Статья в периодическом издании
Год публикации: 2021
Белый список журналов: уровень 1
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, , , ,
Acute hypoxic exposure: Effect on hemocyte functional parameters and antioxidant potential in gills of the pacific oyster, Crassostrea gigas // Marine Environmental Research. 2021. Vol. 169. Article no. 105389 (8 p.). https://doi.org/10.1016/j.marenvres.2021.105389 БС 1 SCOPUS 1.041/Q1 WoS 2.727/Q1
Acute hypoxic exposure: Effect on hemocyte functional parameters and antioxidant potential in gills of the pacific oyster, Crassostrea gigas // Marine Environmental Research. 2021. Vol. 169. Article no. 105389 (8 p.). https://doi.org/10.1016/j.marenvres.2021.105389 БС 1 SCOPUS 1.041/Q1 WoS 2.727/Q1
Запись создана: 27-06-2021 20:05
Atopkin D. M., , , Plaksina M. P.,
First rDNA sequence data for Haplosplanchnus pachysomus (Digenea: Haplosplanchnidae) ex Mugil cephalus from the Black Sea, and molecular evidence for cryptic species within Haplosplanchnus pachysomus (Digenea: Haplosplanchnidae) in Palaearctic and Indo-West Pacific regions // Journal of Helminthology. 2021. Vol. 95. Article no. e51 (9 p.). https://doi.org/10.1017/S0022149X21000419 БС 1 SCOPUS 0.649/Q1 WoS 2.170/Q2
First rDNA sequence data for Haplosplanchnus pachysomus (Digenea: Haplosplanchnidae) ex Mugil cephalus from the Black Sea, and molecular evidence for cryptic species within Haplosplanchnus pachysomus (Digenea: Haplosplanchnidae) in Palaearctic and Indo-West Pacific regions // Journal of Helminthology. 2021. Vol. 95. Article no. e51 (9 p.). https://doi.org/10.1017/S0022149X21000419 БС 1 SCOPUS 0.649/Q1 WoS 2.170/Q2
Запись создана: 23-09-2021 17:10
Bagaev A., Esiukova E., , Chubarenko I., Veerasingam S., Venkatachalapathy R., Verzhevskaya L.
Investigations of plastic contamination of seawater, marine and coastal sediments in the Russian seas: a review // Environmental Science and Pollution Research. 2021. Vol. 28, iss. 25. P. 32264-32281. https://doi.org/10.1007/s11356-021-14183-z БС 1 SCOPUS 0.845/Q2 WoS 4.223/Q2
Investigations of plastic contamination of seawater, marine and coastal sediments in the Russian seas: a review // Environmental Science and Pollution Research. 2021. Vol. 28, iss. 25. P. 32264-32281. https://doi.org/10.1007/s11356-021-14183-z БС 1 SCOPUS 0.845/Q2 WoS 4.223/Q2
Запись создана: 19-07-2021 17:12
Basova M., , Francesco F.
The long-term ichthyoplankton abundance summer trends in the coastal waters of the Black Sea under conditions of hydrometeorological changes // Estuarine, Coastal and Shelf Science. 2021. Vol. 258. Article no. 107450 (7 p.). https://doi.org/10.1016/j.ecss.2021.107450 БС 1 SCOPUS 0.852/Q1 WoS 2.333/Q1
The long-term ichthyoplankton abundance summer trends in the coastal waters of the Black Sea under conditions of hydrometeorological changes // Estuarine, Coastal and Shelf Science. 2021. Vol. 258. Article no. 107450 (7 p.). https://doi.org/10.1016/j.ecss.2021.107450 БС 1 SCOPUS 0.852/Q1 WoS 2.333/Q1
Запись создана: 10-06-2021 14:27
Bates A. E., Primack R. B., Biggar B. S., Bird T. J., Clinton M. E., Command R. J., Richards C., Shellard M., Geraldi N. R., Vergara V., Acevedo-Charry O., Colón-Piñeiro Z., Ocampo D., Ocampo-Peñuela N., Sánchez-Clavijo L. M., Adamescu C. M., Cheval S., Racoviceanu T., Adams M. D., Kalisa E., Kuuire V. Z., Aditya V., Anderwald P., Wiesmann S., Wipf S., Badihi G., Henderson M. G., Loetscher H., Baerenfaller K., Benedetti-Cecchi L., Bulleri F., Bertocci I., Maggi E., Rindi L., Ravaglioli C., Boerder K., Bonnel J., Mathias D., Archambault P., Chauvaud L., Braun C. D., Thorrold S. R., Brownscombe J. W., Midwood J. D., Boston C. M., Brooks J. L., Cooke S. J., China V., Roll U., Belmaker J., Zvuloni A., Coll M., Ortega M., Connors B., Lacko L., Jayathilake D. R. M., Costello M. J., Crimmins T. M., Barnett L., Denny E. G., Gerst