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Modal analysis of a spreading osteoblast cell in culturing

机译:培养中成骨细胞扩散的模态分析

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In bone cell culturing environment, mechanical vibration has been utilized to study the effects of various frequency and amplitude conditions on the cells. In this study, a spreading single cell was modeled as a simple dome to investigate the dynamic properties of a cell in the culturing environment. The finite element modal analysis was applied to evaluate the natural frequency and mode shapes of a spreading bone cell. The variance of cell shapes and mechanical properties such as Young''s modulus were utilized. Simulation results show that the range of the natural frequency for a spreading cell of various sizes (135×30, 100×40, 80×50, and 67×60 μm with 10 μm height) is 9.95–211.05 Hz and cell shapes do not affect the modal analysis results. However the natural frequency is increased proportionally to the increase in Young''s modulus.
机译:在骨细胞培养环境中,已经利用机械振动来研究各种频率和振幅条件对细胞的影响。在这项研究中,将一个扩散的单细胞建模为一个简单的圆顶,以研究细胞在培养环境中的动态特性。应用有限元模态分析来评估骨细胞扩散的固有频率和模态形状。利用了细胞形状和机械性能例如杨氏模量的变化。仿真结果表明,各种尺寸(高度为10μm的135×30、100×40、80×50和67×60μm)的扩展小区的固有频率范围为9.95–211.05 Hz,并且小区形状没有影响模态分析结果。然而,固有频率与杨氏模量的增加成比例地增加。

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