פרסומים מדעיים 2024

פרסומים מדעיים 2024

  1. Amitai, Y., Strobach, E., Hamilton, D. P., Assouline, S., Nishri, A., & Zohary, T. (2024). Seiche‐Induced Fish Kills in the Sea of Galilee — A Possible Explanation for Biblical Miracles?. Water Resources Research60(10), e2024WR037894.https://doi.org/10.1029/2024WR037894
  2. Androsiuk, L., Maane, S. & Tal, S. (2024) CRISPR Spacers Acquired from Plasmids Primarily Target Backbone Genes, Making Them Valuable for Predicting Potential Hosts and Host Range. Microbiol Spectrum 0:e00104-24. https://doi.org/10.1128/spectrum.00104-24
  3. Albano, P. G., Hong, Y., Steger, J., Yasuhara, M., Bartolini, S., Bogi, C.,… Lubinevsky, H.,  Morov, A. R., … & Guy-Haim, T. (2024). New records of non-indigenous species from the eastern Mediterranean Sea (Crustacea, Mollusca), with a revision of genus Isognomon (Mollusca: Bivalvia). PeerJ, 12, e17425. https://doi.org/10.7717/peerj.17425
  4. Alkalay, R., Weinstein, Y., Herut, B., Ozer, T., Zlatkin, O., Bar, T., … & Katz, T. (2024). Temporal pattern and profile of a coastal‐deep sea conveyor at a marginal deep oligotrophic sea. Journal of Geophysical Research: Oceans, 129(6), e2023JC020441.‏ https://doi.org/10.1029/2023JC020441
  5. Alasibi, S., Kazir, M., Israel, Á., & Livney, Y. D. (2024). Algal protein-based 3D-printed fish-analogs as a new approach for sustainable seafood. Current Research in Food Science9, 100905. https://doi.org/10.1016/j.crfs.2024.100905
  6. Alster, A., Kaplan-Levy, R.N., Barinova, S.S. & Zohary, T. (2024). Analyzing semiquantitative phytoplankton counts. Hydrobiologia, 851: 1079–1090.
  7. Atencio, B., Geisler, E., Rubin-Blum, M., Bar-Zeev, E., Adar, E.M., Ram, R., & Ronen, Z. (2024) Metabolic adaptations underpin high productivity rates in relict subsurface water. Scientific Reports 14: 18126.
  8. Barrett, T. J., Li, M., Gouhier, T., Rilov, G., Helmuth, B., Choi, F., … & Müftü, S. (2025). Fine-scale surface complexity promotes temperature extremes but reduces the spatial extent of refugia on coastal rocks. Ecological Modelling501, 110969. https://doi.org/10.1016/j.ecolmodel.2024.110969
  9. Bechor, B., Conti, M., Keely, B., Avnaim-Katav, S., Mischke, S., Miko, S., Hasan, O., Grisonic, M., Radić Rossi, I., Porat, N., Edelman-Furstenberg, Y., Sivan, D., (2024). Molecular to macrofossils indicating last millennium sea level in Lavsa saltpans, Croatia. Quaternary International, 710, 95-110.
  10. Bommarito, C., Noè, S., Díaz-Morales, M.D., Lukić, I., Hiebenthal, C., Rilov, G., Sures, B., Guy-Haim, T., & Wahl, M. (2024). Co-occurrence of native and invasive macroalgae might be facilitated under global warming. Science of the Total Environment, 912: 169087. https://doi.org/10.1016/j.scitotenv.2023.169087
  11. Brown, L. E., Maavara, T., Zhang, J., Chen, X., Klaar, M., Moshe, F. O., .Ben-Zur, E., Stein, S., Gal, G., … & Arnon, S. (2024). Integrating sensor data and machine learning to advance the science and management of river carbon emissions. Critical Reviews in Environmental Science and Technology, 1-24. https://doi.org/10.1080/10643389.2024.2429912
  12. Burdett, H.L., Albright, R., Foster, G.L., Mass, T., Page, T.M., Rinkevich, B., Schoepf, V., Silverman, J. & Kamenos, N.A. (2024). Environmental perspectives needed for sustainable coral reef restoration. PLoS Biology, 22(3): e3002542.
