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Effects of Frequency and Acceleration Amplitude on Osteoblast Mechanical Vibration Responses: A Finite Element Study

机译:频率和加速度幅度对成骨细胞机械振动响应的影响:有限元研究

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摘要

Bone cells are deformed according to mechanical stimulation they receive and their mechanical characteristics. However, how osteoblasts are affected by mechanical vibration frequency and acceleration amplitude remains unclear. By developing 3D osteoblast finite element (FE) models, this study investigated the effect of cell shapes on vibration characteristics and effect of acceleration (vibration intensity) on vibrational responses of cultured osteoblasts. Firstly, the developed FE models predicted natural frequencies of osteoblasts within 6.85–48.69 Hz. Then, three different levels of acceleration of base excitation were selected (0.5, 1, and 2 g) to simulate vibrational responses, and acceleration of base excitation was found to have no influence on natural frequencies of osteoblasts. However, vibration response values of displacement, stress, and strain increased with the increase of acceleration. Finally, stress and stress distributions of osteoblast models under 0.5 g acceleration in Z-direction were investigated further. It was revealed that resonance frequencies can be a monotonic function of cell height or bottom area when cell volumes and material properties were assumed as constants. These findings will be useful in understanding how forces are transferred and influence osteoblast mechanical responses during vibrations and in providing guidance for cell culture and external vibration loading in experimental and clinical osteogenesis studies.
机译:骨细胞根据其受到的机械刺激及其机械特性而变形。然而,尚不清楚成骨细胞如何受到机械振动频率和加速度幅度的影响。通过建立3D成骨细胞有限元(FE)模型,本研究调查了细胞形状对振动特性的影响以及加速度(振动强度)对培养成骨细胞振动响应的影响。首先,发达的有限元模型预测了成骨细胞的自然频率在6.85–48.69 Hz之间。然后,选择三种不同水平的基础激发加速度(0.5、1和2μg)来模拟振动响应,发现基础激发的加速度对成骨细胞的固有频率没有影响。但是,位移,应力和应变的振动响应值随加速度的增加而增加。最后,进一步研究了在Z方向上加速度为0.5 g的成骨细胞模型的应力和应力分布。揭示了当细胞体积和材料性质假定为常数时,共振频率可以是细胞高度或底部面积的单调函数。这些发现将有助于理解振动过程中力如何传递并影响成骨细胞的机械反应,并为实验和临床成骨研究中的细胞培养和外部振动负荷提供指导。

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