Yu Lingyao, Sheng Yunlong, Chiou Arthur
Center for Optics, Photonics and Lasers, Department of Physics, Physical Engineering and Optics, Laval University, Québec G1V0A6, Canada.
Opt Express. 2013 May 20;21(10):12174-84. doi: 10.1364/OE.21.012174.
For studying the elastic properties of a biconcave red blood cell using the dual-trap optical tweezers without attaching microbeads to the cell, we implemented a three-dimensional finite element simulation of the light scattering and cell's deformation using the coupled electromagnetic and continuum mechanics modules. We built the vector field of the trapping beams, the cell structure layout, the hyperelastic and viscoelastic cell materials, and we reinforced the constraints on the cell constant volume in the simulation. This computation model can be useful for studying the scattering and the other mechanical properties of the biological cells.
为了在不向双凹红细胞附着微珠的情况下,使用双阱光镊研究其弹性特性,我们利用耦合电磁和连续介质力学模块对光散射和细胞变形进行了三维有限元模拟。我们构建了捕获光束的矢量场、细胞结构布局、超弹性和粘弹性细胞材料,并在模拟中加强了对细胞恒定体积的约束。该计算模型可用于研究生物细胞的散射和其他力学特性。