.236/Q4 WoS 1.200/Q4
Spatial Models of Piezo Proteins and Protein‒Protein Interaction Networks in Trichoplax Animals (Placozoa) // Molecular Biology. 2023. Vol. 57, no. 5. P. 905-912. https://doi.org/10.1134/S0026893323050072 Перевод БС 3 SCOPUS 0.236/Q4 WoS 1.200/Q4
Запись создана: 10-10-2023 16:03
, , Ufimtseva M. A.,
Blocking a chemical communication between Trichoplax organisms leads to their disorderly movement // International Journal of Parallel, Emergent and Distributed Systems. 2020. Vol. 35, iss. 4. P. 473-482. https://doi.org/10.1080/17445760.2020.1753188 БС 2 SCOPUS 0.169/Q4 WoS –/–
Blocking a chemical communication between Trichoplax organisms leads to their disorderly movement // International Journal of Parallel, Emergent and Distributed Systems. 2020. Vol. 35, iss. 4. P. 473-482. https://doi.org/10.1080/17445760.2020.1753188 БС 2 SCOPUS 0.169/Q4 WoS –/–
Запись создана: 22-06-2020 13:23
, Kartashov L. E.
Annotation of a New Low-Threshold Potential-Dependent Calcium Channel of Trichoplax adhaerens (Phylum Placozoa) // Biophysics. 2024. Vol. 69, iss. 1. P. 25-42. https://doi.org/10.1134/S0006350924700040 БС 3 SCOPUS 0.251/Q4
Annotation of a New Low-Threshold Potential-Dependent Calcium Channel of Trichoplax adhaerens (Phylum Placozoa) // Biophysics. 2024. Vol. 69, iss. 1. P. 25-42. https://doi.org/10.1134/S0006350924700040 БС 3 SCOPUS 0.251/Q4
Запись создана: 16-07-2024 11:10
, Vainer V. I., Volkova Yu. M., Kartashov L. E.
Motility disorders and disintegration into separate cells of Trichoplax sp. H2 in the presence of Zn2+ ions and L-cysteine molecules: A systems approach // BioSystems. 2021. Vol. 206. Article no. 104444 (11 p.). https://doi.org/10.1016/j.biosystems.2021.104444 БС 1 SCOPUS 0.482/Q2 WoS 1.973/Q3
Motility disorders and disintegration into separate cells of Trichoplax sp. H2 in the presence of Zn2+ ions and L-cysteine molecules: A systems approach // BioSystems. 2021. Vol. 206. Article no. 104444 (11 p.). https://doi.org/10.1016/j.biosystems.2021.104444 БС 1 SCOPUS 0.482/Q2 WoS 1.973/Q3
Запись создана: 03-08-2021 13:14
, Vtyurina D. N.
Spatial Reconstruction of TRPC Mechanoreceptors of the Ctenophore Mnemiopsis leidyi A. Agassiz, 1865 // Molecular Biology. 2023. Vol. 57, no. 4. P. 755-763. https://doi.org/10.1134/S0026893323040106 Перевод БС 3 SCOPUS 0.236/Q4 WoS 1.200/Q4
Spatial Reconstruction of TRPC Mechanoreceptors of the Ctenophore Mnemiopsis leidyi A. Agassiz, 1865 // Molecular Biology. 2023. Vol. 57, no. 4. P. 755-763. https://doi.org/10.1134/S0026893323040106 Перевод БС 3 SCOPUS 0.236/Q4 WoS 1.200/Q4
Запись создана: 14-08-2023 09:54
Kuznetsova T. V., Kudryavtseva V. A.,
Increasing Risks to the Health of the Invertebrates—Balancing between Harm and Benefit // Animals. 2024. Vol. 14, iss. 11. Art. no. 1584 (14 p.). https://doi.org/10.3390/ani14111584 БС 1 SCOPUS 0.698/Q1 WoS 3.000/Q1
Increasing Risks to the Health of the Invertebrates—Balancing between Harm and Benefit // Animals. 2024. Vol. 14, iss. 11. Art. no. 1584 (14 p.). https://doi.org/10.3390/ani14111584 БС 1 SCOPUS 0.698/Q1 WoS 3.000/Q1
Запись создана: 28-05-2024 11:17
,
Growth of Cryptophyte Rhodomonas salina and Its Accumulation of Phycoerythrinas a Function of the Nitrogen Concentration in the Culture Medium // International Journal on Algae. 2022. Vol. 24, iss. 3. P. 273-282. https://doi.org/10.1615/InterJAlgae.v24.i3.50 БС 4 SCOPUS 0.219/Q3
