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Ansari K. G. M. T., Guidi L., , Balsamo M., Semprucci F.
Some epibiont suctorian ciliates from meiofaunal organisms of Maldivian archipelago with description of a new ciliate species // Zootaxa. 2017. Vol. 4258, no. 4. P. 375–387. https://doi.org/10.11646/zootaxa.4258.4.5 БС 2 SCOPUS 0.360/Q3 WoS 0.972/Q3
Some epibiont suctorian ciliates from meiofaunal organisms of Maldivian archipelago with description of a new ciliate species // Zootaxa. 2017. Vol. 4258, no. 4. P. 375–387. https://doi.org/10.11646/zootaxa.4258.4.5 БС 2 SCOPUS 0.360/Q3 WoS 0.972/Q3
Запись создана: 31-12-2017 10:00
Antão L. H., Dornelas M., Bates A. E., Brambilla V., Chase J. M., Chow C. F. Y., Fontrodona-Eslava A., Magurran A. E., Martins I. S., Moyes F., Sagouis A., Adu-Acheampong S., Acquah-Lamptey D., Adam D., Ajani P. A., Albaina A., Almaraz P., An J., Anderson R. S., Anderson M. J. R., Antunes A. Z., Arismendi I., Armbrecht L., Aros-Mardones P., Ashtamoorthy S. K., Ayyappan N., Badihi G., Bailey J. J., Baird A. H., Baird M. E., Balakrishnan S. V., Barão-Nóbrega J. A. L., Barash A., Barbosa M., Barlow J., Bässler C., Beaumont M., Beenaerts N., Begot T. O., Beiroz W., Beldade R., Bell D. M., Bellgrove A., Belmaker J., Benedetti-Cecchi L., Benkwitt C. E., Berkum P. M., Bestelmeyer B. T., Betts M. G., Billah M. K., Bjorkman A. D., Błażewicz M., Bloch C. P., Blowes S. A., Bode A., Bogoni J. A., Bolger T., Bonebrake T. C., Bonsdorff E., Bottarin R., Brokensha L. N., Brooker R. W., Brooks A. J., Bruelheide H., Bueno T. A., Laguionie C., Campagnoli M. L., Cant J., Caramaschi E. P., Caron A., Carroll T., Caruso T., Carvajal-Quintero J., Castaldelli G., Castañeda-Moya E., Castilho P. V., Cechin S. Z., Chaikin S., Chandrashekara U. M., Chase T. J., Chen C. A., Cherem J. J., Choi S., Christensen E. M., Christianini A. V., Chu J. W. F., Coad P., Van Colen C., Comte L., Cooper E. J., Cornelissen J. H. C., Cosson E., Cotano U., Crevecoeur L., Crow S. K., Cumming G. S., Daga V. S., Damasceno G., Daskalova G. N., Davies C. H., Davis R. A., Day F. P., De-La-Zerda S., Deacon A. E., de Castro-Arrazola I., Degraer S., Deonarinesingh K., Diaz-Ricaurte J. C., Dickman C. R., Dirilgen T., Dolan C. J., Duffy J. E., Dunn T. E., Durigan G., Dwyer C., Earl S., Edelist D., Edgar G. J., Edmondson S., Elgin A. K., Ellingsen K. E., Elmendorf S. C., Eriksen R. S., Ernest S. K. M., Escribano R., Eterovick P. C., Evans B. S., Everett J. D., Evtimova V., Exton D. A., Fairbairn A. J., Fantacini F. M., Farah F. T., Farneda F. Z., Favila M. E., Fernandez-Fournier P., Fernández-Zapata B., Ferreira D. F., Ferronato C., du Feu C. R., Fidelis A., Fifield D. A., Filho V. P., Filho W. M., Fitt R. N. L., Flechtmann C. A. H., Fraser W. R., Fraser D. L., Freixas L., Fryxell J., Fundakowski G. J., Gabara S. S., Gallois