  13. Chust, G., Villarino, E., McLean, M., Mieszkowska, N., Benedetti-Cecchi, L., Bulleri, F., Rilov, G., Yeruham, E., … & Lindegren, M. (2024). Cross-basin and cross-taxa patterns of marine community tropicalization and deborealization in warming European seas. Nature Communications, 15(1): 2126.‏ https://doi.org/10.1038/s41467-024-46526-y
  14. Coenen, D., Evans, D., Hauzer, H., Nambiar, R., Jurikova, H., Dumont, M., Kanna,Rae, J., Erez, J., Cotton, L. & Renema, W., )2024(. Boron isotope pH calibration of a shallow dwelling benthic nummulitid foraminifera. Geochimica et Cosmochimica Acta, 378, pp.217-233. https://doi.org/10.1016/j.gca.2024.06.020
  15. Davidov, K., Marsay, K.S., Itzahri, S., Rubin-Blum, M., Sobral, P., Kranzler, C.F., and Oren, M. (2024). Community composition and seasonal dynamics of microplastic biota in the Eastern Mediterranean Sea. Scientific Reports 14: 26131. https://doi.org/10.1038/s41598-024-73281-3
  16. Douek, J., Giallongo, G., Harbuzov, Z., Galil, B. S., & Rinkevich, B. (2024). Long-Term Population Genetic Features of the Rhopilema nomadica Jellyfish from the Israeli Mediterranean Coasts. Journal of Marine Science and Engineering, 12(1): 171. https://doi.org/10.3390/jmse12010171
  17. Ezra, T. B., Blachinsky, A., Gozali, S., Tsemel, A., Fadida, Y., Tchernov, D., … & Krom, M. (2024). Interannual changes in nutrient and phytoplankton dynamics in the Eastern Mediterranean Sea (EMS) predict the consequences of climate change; results from the Sdot-Yam Time-series station 2018–2022. Deep Sea Research Part I: Oceanographic Research Papers213, 104403.
  18. Gafni, A., Rubin-Blum, M., Murrell, C., Vigderovich, H., Eckert, W., Larke-Mejía, N., and Sivan, O. (2024). Survival strategies of aerobic methanotrophs under hypoxia in methanogenic lake sediments. Environmental Microbiome 19: 44.  https://doi.org/10.1186/s40793-024-00586-1
  19. Ginatt, A. A., Berihu, M., Castel, E., Medina, S., Carmi, G., Faigenboim-Doron, A., Sharin, I., Tal, O., … & Freilich, S. (2024). A metabolic modeling-based framework for predicting trophic dependencies in native rhizobiomes of crop plants. Elife13, RP94558. https://doi.org/10.7554/eLife.94558.3
  20. Givati S., Forchielli E., Aharonovich D., Barak N., Weissberg O., Belkin N., Rahav E., Segrè D., & Sher D. (2024). Diversity in Dissolved Organic Matter Utilization by Heterotrophic Marine Bacteria. Appl Environ Microbiol 0:e00256-24 https://doi.org/10.1128/aem.00256-24
  21. Granot, R., Hamiel, Y., Kanari, M., Kurant, S., & Katz, O. (2024). Continued convergence after the occurrence of a slab break-off: The case of the Cyprian Arc. Geophysical Research Letters, 51: e2023GL108095.
  22. Guy-Haim, T., Iakovleva, A., Ermak, K., Spanier, E., & Morov, A. R. (2024). First record of the phyllosoma larva of the pygmy locust lobster Scyllarus pygmaeus (Crustacea, Decapoda) in the eastern Mediterranean Sea. Journal of the Marine Biological Association of the United Kingdom: 104, e49.  
