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- W3113946808 abstract "Significance At the microscopic scales at which the life of marine microbes unfolds, the physics is dominated by viscosity. Increasing viscosity slows down both the passive transport of solutes and particles and the swimming of motile microorganisms, and thus directly or indirectly affects all aspects of microbial life. Viscosity depends not only on the physical properties of water, but it also varies as a consequence of biological activity, allowing microorganisms some control over their physical landscape. Our use of microrheology allows us to explore how viscosity is structured around phytoplankton cells and marine aggregates and unveils a level of spatial heterogeneity that has implications for the functioning of the microbial food web and hence of marine biogeochemical cycles." @default.
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- W3113946808 date "2020-12-21" @default.
- W3113946808 modified "2023-10-16" @default.
- W3113946808 title "Microrheology reveals microscale viscosity gradients in planktonic systems" @default.
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- W3113946808 doi "https://doi.org/10.1073/pnas.2011389118" @default.
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