K. L., Marsh R..L., Posthumus E. E., Rodriguez R., Rosemartin A., Schaffer S. N., Switzer J. R., Wong K., Cunningham S. J., Sumasgutner P., Amar A., Thomson R. L., Stofberg M., Hofmeyr S., Suri J., Stuart-Smith R. D., Day P. B., Edgar G. J., Cooper A. T., De Leo F. Cabrera, Garner G., Des Brisay P. G., Schrimpf M. B., Koper N., Diamond M. S., Dwyer R. G., Baker C. J., Franklin C. E., Efrat R., Berger-Tal O., Hatzofe O., Eguíluz V. M., Rodríguez J. P., Fernández-Gracia J., Elustondo D., Calatayud V., English P. A., Archer S. K., Dudas S. E., Haggarty D. R., Gallagher A. J., Shea B. D., Shipley O. N., Gilby B. L., Ballantyne J., Olds A. D., Henderson C. J., Schlacher T. A., Halliday W. D., Brown N. A.W., Woods M. B., Balshine S., Juanes F., Rider M. J., Albano P. S., Hammerschlag N., Hays G. C., Esteban N., Pan Y., He G., Tanaka T., Hensel M. J.S., Orth R. J., Patrick C. J., Hentati-Sundberg J., Olsson O., Hessing-Lewis M. L., Higgs N. D., Hindell M. A., McMahon C. R., Harcourt R., Guinet C., Hirsch S. E., Perrault J. R., Hoover S. R., Reilly J. D., Hobaiter C., Gruber T., Huveneers C., Udyawer V., Clarke T. M., Kroesen L. P., Hik D. S., Cherry S. G., Del Bel Belluz J. A., Jackson J. M., Lai S., Lamb C. T., LeClair G. D., Parmelee J. R., Chatfield M. W.H., Frederick C. A., Lee S., Park H., Choi J., LeTourneux F., Grandmont T., de-Broin F. D., Bêty J., Gauthier G., Legagneux P., Lewis J. S., Haight J., Liu Z., Lyon J. P., Hale R., D'Silva D., MacGregor-Fors I., Arbeláez-Cortés E., Estela F. A., Sánchez-Sarria C. E., García-Arroyo M., Aguirre-Samboní G. K., Franco Morales J. C., Malamud S., Gavriel T., Buba Y., Salingré S., Lazarus M., Yahel R., Ari Y. Ben, Miller E., Sade R., Lavian G., Birman Z., Gury M., Baz H., Baskin I., Penn A., Dolev A., Licht O., Karkom T., Davidzon S., Berkovitch A., Yaakov O., Manenti R., Mori E., Ficetola G. F., Lunghi E., March D., Godley B. J., Martin C., Mihaly S. F., Barclay D. R., Thomson D. J.M., Dewey R., Bedard J., Miller A., Dearden A., Chapman J., Dares L., Borden L., Gibbs D., Schultz J., Sergeenko N., Francis F., Weltman A., Moity N., Ramírez-González J., Mucientes G., Alonso-Fernández A., Namir I., Bar-Massada A., Chen R., Yedvab S., Okey T. A., Oppel S., Arkumarev V., Bakari S., Dobrev V., Saravia-Mullin V., Bounas A., Dobrev D., Kret E., Mengistu S., Pourchier C.é, Ruffo A., Tesfaye M., Wondafrash M., Nikolov S. C., Palmer C., Sileci L., Rex P. T., Lowe C. G., Peters F., Pine M. K., Radford C. A., Wilson L., McWhinnie L., Scuderi A., Jeffs A. G., Prudic K. L., Larrivée M., McFarland K. P., Solis R., Hutchinson R. A., Queiroz N., Furtado M. A., Sims D. W., Southall E., Quesada-Rodriguez C. A., Diaz-Orozco J. P., Rodgers K.'ulei S., Severino S. J.L., Graham A. T., Stefanak M. P., Madin E. M.P., Ryan P. G., Maclean K., Weideman E. A., Şekercioğlu Ç. H., Kittelberger K. D., Kusak J., Seminoff J. A., Hanna M. E., Shimada T., Meekan M. G., Smith M. K.S., Mokhatla M. M., Soh M. C.K., Pang R. Y.T., Ng B. X.K., Lee B. P.Y.-H., Loo A. H.B., Er K. B.H., Souza G. B.G., Stallings C. D., Curtis J. S., Faletti M. E., Peake J. A., Schram M. J., Wall K. R., Terry C., Rothendler M., Zipf L., Ulloa J. S., Hernández-Palma A., Gómez-Valencia B., Cruz-Rodríguez C., Herrera-Varón Y., Roa M., Rodríguez-Buriticá S., Ochoa-Quintero J. M., Vardi R., Vázquez V., Requena-Mesa C., Warrington M. H., Taylor M. E., Woodall L. C., Stefanoudis P. V., Zhang X., Yang Q., Zukerman Y., Sigal Z., Ayali A., Clua E. E.G., Carzon P., Seguine C., Corradini A., Pedrotti L., Foley C. M., Gagnon C. A., Panipakoochoo E., Milanes C. B., Botero C. M., Velázquez Y. R., , Morley S. A., Martin S. M., Nanni V., Otero T., Wakeling J., Abarro S., Sobral A. F. L., Soto E. H., Weigel E. G., Bernal-Ibáñez A., Gestoso I., Cacabelos E., Cagnacci F., Devassy R. P., Loretto M.-C., Moraga P., Rutz C., Duarte C. M.