  23. Guy-Haim, Farstey, V., T., Iakovleva, Spanier, E., & Morov, A. R. (2024). First report of the pygmy slipper lobster Biarctus sordidus (Crustacea, Decapoda) in the Red Sea following the finding of its phyllosoma larva. Journal of the Marine Biological Association of the United Kingdom (in press). https://doi.org/10.1017/S0025315424000390
  24. Haim, N., Grigorieva, V., Toledo, Y., Soffer, R., Mayzel, B., Katz, T., Alkalay, R., Biton, E., Lazar, A., … & Herut, B. & Toledo, Y. (2024). Multiyear surface waves dataset from the subsurface "DeepLev" Eastern Levantine moored station. Earth System Science Data: 16(6), 2659-2668. https://doi.org/10.5194/essd-16-2659-2024
  25. Harbuzov, Z., Farberova, V., Tom, M. & Lubinevsky, H. (2024). Deep-sea meiofaunal communities in the south-eastern Levantine basin and their shaping factors – Morphological- taxonomy- free metabarcoding approach. Ecology and Evolution: 14(3), p.e10956. https://doi.org/10.1002/ece3.10956
  26. Harbuzov, Z., Tom, M., Danovaro, R., Gambi, C., Carugati, L., Lubinevsky, H., Lampadariou, N. (2024). First checklist of free-living marine nematodes from the Israeli coast of the Mediterranean. Mediterranean Marine Science 25(2): 287-299. https://doi.org/10.12681/mms.35375
  27. Hashimshony, T., Levin, L., Fröbius, A. C., Dahan, N., Chalifa-Caspi, V., Hamo, R., … & Lubzens, E. (2024). A transcriptomic examination of encased rotifer embryos reveals the developmental trajectory leading to long-term dormancy; are they “animal seeds”?. BMC genomics25(1): 1-27. https://doi.org/10.1186/s12864-024-09961-1
  28. Hauzer, H., Evans, D., Müller, W., Rosenthal, Y. & Erez, J. (2024). The effect of carbonate chemistry on trace elements incorporation in a high-Mg calcitic foraminifera. Geochimica et Cosmochimica Acta. In press. https://doi.org/10.1016/j.gca.2024.11.022
  29. Herut, B., Goldman, R., Ozer, T., Lazar, A., Biton, E., Gertman, I., Silverman, Y., Segal, Y., Sisma-Ventura, G., Gertner, Y., Rubin-Blum, M., Belkin, N., & Rahav, E. (2024). Tar pollution event (2021) at the Southeastern Levantine oligotrophic basin, short-term impacts and operational oceanography perspectives. Marine Pollution Bulletin, 198, 115892. https://doi.org/10.1016/j.marpolbul.2023.115892[2]
  30. Homma, H., Masunaga, E., Ostrovsky, I., & Yamazaki, H. (2024). Turbulent mixing layers and associated diffusive fluxes across the epilimnion and metalimnion in stratified large Lake Biwa. Limnology & Oceanography. https://doi.org/10.1002/lno.12769
  31. Horoszowski-Fridman, Y. B., Izhaki, I., Katz, S. M., Barkan, R., & Rinkevich, B. (2024). Shifting reef restoration focus from coral survivorship to biodiversity using Reef Carpets. Communications Biology7(1): 141.‏
  32. Iakovleva, A., Morov, A. R., Angel, D., & Guy-Haim, T. (2024). From ctenophores to scyphozoans: parasitic spillover of a burrowing sea anemone. Scientific Reports, 14(1), 20785. https://doi.org/10.1038/s41598-024-72168-7
  33. Israel, Á. (2024). Can seaweed cultivation provide a CO2 sequestration service that will lessen global warming? Examines Marine Biology and Oceanography, 7(1). https://crimsonpublishers.com/eimbo/pdf/EIMBO.000652.pdf
  34. Ito, M., Guy-Haim, T., Sawall, Y., Franz, M., Buchholz, B., Hansen, T., … & Scotti, M. (2024). Responses at various levels of ecological hierarchy indicate acclimation to sequential sublethal heatwaves in a temperate benthic ecosystem. Philosophical Transactions B, 379(1909): 20230171.  https://doi.org/10.1098/rstb.2023.0171
  35. Jacobson, Y., Bialik, O.M., Silverman, J., Lazar, B., Burd-Villanova, D., Galilove, E., Rahav, E., & Sisma-Ventura, G.(2024). Desalination brines as a potential vector for CO2 sequestration in the deep sea. Desalination, 574: 117234 3
  36. Kashyap, M., Ghosh, S., Levkov, K., Livney, Y.D., Israel, Á. & Golberg, A. (2024). High voltage pulsed electric fields and pH shift process for protein and solute release from Gracilaria sp., red edible seaweed. Food and Bioprocess Technology: 1-12. https://doi.org/10.1007/s11947-024-03432-x
  37. Kamyshny, J.R., A., Klein, R., Eckert, W., & Avetisyan, K. (2024). Influence of environmental settings, including vegetation, on speciation of the redox-sensitive elements in the sediments of monomictic Lake Kinneret. Limnology (accepted).