E., Criado M. G., García-Berthou E., Garrabou J., Gates A. R., Gatti R. C., Gavioli A., Gavriel T., Gendreau-Berthiaume B., Giam X., Gjerdrum C., Glemnitz M., Godbold J. A., Gómez-Gras D., Gonçalves R. B., Goold A., Gordon R. R., Goren M., Goulart F. V. B., Gould W. A., Grabowski M. M., Graham N. A. J., Graipel M. E., Grange L. J., Greenville A. C., Grossman G. D., Guinder V. A., Haase P., Haskins G. N., Havstad K., Hermanutz L., Hickford M. J. H., Hidalgo P., Higuchi P., Hoey A. S., Hofgaard A., Holeck K. T., Hollister R. D., Holmes R. T., Hoogenboom M. O., Hortal J., Horton T., Hsieh C., Huffard C. L., Huikkonen I., Hurlbert A. H., Hynes J., Irz P., Macedo Ivanauskas N., Iwayama A., James D. K., Jandt U., Jażdżewska A. M., Jocque M., Johnston S. T., Jones S. E. I., Jones F. A. M., Jones J. A., Jucevica E., Kagainis U., Kagami M., Kang J., Ke X., Keeley E. C., Kinnear R., Klanderud K., Klinck U., van Klink R., Klotz S., Knockaert C., Knutsen H., Koivula M., Kortz A., Kriegel P., Kuo C., Kushner D. J., Kyerematen R., Lagarde R., Lancaster L. T., Landau O. F., Van Landuyt W., Larson E. R., Lazarus M., Lee C. M., Lefcheck J. S., Lembrechts J. J., Ferreira de Lima R. A., Lima R. G., Lima N. G. S., Linares C., Lindstrom S. C., Lloret F., Lloyd J. D., Lobato C. M. C., Lodge D. M., Long P. R., López-Abbate C., López-Baucells A., Louzada J., Louzao M., Lugliè A., Luiz M. R., Macdonald S. E., Madin J. S., Magalhães A. L. B., Mahabir R., Maphisa D., Martin T. E., Martins M., Martone P. T., Matesanz S., Matsuzaki S. S., Matthews T. J., Matthews I. M., Maxwell C. J., McFarland K. P., McGill B. J., McKnight D. M., McWilliam M. J., Meador J., Meesenburg H., Meier K., Melecis V., Meserve P. L., Meyer C. F. J., Michelsen A., Miiller N. O. R., Milardi M., , Miller R. J., Millett J., Moens T., Montag L. F. A., Moore J., Müller J., Murali A., Murray S. A., Myers-Smith I. H., Myster R. W., Nakamura M., Nayar S., Neat F., Nelson J. A., Nelson M. P., Nikolov B. P., Nsor C. A., O'Connor M., Obodai E. A., Offland A. M., Ogaya R., Ogura H., Okey T. A., Olden J. D., Oliveira-Santos L. G. R., Oliver J. C., Olsen E. M., Onipchenko V. G., Oro D., Ozolins D., Pabis K., Padedda B. M., Palacio F. X., Paquette A., Pardede S. T., Paterson D. M., Pausina S., Pélissier R., Pennings S. C., Penuelas J., Pereira F. W., Peroni N., Picó S., Pilotto F., Pinheiro H. T., Pizarro O., Pizzolotto R., Pomati F., Pompeu P. S., Ponton D., Post E., Poulet N., Pöyry J., Presley S. J., Prins H. H. T., Provoost P., Prudic K. L., Punjayil V., Pyšek P., Querner P., Quimbayo J. P., Reed D. C., Reich P. B., Remillard S. M., Richards C., Richardson A. J., van Rijn I., Rivera-Monroy V. H., Rixen C., Robinson K. P., Rocha R., Rodrigues R. R., Rodrigues C., de Roos B., de Rossa-Feres D. de C., Rosselli L., Rothlisberg P. C., Rubio A., Rudstam L. G., Ruz