Publication: Characterization of size-dependent mechanical properties of tip-growing cells using a lab-on-chip device
Characterization of size-dependent mechanical properties of tip-growing cells using a lab-on-chip device
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Hu, C., Munglani, G., Vogler, H., Ndinyanka Fabrice, T., Shamsudhin, N., Wittel, F. K., Ringli, C., Grossniklaus, U., Herrmann, H. J., & Nelson, B. J. (2017). Characterization of size-dependent mechanical properties of tip-growing cells using a lab-on-chip device. Lab on a Chip, 17(1), 82–90. https://doi.org/10.1039/c6lc01145d
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Quantification of mechanical properties of tissues, living cells, and cellular components is crucial for the modeling of plant developmental processes such as mechanotransduction. Pollen tubes are tip-growing cells that provide an ideal system to study the mechanical properties at the single cell level. In this article, a lab-on-a-chip (LOC) device is developed to quantitatively measure the biomechanical properties of lily (Lilium longiflorum) pollen tubes. A single pollen tube is fixed inside the microfluidic chip at a specific orien
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Hu, C., Munglani, G., Vogler, H., Ndinyanka Fabrice, T., Shamsudhin, N., Wittel, F. K., Ringli, C., Grossniklaus, U., Herrmann, H. J., & Nelson, B. J. (2017). Characterization of size-dependent mechanical properties of tip-growing cells using a lab-on-chip device. Lab on a Chip, 17(1), 82–90. https://doi.org/10.1039/c6lc01145d