  38. Katz, T., Bookman, R., Herut, B., Goodman-Tchernov, B., & Sisma-Ventura, G. (2024). Far-field effects of the Nile damming on the silica cycle in the Southeastern Mediterranean Sea. Science of The Total Environment, 171274.‏ https://doi.org/10.1016/j.scitotenv.2024.171274
  39. Kolan, D., Cattan-Tsaushu, E., Enav, H., Freiman, Z., Malinsky-Rushansky, N., Ninio, S. and Avrani, S. (2024). Tradeoffs between phage resistance and nitrogen fixation drive the evolution of genes essential for cyanobacterial heterocyst functionality. The ISME Journal 18: wrad008. https://doi.org/10.1093/ismejo/wrad008
  40. Kültz, D., Gardell, A., DeTomaso, A., Stoney, G., Rinkevich, B., Rinkevich, Y., Qarri, A., Dong, V., Luu, B., & Lin, M. (2024). Deep quantitative proteomics of North American Pacific coast star tunicate (Botryllus schlosseri). Proteomics, 2300628. https://doi.org/10.1002/pmic.202300628
  41. Levanoni, J., Rosner, A., Lapidot, Z., Paz, G., & Rinkevich, B.  (2024). Coral tissue regeneration and growth Is associated with the presence of stem-like cells. Journal of Marine Science and Engineering, 12: 343. https://doi.org/10.3390/jmse12020343
  42. Levin, G., Yasmin, M., Liran, O., Hanna, R., Kleifeld, O., Horev, G., … & Nawrocki, W. J. (2024). Processes independent of nonphotochemical quenching protect a high-light-tolerant desert alga from oxidative stress. Plant Physiology, kiae608. https://doi.org/10.1093/plphys/kiae608
  43. Li, X., Li, L., Huang, Y., Wu, H., Sheng, S., Jiang, X., … & Ostrovsky, I. (2024). Upstream nitrogen availability determines the Microcystis salt tolerance and influences microcystins release in brackish water. Water Research, 121213.
  44. Li Shing Hiung, D. L., Schuster, J. M., Duncan, M. I., Payne, N. L., Helmuth, B., Chu, J. W., … Guy-Haim, T., … & Bates, A. E. (2024). Ocean weather, biological rates, and unexplained global ecological patterns. PNAS nexus, 3(8). https://doi.org/10.1093/pnasnexus/pgae260
  45. Lohmann, R., Vrana, B., Muir, D., Smedes, F., Sobotka, J., Zeng, E.Y., Bao, L.J., Allan, I.J., Astrahan, P., Bidleman, T., & Crowley, D. (2024). AQUA-GAPS/MONET-Derived Concentrations and Trends of PAHs and Polycyclic Musks across Global Waters. Environmental science & technology, 58 (30): 13456. https://doi.org/10.1021/acs.est.4c03099
  46. Manda, S., Herut, B., Rilov, G., Kucera, M., Morard, R., Abramovich, S., & Ashckenazi-Polivoda, S. A. (2024). A dynamic subtropical coastal hotspot of benthic foraminifera in the Southeastern Mediterranean indicates early-stage tropicalization. Science of the Total Environment, 173917. https://doi.org/10.1016/j.scitotenv.2024.173917
  47. Mayo, A., Vitrack-Tamam, S., Moshelion, M., & Liran, O. (2024). Integrating solar induced fluorescence with high throughput plant screening for advanced phenotyping of plants. Smart Agricultural Technology9, 100642. https://doi.org/10.1016/j.atech.2024.100642
  48. McCormack, J., Jaouen, K., Bourgon, N., Sisma-Ventura, G., Müller, W., Tacail, J.G.T., Tütken, T. (2024). Zinc isotope composition of hard tissues and muscle in pisciculture gilt-head seabreams (Sparus aurata), and their relation to diet. Marine Biology, 171(3), 65. https://doi.org/10.1007/s00227-023-04383-1
  49. Moshe, N., Katz, O., Torfstein, A., Kanari, M., Masque, P., & Hyams-Kaphzan, O. (2024). Glacial-Holocene variability in sediment accumulation and erosion along submarine blind canyons: A case study from Eastern Mediterranean Sea. Marine Geology, v. 469, p. 107217.  https://doi.org/10.1016/j.margeo.2024.107217.