C. S., Rybicki N. B., Van Ryckegem G., Rypel A. L., Sadler J. P., Saito V. S., Sal S., Salomão R. P., Sanders N. J., Santos F. A. M., dos Santos T. G., Sarker S. K., Scanga S. E., Schaub M., Schmidt J., Schmidt I. K., Schooley R. L., Schultz A., Scotti A., Serpell-Stevens A., Serrano F. C., Shadwick E. H., Shaft M., Sherry T. W., Shimabukuro E. M., Siciński J., Sievers C., da Silva F. R., da Silva A. C., Silveira J. M., Siqueira T., Sivadasan A. K., Sivan P. T. P., Skuja A., Slaughter A. L., Slingsby J. A., Smith J. R., Soares B. E., Solan M., Souza F. M., Souza G. B. G., Sprague J. L., Stachow U., Stadt J. J., Stallings C. D., Stanchev R. H., Stanley E. H., Starzomski B. M., Sterza J. M., Stevens M., Stiles F. G., Stoll S., Stuart-Smith R. D., Súarez Y. R., Super L., Supp S. R., Sutela T., Suthers I. M., Suuronen A., Swadling K. M., Szydlowski D. K., Taki H., Tedesco P. A., Teichert N., Terui A., Thiede G. P., Thimonier A., Thomas O., Thompson P. A., Thorn S., Tiemann J. S., Toledo L. F., Tolvanen A., Toniato M. T. Z., Torre I., Tortato M. A., Totsu K., Trant A., Twilley R. R., Urabe H., Valade P., Valdivia N., Vallejo M. I., Valone T. J., Vanaverbeke J., Vasconcelos T. S., Vehanen T., Venturoli F., Verheye H. M., Vermeulen H. J. W., Verstraeten A., Vianna M., Vieira R., Vieira-Alencar J. P. S., Vilella M., Vitule J. R. S., Van Vu L., Waide R. B., Warren P. S., Wayman J. P., Weigel B., Welti E. A. R., West F., Westermann F., Whalen M. A., White E. P., Widdicombe C. E., Williams R., Williamson M., Willig M. R., Wipf S., Woehler E. J., Woldering A., Woods K. D., Xu W., Yahel R., Yang Z., Zawada K. J. A., Zornosa-Torres C., Zvuloni A.
BioTIME 2.0: Expanding and Improving a Database of Biodiversity Time Series // Global Ecology and Biogeography. 2025. Vol. 34, iss. 5. Art. no. e70003 (18 p.). https://doi.org/10.1111/geb.70003 БС 1 SCOPUS 2.603/Q1 WoS 6.300/Q1
BioTIME 2.0: Expanding and Improving a Database of Biodiversity Time Series // Global Ecology and Biogeography. 2025. Vol. 34, iss. 5. Art. no. e70003 (18 p.). https://doi.org/10.1111/geb.70003 БС 1 SCOPUS 2.603/Q1 WoS 6.300/Q1
Запись создана: 26-05-2025 14:39
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Changes of the Crimean shallow saline lakes in XX – XXI centuries // Shallow Lakes 2021 : Book of abstracts of [virtual conf., 1–5 March, 2021. Natal, Brasil, 2021]. Session 3. P. 42. https://shallowlakes2020.com.br/wp-content/uploads/2021/02/Shallow-Lakes-2021-Book-of-Abstracts-final-feb2021.pdf
Changes of the Crimean shallow saline lakes in XX – XXI centuries // Shallow Lakes 2021 : Book of abstracts of [virtual conf., 1–5 March, 2021. Natal, Brasil, 2021]. Session 3. P. 42. https://shallowlakes2020.com.br/wp-content/uploads/2021/02/Shallow-Lakes-2021-Book-of-Abstracts-final-feb2021.pdf
Запись создана: 04-03-2021 16:13
, , Shadrina S. N.
