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- W3089682448 abstract "Significance Red blood cells are soft and pliable, which allows them to deform through small capillaries. We have found that red blood cells, if dispersed in a synthetic liquid crystal, are squeezed into complex shapes via the viscoelastic environment created by the liquid crystal. The strained shapes exhibited by individual red blood cells in liquid crystals reveal cell mechanical properties and unmask a high level of cell-to-cell variation across a population of cells. The sharing of strain between liquid crystals and soft mammalian cells is general and provides approaches for quantifying variations in cell mechanical properties, including during aging and diseases such as malaria and sickle cell anemia." @default.
- W3089682448 created "2020-10-08" @default.
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- W3089682448 date "2020-10-02" @default.
- W3089682448 modified "2023-10-10" @default.
- W3089682448 title "Dynamic and reversible shape response of red blood cells in synthetic liquid crystals" @default.
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- W3089682448 doi "https://doi.org/10.1073/pnas.2007753117" @default.
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