  50. Nahor, O., Israel, Á., Barger, N., Rubin-Blum, M. and Luzzatto-Knaan, T. (2024). Epiphytic microbiome associated with intertidal seaweeds in the Mediterranean Sea: comparative analysis of bacterial communities across seaweed phyla. Scientific Reports, 14: 18631. https://doi.org/10.1038/s41598-024-69362-y
  51. Noè, S., Bommarito, C., Díaz-Morales, D.M., Guy-Haim, T., Ermak, K., Wahl, M., Sures, B., Morov, A.R. and Rilov, G. (2024). Response of native and invasive grazers to global warming: marine heatwaves vs. gradual trends. Marine Ecology Progress Series, 748, pp.69-82. https://doi.org/10.3354/meps14716
  52. Pearman, P.B., Broennimann, O., Aavik, T., Albayrak, T., Alves, P.C., …., Rinkevich, B., …. & Bruford, M. (2024). Monitoring of species’ genetic diversity in Europe varies greatly and overlooks potential climate change impacts. Nature Ecology and Evolution, 8: 267–281. https://doi.org/10.1038/s41559-023-02260-0.[3]
  53. Fedorca, A., … Rinkevich, B., Russo, I-R.M., Theraroz, A., Thomas, N.E., Westergren, M., Winter, S., Laikre, L., Kopatz, A. Dealing with the complexity of effective population size in conservation practice. Evolutionary Applications (in press). doi: 10.1111/eva.70031
  54. Qarri, A., Rinkevich, Y., Douek, J., Sardogan, A., Rinkevich, B. (2024). Growth performance of a newly isolated and culturable thraustochytrid strain from sea squirt colonies. Fishes, 9: 22. https://doi.org/10.3390/fishes9010022.
  55. Rachmilovitz, E. N., Douek, J., & Rinkevich, B. (2024). Population Genetics Assessment of the Model Coral Species Stylophora pistillata from Eilat, the Red Sea. Journal of Marine Science and Engineering12(2): 315.‏
  56. Rachmilovitz, E.N., Shaish, L., Douek, J., & Rinkevich, B. (2024). Population genetics assessment of two pocilloporid coral species from the northern Red Sea: Implications for urbanized reef sustainability. Marine Environmental Research, 199: 106580. https://doi.org/10.1016/j.marenvres.2024.106580
  57. Rahav, E., Herut, B. and Paytan A.(2024). Blowing in the wind: microbial transport in the atmosphere. Frontiers for Young Minds. 11: 1172757. doi: 10.3389/frym.2023.1172757.
  58. Rahav E., Belkin N., Reich T., Paytan A., Bar-Zeev E. (2024). Evaluating the effects of desalination antiscalants on phytoplankton and bacterial communities in oligotrophic environments. Desalination 118110. https://doi.org/10.1016/j.desal.2024.118110 .
  59. Rathod, S., Hamilton, D. S., Nino, L., Kreidenweis, S. M., Bian, Q., Mahowald, N. M., …. Herut B., et al. (2024). Constraining present-day anthropogenic total iron emissions using model and observations. Journal of Geophysical Research: Atmospheres, 129: e2023JD040332. https://doi.org/10.1029/2023JD040332
  60. Ratinskaia, L., Malavin, S., Zvi-Kedem, T., Vintila, S., Kleiner, M., & Rubin-Blum, M. (2024). Metabolically-versatile Ca. Thiodiazotropha symbionts of the deep-sea lucinid clam Lucinoma kazani have the genetic potential to fix nitrogen. ISME Communications, 4, 2024: 04.05.588213. https://doi.org/10.1093/ismeco/ycae076
  61. Ravaglioli, C., De Marchi, L., Anselmi, S., Dattolo, E., Fontanini, D., Pretti, C., … Rilov, G., Silverman, J., … & Bulleri, F. (2024). Ocean acidification impairs seagrass performance under thermal stress in shallow and deep water. Environmental Research241, 117629. https://doi.org/10.1016/j.envres.2023.117629
  62. Reich, T., Belkin N., Sisma-Ventura, G.,Berman-Frank, I.,& Rahav, E.(2024). Dark inorganic carbon fixation in the euphotic zone of the Gulf of Aqaba (N Red Sea); Rates and limitations. Limnology & Oceanography, 9999; 1–14.
