Faivre, M., Renoux, C., Bessaa, A., Da Costa, L., Joly, P., Gauthier, A., & Connes, P. (2020). Mechanical Signature of Red Blood Cells Flowing Out of a Microfluidic Constriction Is Impacted by Membrane Elasticity, Cell Surface-to-Volume Ratio and Diseases. Front Physiol.
Trích dẫn kiểu ChicagoFaivre, Magalie, Céline Renoux, Amel Bessaa, Lydie Da Costa, Philippe Joly, Alexandra Gauthier, và Philippe Connes. "Mechanical Signature of Red Blood Cells Flowing Out of a Microfluidic Constriction Is Impacted By Membrane Elasticity, Cell Surface-to-Volume Ratio and Diseases." Front Physiol 2020.
Trích dẫn MLAFaivre, Magalie, et al. "Mechanical Signature of Red Blood Cells Flowing Out of a Microfluidic Constriction Is Impacted By Membrane Elasticity, Cell Surface-to-Volume Ratio and Diseases." Front Physiol 2020.