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Evans, CT, Baldock, SJ, Hardy, JG, Payton, O, Picco, L and Allen, MJ 2021 A Non-Destructive, Tuneable Method to Isolate Live Cells for High-Speed AFM Analysis. Microorganisms, 9 (4). 680. https://doi.org/10.3390/microorganisms9040680
Evans, CT, Baldock, SJ, Hardy, JG, Payton, O, Picco, L and Allen, MJ 2021 A Non-Destructive, Tuneable Method to Isolate Live Cells for High-Speed AFM Analysis. Microorganisms, 9 (4). 680. https://doi.org/10.3390/microorganisms9040680
Dixon, JL, Hopkins, FE, Stephens, JA and Schaefer, H 2020 Seasonal Changes in Microbial Dissolved Organic Sulfur Transformations in Coastal Waters. [in special issue: Microbial Cycling of Atmospheric Trace Gases] Microorganisms, 8, 337. 20, pp. https://doi.org/10.3390/microorganisms8030337
Dixon, JL, Hopkins, FR, Stephens, JA and Schäfer, H 2020 Seasonal Changes in Microbial Dissolved Organic Sulfur Transformations in Coastal Waters. Microorganisms, 8 (3). 337. https://doi.org/10.3390/microorganisms8030337
Ramos, JBE, Ribeiro, SC, Schulz, KG, Coelho, FJRD, Oliveira, V, Cunha, A, Gomes, NCM, Brownlee, C, Passow, U and Azevedo, EB 2022 Emiliania huxleyi: bacteria interactions under increasing CO2 concentrations [in special issue: A Glimpse into Future Research on Microalgae Diversity, Ecology and Biotechnology] Microorganisms, 10 (12). https://doi.org/10.3390/microorganisms10122461
Ramos, JBE, Ribeiro, SC, Schulz, KG, Coelho, FJRD, Oliveira, V, Cunha, A, Gomes, NCM, Brownlee, C, Passow, U and Azevedo, EB 2022 Emiliania huxleyi: bacteria interactions under increasing CO2 concentrations [in special issue: A Glimpse into Future Research on Microalgae Diversity, Ecology and Biotechnology] Microorganisms, 10 (12). https://doi.org/10.3390/microorganisms10122461
Ramos, JBE, Ribeiro, SC, Schulz, KG, Coelho, FJRD, Oliveira, V, Cunha, A, Gomes, NCM, Brownlee, C, Passow, U and Azevedo, EB 2022 Emiliania huxleyi: bacteria interactions under increasing CO2 concentrations [in special issue: A Glimpse into Future Research on Microalgae Diversity, Ecology and Biotechnology] Microorganisms, 10 (12). https://doi.org/10.3390/microorganisms10122461
Dixon, JL, Hopkins, FR, Stephens, JA and Schäfer, H 2020 Seasonal Changes in Microbial Dissolved Organic Sulfur Transformations in Coastal Waters. Microorganisms, 8 (3). 337. https://doi.org/10.3390/microorganisms8030337
Dixon, JL, Hopkins, FE, Stephens, JA and Schaefer, H 2020 Seasonal Changes in Microbial Dissolved Organic Sulfur Transformations in Coastal Waters. [in special issue: Microbial Cycling of Atmospheric Trace Gases] Microorganisms, 8, 337. 20, pp. https://doi.org/10.3390/microorganisms8030337
Ramos, JBE, Ribeiro, SC, Schulz, KG, Coelho, FJRD, Oliveira, V, Cunha, A, Gomes, NCM, Brownlee, C, Passow, U and Azevedo, EB 2022 Emiliania huxleyi: bacteria interactions under increasing CO2 concentrations [in special issue: A Glimpse into Future Research on Microalgae Diversity, Ecology and Biotechnology] Microorganisms, 10 (12). https://doi.org/10.3390/microorganisms10122461
Dixon, JL, Hopkins, FE, Stephens, JA and Schaefer, H 2020 Seasonal Changes in Microbial Dissolved Organic Sulfur Transformations in Coastal Waters. [in special issue: Microbial Cycling of Atmospheric Trace Gases] Microorganisms, 8, 337. 20, pp. https://doi.org/10.3390/microorganisms8030337
Dixon, JL, Hopkins, FE, Stephens, JA and Schaefer, H 2020 Seasonal Changes in Microbial Dissolved Organic Sulfur Transformations in Coastal Waters. [in special issue: Microbial Cycling of Atmospheric Trace Gases] Microorganisms, 8, 337. 20, pp. https://doi.org/10.3390/microorganisms8030337
Dixon, JL, Hopkins, FR, Stephens, JA and Schäfer, H 2020 Seasonal Changes in Microbial Dissolved Organic Sulfur Transformations in Coastal Waters. Microorganisms, 8 (3). 337. https://doi.org/10.3390/microorganisms8030337
Dixon, JL, Hopkins, FR, Stephens, JA and Schäfer, H 2020 Seasonal Changes in Microbial Dissolved Organic Sulfur Transformations in Coastal Waters. Microorganisms, 8 (3). 337. https://doi.org/10.3390/microorganisms8030337