History of research on biodiversity in Crimean hypersaline waters // Arid Ecosystems. 2017. Vol. 7, iss. 1. P. 52–58. https://doi.org/10.1134/S2079096117010036 Перевод БС 2 SCOPUS 0.200/Q3 WoS –/–
History of research on biodiversity in Crimean hypersaline waters // Arid Ecosystems. 2017. Vol. 7, iss. 1. P. 52–58. https://doi.org/10.1134/S2079096117010036 Перевод БС 2 SCOPUS 0.200/Q3 WoS –/–
Запись создана: 31-12-2017 10:00
, Derbal D., Amarouayache M., ,
To utilize the phyto-resources of saline lagoons as a response to modern challenges. Review // Ecological Frontiers. 2026. Vol. 46, iss. 1. P. 29-38. https://doi.org/10.1016/j.ecofro.2025.09.008 БС 1 SCOPUS 0.517/Q2 WoS –/–
To utilize the phyto-resources of saline lagoons as a response to modern challenges. Review // Ecological Frontiers. 2026. Vol. 46, iss. 1. P. 29-38. https://doi.org/10.1016/j.ecofro.2025.09.008 БС 1 SCOPUS 0.517/Q2 WoS –/–
Запись создана: 15-09-2025 11:37
, , , ,
Human-Induced Sharp Salinity Changes in the World’s Largest Hypersaline Lagoon Bay Sivash (Crimea) and Their Effects on the Ecosystem // Water. 2022. Vol. 14, iss. 3. Article no. 403 (17 p.). https://doi.org/10.3390/w14030403 БС 1 SCOPUS 0.718/Q1 WoS 3.103/Q2
Human-Induced Sharp Salinity Changes in the World’s Largest Hypersaline Lagoon Bay Sivash (Crimea) and Their Effects on the Ecosystem // Water. 2022. Vol. 14, iss. 3. Article no. 403 (17 p.). https://doi.org/10.3390/w14030403 БС 1 SCOPUS 0.718/Q1 WoS 3.103/Q2
Запись создана: 09-02-2022 13:23
, , ,
Spatio-temporal variability of zooplankton and zoobenthos as the elements of integrated zoocenosis in a marine lake (Crimea, Black Sea): What is a general pattern? // Journal of Sea Research. 2022. Vol. 185. Article no 102231 (11 p.). https://doi.org/10.1016/j.seares.2022.102231 БС 2 SCOPUS 0.556/Q2 WoS 2.108/Q2
Spatio-temporal variability of zooplankton and zoobenthos as the elements of integrated zoocenosis in a marine lake (Crimea, Black Sea): What is a general pattern? // Journal of Sea Research. 2022. Vol. 185. Article no 102231 (11 p.). https://doi.org/10.1016/j.seares.2022.102231 БС 2 SCOPUS 0.556/Q2 WoS 2.108/Q2
Запись создана: 30-05-2022 17:57
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The long‐term changes in plankton composition: Is Bay Sivash transforming back into one of the world's largest habitats of Artemia sp. (Crustacea, Anostraca)? // Aquaculture Research. 2020. Vol. 51, iss. 1. P. 341-350. https://doi.org/10.1111/are.14381 БС 1 SCOPUS 0.646/Q2 WoS 1.502/Q3
The long‐term changes in plankton composition: Is Bay Sivash transforming back into one of the world's largest habitats of Artemia sp. (Crustacea, Anostraca)? // Aquaculture Research. 2020. Vol. 51, iss. 1. P. 341-350. https://doi.org/10.1111/are.14381 БС 1 SCOPUS 0.646/Q2 WoS 1.502/Q3
Запись создана: 10-12-2019 09:38
, , Shadrina S.
Diversity of phototrophs in the Crimean hypersaline and lagoons and their bio-technological potential // 3rd Global Congress on Plant Biology and Biotechnology, March, 11-13, 2019, Singapore : Book of Abstracts. Singapore, 2019. P. 65.
Diversity of phototrophs in the Crimean hypersaline and lagoons and their bio-technological potential // 3rd Global Congress on Plant Biology and Biotechnology, March, 11-13, 2019, Singapore : Book of Abstracts. Singapore, 2019. P. 65.