Growth of Cryptophyte Rhodomonas salina and Its Accumulation of Phycoerythrinas a Function of the Nitrogen Concentration in the Culture Medium // International Journal on Algae. 2022. Vol. 24, iss. 3. P. 273-282. https://doi.org/10.1615/InterJAlgae.v24.i3.50 БС 4 SCOPUS 0.219/Q3
Запись создана: 10-11-2022 11:51
Lantushenko A., Meger Ya., Gadzhi A., ,
Artemia spp. (Crustacea, Anostraca) in Crimea: New Molecular Genetic Results and New Questions without Answers // Water. 2022. Vol. 14, iss. 17. Art. no. 2617 (11 p.). https://doi.org/10.3390/w14172617 БС 1 SCOPUS 0.716/Q1 WoS 3.530/Q2
Artemia spp. (Crustacea, Anostraca) in Crimea: New Molecular Genetic Results and New Questions without Answers // Water. 2022. Vol. 14, iss. 17. Art. no. 2617 (11 p.). https://doi.org/10.3390/w14172617 БС 1 SCOPUS 0.716/Q1 WoS 3.530/Q2
Запись создана: 25-08-2022 16:53
Lantushenko A. O., , , Degtyar I. V.,
Expression of Pyruvate Kinase, Malate and Octopine Dehydrogenase Genes in the Gills of the Mediterranean Mussel Mytilus galloprovincialis (Lamarck, 1819) under Conditions of Hypoxia and Reoxygenation // Biology Bulletin. 2024. Vol. 51, no. 4. P. 1206-1211. https://doi.org/10.1134/S1062359024607316 Перевод БС 2 SCOPUS 0.190/Q3 WoS 0.500/Q4
Expression of Pyruvate Kinase, Malate and Octopine Dehydrogenase Genes in the Gills of the Mediterranean Mussel Mytilus galloprovincialis (Lamarck, 1819) under Conditions of Hypoxia and Reoxygenation // Biology Bulletin. 2024. Vol. 51, no. 4. P. 1206-1211. https://doi.org/10.1134/S1062359024607316 Перевод БС 2 SCOPUS 0.190/Q3 WoS 0.500/Q4
Запись создана: 16-07-2024 10:43
Lantushenko A. O., Meger Y. V., Gadzhi A. V., ,
Unique Haplotypes of Artemia salina (Crustacea, Branchiopoda, Anostraca) in Hypersaline Lake Sasyk-Sivash (Crimea) // Inland Water Biology. 2023. Vol. 16, no. 5. P. 884-891. https://doi.org/10.1134/S1995082923050085 Перевод БС 3 SCOPUS 0.290/Q3 WoS 0.900/Q4
Unique Haplotypes of Artemia salina (Crustacea, Branchiopoda, Anostraca) in Hypersaline Lake Sasyk-Sivash (Crimea) // Inland Water Biology. 2023. Vol. 16, no. 5. P. 884-891. https://doi.org/10.1134/S1995082923050085 Перевод БС 3 SCOPUS 0.290/Q3 WoS 0.900/Q4
Запись создана: 30-10-2023 11:20
Lantushenko A. O., , , Meger Ya. V.,
Aldolase of Mytilus galloprovincialis, Lamarck, 1819: Gene structure, tissue specificity of expression level and activity // Comparative Biochemistry and Physiology Part B: Biochemistry and Molecular Biology. 2023. Vol. 267. Art. no. 110862 (8 p.). https://doi.org/10.1016/j.cbpb.2023.110862 БС 3 SCOPUS 0.559/Q1 WoS 2.495/Q1
Aldolase of Mytilus galloprovincialis, Lamarck, 1819: Gene structure, tissue specificity of expression level and activity // Comparative Biochemistry and Physiology Part B: Biochemistry and Molecular Biology. 2023. Vol. 267. Art. no. 110862 (8 p.). https://doi.org/10.1016/j.cbpb.2023.110862 БС 3 SCOPUS 0.559/Q1 WoS 2.495/Q1
Запись создана: 19-05-2023 08:32
, , , , ,
Microalgae Parasite Diseases of Mytilus galloprovincialis: Infections, Immunology and Antioxidant Defense // Antioxidants. 2025. Vol. 14, iss. 12. Art no. 1430 (15 p.). https://doi.org/10.3390/antiox14121430 БС 2 SCOPUS 1.484/Q1 WoS 6.600/Q1
Microalgae Parasite Diseases of Mytilus galloprovincialis: Infections, Immunology and Antioxidant Defense // Antioxidants. 2025. Vol. 14, iss. 12. Art no. 1430 (15 p.). https://doi.org/10.3390/antiox14121430 БС 2 SCOPUS 1.484/Q1 WoS 6.600/Q1