Global COVID-19 lockdown highlights humans as both threats and custodians of the environment // Biological Conservation. 2021. Vol. 263. Article no. 109175 (18 p.). https://doi.org/10.1016/j.biocon.2021.109175 БС 1 SCOPUS 2.227/Q1 WoS 5.990/Q1
Global COVID-19 lockdown highlights humans as both threats and custodians of the environment // Biological Conservation. 2021. Vol. 263. Article no. 109175 (18 p.). https://doi.org/10.1016/j.biocon.2021.109175 БС 1 SCOPUS 2.227/Q1 WoS 5.990/Q1
Запись создана: 25-10-2021 14:03
, , , Lantushenko A. O.
Light supply and mineral nutrition conditions as optimization factors for outdoor mass culture of carotenogenic microalga Dunaliella salina // Aquaculture Research. 2021. Vol. 52, iss. 12. P. 6098-6106. https://doi.org/10.1111/are.15471 БС 1 SCOPUS 0.646/Q2 WoS 2.082/Q2
Light supply and mineral nutrition conditions as optimization factors for outdoor mass culture of carotenogenic microalga Dunaliella salina // Aquaculture Research. 2021. Vol. 52, iss. 12. P. 6098-6106. https://doi.org/10.1111/are.15471 БС 1 SCOPUS 0.646/Q2 WoS 2.082/Q2
Запись создана: 15-11-2021 10:19
, , Degterev A. K., Yurlov M. N.
The Mediterranean Sea Basin as a Single Ecosystem: Problems and Prospects for International Cooperation // Вестник Российского университета дружбы народов. Серия: Международные отношения. 2021. Т. 21, № 4. C. 625-641. https://doi.org/10.22363/2313-0660-2021-21-4-625-641 БС 1 РИНЦ 0.618 SCOPUS –/–
The Mediterranean Sea Basin as a Single Ecosystem: Problems and Prospects for International Cooperation // Вестник Российского университета дружбы народов. Серия: Международные отношения. 2021. Т. 21, № 4. C. 625-641. https://doi.org/10.22363/2313-0660-2021-21-4-625-641 БС 1 РИНЦ 0.618 SCOPUS –/–
Запись создана: 28-12-2021 11:30
, , Maltsev E. I., Kulikovskii M. S.,
Growth of Porphyridium purpureum (Porphyridiales, Rhodophyta) and Production of B-Phycoerythrin under Varying Illumination // Russian Journal of Plant Physiology. 2021. Vol. 68, iss. 1. P. 188-196. https://doi.org/10.1134/S1021443720060059 Перевод БС 1 SCOPUS 0.377/Q2 WoS 1.198/Q3
Growth of Porphyridium purpureum (Porphyridiales, Rhodophyta) and Production of B-Phycoerythrin under Varying Illumination // Russian Journal of Plant Physiology. 2021. Vol. 68, iss. 1. P. 188-196. https://doi.org/10.1134/S1021443720060059 Перевод БС 1 SCOPUS 0.377/Q2 WoS 1.198/Q3
Запись создана: 16-02-2021 12:24
, Karavantseva N. V., Bobko N. I., ,
Element Contents in Three Commercially Important Edible Mollusks Harvested off the Southwestern Coast of Crimea (Black Sea) and Assessment of Human Health Risks from Their Consumption // Foods. 2021. Vol. 10, iss. 10. Article no. 2313 (26 p.). https://doi.org/10.3390/foods10102313 БС 1 SCOPUS 0.774/Q1 WoS 4.350/Q2
Element Contents in Three Commercially Important Edible Mollusks Harvested off the Southwestern Coast of Crimea (Black Sea) and Assessment of Human Health Risks from Their Consumption // Foods. 2021. Vol. 10, iss. 10. Article no. 2313 (26 p.). https://doi.org/10.3390/foods10102313 БС 1 SCOPUS 0.774/Q1 WoS 4.350/Q2
Запись создана: 30-09-2021 12:19
, Karavantseva N. V., Bobko N. I., ,