Запись создана: 28-05-2019 23:07
, , Lantushenko A., , ,
Cladophora vagabunda is the most halotolerant green macroalga and a promising candidate for aquaculture in the Black Sea region // Regional Studies in Marine Science. 2026. Vol. 101. Art. no. 105334 (8 p.). https://doi.org/10.1016/j.rsma.2026.105334 БС 2 SCOPUS 0.668/Q1 WoS 2.700/Q1
Cladophora vagabunda is the most halotolerant green macroalga and a promising candidate for aquaculture in the Black Sea region // Regional Studies in Marine Science. 2026. Vol. 101. Art. no. 105334 (8 p.). https://doi.org/10.1016/j.rsma.2026.105334 БС 2 SCOPUS 0.668/Q1 WoS 2.700/Q1
Запись создана: 10-08-2026 13:57
How can saline and hypersaline lakes contribute to aquaculture development? A review // Journal of Oceanology and Limnology. 2018. Vol. 36, iss. 6. P. 2002-2009. https://doi.org/10.1007/s00343-018-7306-3 БС 2 SCOPUS 0.301/Q3 WoS 0.717/Q4
Запись создана: 21-12-2018 11:37
, , ,
Microalgae in the diet of Eucypris mareotica (Crustacea, Ostracoda) in the hypersaline lake Chersonesskoye (Crimea) // Ecologica Montenegrina. 2018. No. 17. Р. 100–104. https://doi.org/10.37828/em.2018.17.11 БС 2 SCOPUS 0.292/Q3
Microalgae in the diet of Eucypris mareotica (Crustacea, Ostracoda) in the hypersaline lake Chersonesskoye (Crimea) // Ecologica Montenegrina. 2018. No. 17. Р. 100–104. https://doi.org/10.37828/em.2018.17.11 БС 2 SCOPUS 0.292/Q3
Запись создана: 30-07-2018 08:28
, El-Shabrawy G. M.,
Copepoda in the shallow hypersaline Bardawil coastal lake (Egypt): Are there long-term changes in composition and abundance? // Oceanological and Hydrobiological Studies. 2018. Vol. 47, iss. 3. P. 219–229. https://doi.org/10.1515/ohs-2018-0021 БС 3 SCOPUS 0.249/Q3 WoS 0.461/Q4
Copepoda in the shallow hypersaline Bardawil coastal lake (Egypt): Are there long-term changes in composition and abundance? // Oceanological and Hydrobiological Studies. 2018. Vol. 47, iss. 3. P. 219–229. https://doi.org/10.1515/ohs-2018-0021 БС 3 SCOPUS 0.249/Q3 WoS 0.461/Q4
Запись создана: 24-09-2018 20:28
, Goher M. E., Hussian A. M., El-Sayed S. M., Hegab M. H., Tahoun U. M.,
Ecosystems of artificial saline lakes. A case of Lake Magic in Wadi El-Rayan depression (Egypt) // Knowledge and Management of Aquatic Ecosystems. 2020. No. 421. Article no. 31 (13 p.). https://doi.org/10.1051/kmae/2020024 БС 2 SCOPUS 0.519/Q2 WoS 1.364/Q3
Ecosystems of artificial saline lakes. A case of Lake Magic in Wadi El-Rayan depression (Egypt) // Knowledge and Management of Aquatic Ecosystems. 2020. No. 421. Article no. 31 (13 p.). https://doi.org/10.1051/kmae/2020024 БС 2 SCOPUS 0.519/Q2 WoS 1.364/Q3
Запись создана: 14-07-2020 10:48
, ,
Distribution and Population Dynamics of the Highly Halotolerant Species Eucypris mareotica (Fischer, 1855) (Crustacea, Ostracoda) in Hypersaline Lakes of Crimea // Inland Water Biology. 2019. Vol. 12, iss. 2. P. 170-177. https://doi.org/10.1134/S1995082919020032 Перевод БС 3 SCOPUS 0.333/Q3 WoS 0.360/Q4