Запись создана: 28-11-2025 14:58
, , ,
Mitochondrial сomplex III contributes to LPS-induced ROS production in hemocytes of Anadara kagoshimensis // Fish and Shellfish Immunology. 2026. Vol. 179. Art. no. 111688 (5 p.). https://doi.org/10.1016/j.fsi.2026.111688 БС 1 SCOPUS 1.006/Q1 WoS 4.200/Q1
Mitochondrial сomplex III contributes to LPS-induced ROS production in hemocytes of Anadara kagoshimensis // Fish and Shellfish Immunology. 2026. Vol. 179. Art. no. 111688 (5 p.). https://doi.org/10.1016/j.fsi.2026.111688 БС 1 SCOPUS 1.006/Q1 WoS 4.200/Q1
Запись создана: 31-08-2026 18:08
, ,
The mitochondrial membrane potential and the sources of reactive oxygen species in the hemocytes of the ark clam Anadara kagoshimensis under hypoosmotic stress // Comparative Biochemistry and Physiology Part B: Biochemistry and Molecular Biology. 2025. Vol. 276. Art. no. 111057 (8 p.). https://doi.org/10.1016/j.cbpb.2024.111057 БС 3 SCOPUS 0.518/Q2 WoS 1.900/Q1
The mitochondrial membrane potential and the sources of reactive oxygen species in the hemocytes of the ark clam Anadara kagoshimensis under hypoosmotic stress // Comparative Biochemistry and Physiology Part B: Biochemistry and Molecular Biology. 2025. Vol. 276. Art. no. 111057 (8 p.). https://doi.org/10.1016/j.cbpb.2024.111057 БС 3 SCOPUS 0.518/Q2 WoS 1.900/Q1
Запись создана: 17-01-2025 10:26
, , , ,
The Immune Responses of the Pacific Oyster Magallana gigas to Infestation by the Boring Sponge Pione vastifica // Russian Journal of Marine Biology. 2025. Vol. 51, no. 2. P. 72-79. https://doi.org/10.1134/S1063074025700038 Перевод БС 3 SCOPUS 0.170/Q4 WoS 0.500/Q4
The Immune Responses of the Pacific Oyster Magallana gigas to Infestation by the Boring Sponge Pione vastifica // Russian Journal of Marine Biology. 2025. Vol. 51, no. 2. P. 72-79. https://doi.org/10.1134/S1063074025700038 Перевод БС 3 SCOPUS 0.170/Q4 WoS 0.500/Q4
Запись создана: 22-05-2025 13:24
Le Thi Kieu Oanh, Vo Thi Ha, Nguyen Phuong Lien, , Binh Thuy Dang
The infestation status of symbiotic crustaceans on the swimming crab Charybdis truncata (Fabricius, 1798) from Nha Trang Bay, Vietnam (the East Sea) // Морской биологический журнал. 2024. Т. 9, № 2. С. 58-71. https://doi.org/10.21072/mbj.2024.09.2.04 БС 1 РИНЦ 0.821 SCOPUS 0.227/Q3
The infestation status of symbiotic crustaceans on the swimming crab Charybdis truncata (Fabricius, 1798) from Nha Trang Bay, Vietnam (the East Sea) // Морской биологический журнал. 2024. Т. 9, № 2. С. 58-71. https://doi.org/10.21072/mbj.2024.09.2.04 БС 1 РИНЦ 0.821 SCOPUS 0.227/Q3
Запись создана: 20-05-2024 13:32
Lebedev Y., , , , , Kuznetsov A., Kuznetsova S., Nguyen V. T.,
Biogeochemical Migration of Some Rare Elements in the “Leaf Debris–Soil” System of the Catenary Landscapes in Tropical Mountainous Forests in Southern Vietnam // Forests. 2024. Vol. 15, iss. 7. Art. no. 1251 (31 p.). https://doi.org/10.3390/f15071251 БС 1 SCOPUS 0.589/Q1 WoS 2.400/Q1
Biogeochemical Migration of Some Rare Elements in the “Leaf Debris–Soil” System of the Catenary Landscapes in Tropical Mountainous Forests in Southern Vietnam // Forests. 2024. Vol. 15, iss. 7. Art. no. 1251 (31 p.). https://doi.org/10.3390/f15071251 БС 1 SCOPUS 0.589/Q1 WoS 2.400/Q1
Запись создана: 26-07-2024 16:35