  63. Regev, S., Carmel, Y., Gal, G. (2024). Assessing alternative lake management actions for climate change adaptation. Ambio: 1-12. https://doi.org/10.1007/s13280-024-02039-y
  64. Regev, S., Carmel, Y., Schlabing, D., & Gal, G. (2024). Climate change impact on sub-tropical lakes ecosystem–Lake Kinneret as a case study. Science of The Total Environment, 171163. https://doi.org/10.1016/j.scitotenv.2024.171163
  65. Rinkevich, B. (2024).  A conceptual approach for an innovative Marine Animal Forest apparatus that facilitates carbon sequestration and biodiversity enhancement. Science of the Total Environment 947, 174353. https://doi.org/10.1016/j.scitotenv.2024.174353
  66. Rilov, G., Canning‐Clode, J., & Guy‐Haim, T. (2024). Ecological impacts of invasive ecosystem engineers: A global perspective across terrestrial and aquatic systems. Functional Ecology, 38(1), 37-51. https://doi.org/10.1111/1365-2435.14406
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  68. Rosner, A., Rinkevich, B. (2024). Harnessing ascidians as model organisms for environmental risk assessment. Environments 11, 232. https://doi.org/10.3390/`environments11110232
  69. Rosner, A., Ballarin, L., Barnay-Verdier, S., Borisenko, I., Drago, L., Drobne, D., Eliso, M, C., Harbuzova, Z., Grimald, A., Guy-Haim, T., Karahan, A., Lynch, I., Lionetto, M.G., Martinez, P., Mehennaoui; K., Ozcan, E.O., Pinsino, A., Paz, A., Rinkevich, B., Spagnuolo, A., Sugni, M., & Cambier, S. (2024).  A broad taxa approach as an important concept in ecotoxicological studies and pollution monitoring. Biological Reviews, 99: 131-176. https://doi.org/10.1111/brv.13015[4]
  70. Rossi, V., Pipitone, C., Yates, K. L., Badalamenti, F., D’Anna, G., Pita, C., Rilov, G., … & Goldsborough, D. (2024). Poor online information on European marine protected areas impairs public participation under the Aarhus Convention. Marine Policy161, 106012. https://doi.org/10.1016/j.marpol.2024.106012https://doi.org/10.1016/j.marpol.2024.106012
  71. Rotter, A., Varamogianni-Mamatsi, D., Pobirk, A.Z., Matjaž, M.G., Cueto, M., Díaz-arrero, A.R., Jónsdóttir, R., Sveinsdóttir, K., Catalá, T.S., Romano, G., Guler, B.A., Atak, E., Zrimec, M.B., Bosch, D., Deniz, I., Gaudêncio, S.P., Grigalionyte-Bembič, E., Klun, K., Zidar, L., Rius, A.C., Baebler, Š., Bilela, L.L., Rinkevich, B., Mandalakis, M. (2024). Marine cosmetics and the blue bioeconomy: from sourcing to success stories, IScience 27, 111339. https://doi.org/10.1016/j.isci.2024.111339
  72. Rubin-Blum M., Yudkovsky Y., Marmen S., Raveh O., Amrani A., Kutuzov I., Guy-Haim T., and Rahav E. (2024). Tar patties are hotspots of hydrocarbon turnover and nitrogen fixation during a nearshore pollution event in the oligotrophic southeastern Mediterranean Sea. Marine Pollution Bulletin 198: 106497. https://doi.org/10.1016/j.marpolbul.2023.115747 
  73. Rubin-Blum M., Makovsky Y., Rahav E, Belkin N., Antler G., Sisma-Ventura G., & Herut B. (2024). Active microbial communities facilitate carbon turnover in brine pools found in the deep Southeastern Mediterranean Sea. Marine Environmental Research, 198: 106497. https://doi.org/10.1016/j.marenvres.2024.106497
  74. Schroeder K., Ben Ismail S., Bensi M., Bosse A., Chiggiato J., Civitarese G., Falcieri M. F., Fusco G., Gacic M., Gertman I., Kubin E., Malanotte-Rizzoli P., Martellucci R., Menna M., Ozer T., Taupier-Letage I., Vargas-Yanez M., Velaoras D., & Vilibic I. (2024). A consensus-based, revised and comprehensive catalogue for Mediterranean water masses acronyms. Mediterranean Marine Science, 25(3), 783–791.
  75. Silverman, J., Strauch‐Gozali, S., & Asfur, M. (2024). The Influence of fresh submarine groundwater discharge on seawater acidification along the northern Mediterranean coast of Israel. Journal of Geophysical Research: Oceans, 129(6), e2024JC021010. https://doi.org/10.1029/ 2024JC021010
  76. Sirota R., Winters G., Levy O., Marques J., Paytan A., Silverman J., Sisma-Ventura G., Rahav E., Antler G. &Bar-Zeev E.(2024). Impacts of Desalination Brine Discharge on Benthic Ecosystems. Environmental Science and Technology, 58 (13): 5631-5645. https://doi.org/10.1021/acs.est.3c07748
  77. Sisma-Ventura, G., Herut, B., Segal, Y., Stern, N., Makovsky, Y., and Rubin-Blum, M. (2024). Oviparous catsharks accumulate mercury in deep-sea brine pool nurseries. Environmental Science and Technology Letters 11: 1103–1109.
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