Sex- and sexual maturation-related aspects of the element accumulation in soft tissues of the bivalve Mytilus galloprovincialis Lam. collected off coasts of Sevastopol (southwestern Crimea, Black Sea) // Environmental Science and Pollution Research. 2021. Vol. 28, iss. 17. P. 21553-21576. https://doi.org/10.1007/s11356-020-12024-z БС 1 SCOPUS 0.788/Q2 WoS 3.056/Q2
Sex- and sexual maturation-related aspects of the element accumulation in soft tissues of the bivalve Mytilus galloprovincialis Lam. collected off coasts of Sevastopol (southwestern Crimea, Black Sea) // Environmental Science and Pollution Research. 2021. Vol. 28, iss. 17. P. 21553-21576. https://doi.org/10.1007/s11356-020-12024-z БС 1 SCOPUS 0.788/Q2 WoS 3.056/Q2
Запись создана: 09-05-2021 07:40
, 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
Marusik Yu. M.,
Redescription of Hippasa deserticola, the northernmost species of Hippasa (Aranei: Lycosidae), with taxonomic notes on other species of the genus // Zoosystematica Rossica. 2021. Vol. 30, no. 2. P. 222-235. https://doi.org/10.31610/zsr/2021.30.2.222 БС 1 РИНЦ 0.796 SCOPUS 0.463/Q2
Redescription of Hippasa deserticola, the northernmost species of Hippasa (Aranei: Lycosidae), with taxonomic notes on other species of the genus // Zoosystematica Rossica. 2021. Vol. 30, no. 2. P. 222-235. https://doi.org/10.31610/zsr/2021.30.2.222 БС 1 РИНЦ 0.796 SCOPUS 0.463/Q2
Запись создана: 08-11-2021 13:51
Naimark E., Kirpotin D., Boeva N., Gmoshinskiy V., Kalinina M., Lyupina Yu., Markov A., Nikitin M., Shokurov A., Volkov D.
Taphonomic experiments imply a possible link between the evolution of multicellularity and the fossilization potential of soft‐bodied organisms // Ecology and Evolution. 2021. Vol. 11, iss. 2. P. 1037-1056. https://doi.org/10.1002/ece3.7120 БС 1 SCOPUS 1.238/Q1 WoS 2.392/Q2
Taphonomic experiments imply a possible link between the evolution of multicellularity and the fossilization potential of soft‐bodied organisms // Ecology and Evolution. 2021. Vol. 11, iss. 2. P. 1037-1056. https://doi.org/10.1002/ece3.7120 БС 1 SCOPUS 1.238/Q1 WoS 2.392/Q2
Запись создана: 01-02-2021 14:52
, , , , ,
Cladophora spp. (Chlorophyta) modulate environment and create a habitat for microalgae in hypersaline waters // European Journal of Phycology. 2021. Vol. 56, no. 3. P. 231-243. https://doi.org/10.1080/09670262.2020.1814423 БС 1 SCOPUS 0.874/Q1 WoS 2.804/Q1
Cladophora spp. (Chlorophyta) modulate environment and create a habitat for microalgae in hypersaline waters // European Journal of Phycology. 2021. Vol. 56, no. 3. P. 231-243. https://doi.org/10.1080/09670262.2020.1814423 БС 1 SCOPUS 0.874/Q1 WoS 2.804/Q1
Запись создана: 09-08-2021 11:10
, , , , , Maoka T.,
Biomass of green filamentous alga Cladophora (Chlorophyta) from a hypersaline lake in Crimea as a prospective source of lutein and other pigments // Algal Research. 2021. Vol. 54. Article no. 102195 (9 p.). https://doi.org/10.1016/j.algal.2021.102195 БС 1 SCOPUS 1.257/Q1 WoS 4.008/Q1
Biomass of green filamentous alga Cladophora (Chlorophyta) from a hypersaline lake in Crimea as a prospective source of lutein and other pigments // Algal Research. 2021. Vol. 54. Article no. 102195 (9 p.). https://doi.org/10.1016/j.algal.2021.102195 БС 1 SCOPUS 1.257/Q1 WoS 4.008/Q1
Запись создана: 11-02-2021 14:36
, , Cheresiz S. V., Sang Y.