Distribution and Population Dynamics of the Highly Halotolerant Species Eucypris mareotica (Fischer, 1855) (Crustacea, Ostracoda) in Hypersaline Lakes of Crimea // Inland Water Biology. 2019. Vol. 12, iss. 2. P. 170-177. https://doi.org/10.1134/S1995082919020032 Перевод БС 3 SCOPUS 0.333/Q3 WoS 0.360/Q4
Запись создана: 20-06-2019 09:33
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Extreme hydrological events destabilize aquatic ecosystems and open doors for alien species // Quaternary International. 2018. Vol. 475. P. 11–15. https://doi.org/10.1016/j.quaint.2017.12.006 БС 1 SCOPUS 1.123/Q1 WoS 2.163/Q2
Extreme hydrological events destabilize aquatic ecosystems and open doors for alien species // Quaternary International. 2018. Vol. 475. P. 11–15. https://doi.org/10.1016/j.quaint.2017.12.006 БС 1 SCOPUS 1.123/Q1 WoS 2.163/Q2
Запись создана: 30-07-2018 14:47
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Diversity of Fauna in Crimean Hypersaline Water Bodies // Журнал Сибирского федерального университета. Серия: Биология. 2018. Т. 11, № 4. С. 294-305. https://doi.org/10.17516/1997-1389-0073 БС 1 РИНЦ 0.371
Diversity of Fauna in Crimean Hypersaline Water Bodies // Журнал Сибирского федерального университета. Серия: Биология. 2018. Т. 11, № 4. С. 294-305. https://doi.org/10.17516/1997-1389-0073 БС 1 РИНЦ 0.371
Запись создана: 19-12-2018 05:46
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Hypersaline lakes and lagoons: bioproductivity and prospects for aquaculture and biotechnology // Asian-Pacific Aquaculture 2019: [conf. abstr.], June 19-21, 2019, Chennai, Tamil Nadu, India. Chennai, 2019. (1 p.). https://www.was.org/Meeting/Program/PaperDetail/153241
Hypersaline lakes and lagoons: bioproductivity and prospects for aquaculture and biotechnology // Asian-Pacific Aquaculture 2019: [conf. abstr.], June 19-21, 2019, Chennai, Tamil Nadu, India. Chennai, 2019. (1 p.). https://www.was.org/Meeting/Program/PaperDetail/153241
Запись создана: 25-06-2019 13:59
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General Patterns of Salinity Influence on the Energy Balance of Aquatic Animals in Hypersaline Environment // Biology Bulletin Reviews. 2023. Vol. 13, no. 5. P. 420-430. https://doi.org/10.1134/S207908642305002X Перевод РИНЦ –
General Patterns of Salinity Influence on the Energy Balance of Aquatic Animals in Hypersaline Environment // Biology Bulletin Reviews. 2023. Vol. 13, no. 5. P. 420-430. https://doi.org/10.1134/S207908642305002X Перевод РИНЦ –
Запись создана: 22-09-2023 17:21
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Salinity as a Factor Limiting the Potential Taxonomic Richness of Crustaceans in Ecosystems of Hypersaline Reservoirs around the World (Review) // Inland Water Biology. 2023. Vol. 16, no. 5. P. 892-898. https://doi.org/10.1134/S1995082923050036 Перевод БС 3 SCOPUS 0.290/Q3 WoS 0.900/Q4
Salinity as a Factor Limiting the Potential Taxonomic Richness of Crustaceans in Ecosystems of Hypersaline Reservoirs around the World (Review) // Inland Water Biology. 2023. Vol. 16, no. 5. P. 892-898. https://doi.org/10.1134/S1995082923050036 Перевод БС 3 SCOPUS 0.290/Q3 WoS 0.900/Q4
Запись создана: 30-10-2023 11:34