Dixon, JL, Hopkins, FR, Stephens, JA and Schäfer, H 2020 Seasonal Changes in Microbial Dissolved Organic Sulfur Transformations in Coastal Waters. Microorganisms, 8 (3). 337. https://doi.org/10.3390/microorganisms8030337
Dixon, JL, Hopkins, FE, Stephens, JA and Schaefer, H 2020 Seasonal Changes in Microbial Dissolved Organic Sulfur Transformations in Coastal Waters. [in special issue: Microbial Cycling of Atmospheric Trace Gases] Microorganisms, 8, 337. 20, pp. https://doi.org/10.3390/microorganisms8030337
Ramos, JBE, Ribeiro, SC, Schulz, KG, Coelho, FJRD, Oliveira, V, Cunha, A, Gomes, NCM, Brownlee, C, Passow, U and Azevedo, EB 2022 Emiliania huxleyi: bacteria interactions under increasing CO2 concentrations [in special issue: A Glimpse into Future Research on Microalgae Diversity, Ecology and Biotechnology] Microorganisms, 10 (12). https://doi.org/10.3390/microorganisms10122461
Ramos, JBE, Ribeiro, SC, Schulz, KG, Coelho, FJRD, Oliveira, V, Cunha, A, Gomes, NCM, Brownlee, C, Passow, U and Azevedo, EB 2022 Emiliania huxleyi: bacteria interactions under increasing CO2 concentrations [in special issue: A Glimpse into Future Research on Microalgae Diversity, Ecology and Biotechnology] Microorganisms, 10 (12). https://doi.org/10.3390/microorganisms10122461
Evans, CT, Baldock, SJ, Hardy, JG, Payton, O, Picco, L and Allen, MJ 2021 A Non-Destructive, Tuneable Method to Isolate Live Cells for High-Speed AFM Analysis. Microorganisms, 9 (4). 680. https://doi.org/10.3390/microorganisms9040680
Ramos, JBE, Ribeiro, SC, Schulz, KG, Coelho, FJRD, Oliveira, V, Cunha, A, Gomes, NCM, Brownlee, C, Passow, U and Azevedo, EB 2022 Emiliania huxleyi: bacteria interactions under increasing CO2 concentrations [in special issue: A Glimpse into Future Research on Microalgae Diversity, Ecology and Biotechnology] Microorganisms, 10 (12). https://doi.org/10.3390/microorganisms10122461
Evans, CT, Baldock, SJ, Hardy, JG, Payton, O, Picco, L and Allen, MJ 2021 A Non-Destructive, Tuneable Method to Isolate Live Cells for High-Speed AFM Analysis. Microorganisms, 9 (4). 680. https://doi.org/10.3390/microorganisms9040680
Evans, CT, Baldock, SJ, Hardy, JG, Payton, O, Picco, L and Allen, MJ 2021 A Non-Destructive, Tuneable Method to Isolate Live Cells for High-Speed AFM Analysis. Microorganisms, 9 (4). 680. https://doi.org/10.3390/microorganisms9040680
Evans, CT, Baldock, SJ, Hardy, JG, Payton, O, Picco, L and Allen, MJ 2021 A Non-Destructive, Tuneable Method to Isolate Live Cells for High-Speed AFM Analysis. Microorganisms, 9 (4). 680. https://doi.org/10.3390/microorganisms9040680
Evans, CT, Baldock, SJ, Hardy, JG, Payton, O, Picco, L and Allen, MJ 2021 A Non-Destructive, Tuneable Method to Isolate Live Cells for High-Speed AFM Analysis. Microorganisms, 9 (4). 680. https://doi.org/10.3390/microorganisms9040680
Ramos, JBE, Ribeiro, SC, Schulz, KG, Coelho, FJRD, Oliveira, V, Cunha, A, Gomes, NCM, Brownlee, C, Passow, U and Azevedo, EB 2022 Emiliania huxleyi: bacteria interactions under increasing CO2 concentrations [in special issue: A Glimpse into Future Research on Microalgae Diversity, Ecology and Biotechnology] Microorganisms, 10 (12). https://doi.org/10.3390/microorganisms10122461
Dixon, JL, Hopkins, FE, Stephens, JA and Schaefer, H 2020 Seasonal Changes in Microbial Dissolved Organic Sulfur Transformations in Coastal Waters. [in special issue: Microbial Cycling of Atmospheric Trace Gases] Microorganisms, 8, 337. 20, pp. https://doi.org/10.3390/microorganisms8030337
Dixon, JL, Hopkins, FR, Stephens, JA and Schäfer, H 2020 Seasonal Changes in Microbial Dissolved Organic Sulfur Transformations in Coastal Waters. Microorganisms, 8 (3). 337. https://doi.org/10.3390/microorganisms8030337
Dixon, JL, Hopkins, FR, Stephens, JA and Schäfer, H 2020 Seasonal Changes in Microbial Dissolved Organic Sulfur Transformations in Coastal Waters. Microorganisms, 8 (3). 337. https://doi.org/10.3390/microorganisms8030337
Dixon, JL, Hopkins, FE, Stephens, JA and Schaefer, H 2020 Seasonal Changes in Microbial Dissolved Organic Sulfur Transformations in Coastal Waters. [in special issue: Microbial Cycling of Atmospheric Trace Gases] Microorganisms, 8, 337. 20, pp. https://doi.org/10.3390/microorganisms8030337