The IS630/Tc1/mariner transposons in three ctenophore genomes // Molecular Phylogenetics and Evolution. 2021. Vol. 163. Article no. 107231 (11 p.). https://doi.org/10.1016/j.ympev.2021.107231 БС 1 SCOPUS 1.612/Q1 WoS 4.286/Q2
The IS630/Tc1/mariner transposons in three ctenophore genomes // Molecular Phylogenetics and Evolution. 2021. Vol. 163. Article no. 107231 (11 p.). https://doi.org/10.1016/j.ympev.2021.107231 БС 1 SCOPUS 1.612/Q1 WoS 4.286/Q2
Запись создана: 15-07-2021 16:21
Ranjani M., Veerasingam S., Venkatachalapathy R., Mugilarasan M., Bagaev A., , Vethamony P.
Assessment of potential ecological risk of microplastics in the coastal sediments of India: A meta-analysis // Marine Pollution Bulletin. 2021. Vol. 163. Article no. 111969 (12 p.). https://doi.org/10.1016/j.marpolbul.2021.111969 БС 1 SCOPUS 1.270/Q1 WoS 4.049/Q1
Assessment of potential ecological risk of microplastics in the coastal sediments of India: A meta-analysis // Marine Pollution Bulletin. 2021. Vol. 163. Article no. 111969 (12 p.). https://doi.org/10.1016/j.marpolbul.2021.111969 БС 1 SCOPUS 1.270/Q1 WoS 4.049/Q1
Запись создана: 05-02-2021 11:20
, ,
Biocoenotic and habitat ordination of mud shrimp Upogebia pusilla Petagna, 1792 (Crustacea: Decapoda) settlements on the northern part of the Black Sea shelf (Crimean coast) // Arthropoda Selecta. 2021. Vol. 30, no. 4. P. 531-539. https://doi.org/10.15298/arthsel.30.4.08 БС 1 РИНЦ 0.800 SCOPUS 0.651/Q2 WoS 0.670/Q4
Biocoenotic and habitat ordination of mud shrimp Upogebia pusilla Petagna, 1792 (Crustacea: Decapoda) settlements on the northern part of the Black Sea shelf (Crimean coast) // Arthropoda Selecta. 2021. Vol. 30, no. 4. P. 531-539. https://doi.org/10.15298/arthsel.30.4.08 БС 1 РИНЦ 0.800 SCOPUS 0.651/Q2 WoS 0.670/Q4
Запись создана: 10-02-2022 13:49
Riquet F., De Kuyper Ch., Fauvelot C., Airoldi L., Planes S., Fraschetti S., Mačić V., , Mangialajo L., Bottin L.
Highly restricted dispersal in habitat-forming seaweed may impede natural recovery of disturbed populations // Scientific Reports. 2021. Vol. 11, iss. 1. Article no. 16792 (15 p.). https://doi.org/10.1038/s41598-021-96027-x БС 1 SCOPUS 1.240/Q1 WoS 4.379/Q1
Highly restricted dispersal in habitat-forming seaweed may impede natural recovery of disturbed populations // Scientific Reports. 2021. Vol. 11, iss. 1. Article no. 16792 (15 p.). https://doi.org/10.1038/s41598-021-96027-x БС 1 SCOPUS 1.240/Q1 WoS 4.379/Q1
Запись создана: 24-09-2021 11:23
, , , ,
Diatom and cyanobacteria communities on artificial polymer substrates in the Crimean coastal waters of the Black Sea // Marine Pollution Bulletin. 2021. Vol. 169. Article no. 112521 (10 p.). https://doi.org/10.1016/j.marpolbul.2021.112521 БС 1 SCOPUS 1.548/Q1 WoS 4.049/Q1
Diatom and cyanobacteria communities on artificial polymer substrates in the Crimean coastal waters of the Black Sea // Marine Pollution Bulletin. 2021. Vol. 169. Article no. 112521 (10 p.). https://doi.org/10.1016/j.marpolbul.2021.112521 БС 1 SCOPUS 1.548/Q1 WoS 4.049/Q1
Запись создана: 07-06-2021 16:55


