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A computational study on power-law rheology of soft glassy materials with application to cell mechanics

机译:软玻璃质材料幂律流变学的计算研究及其在细胞力学中的应用

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摘要

Response of the cytoskeleton to mechanical stimulus, which involves coordinated assembly and disassembly of cytoskeletal polymers and their coupling to motor proteins, has been shown to be governed by a ubiquitous mechanical behavior called power-law rheology. Various experimental techniques in cell mechanics have yielded similar qualitative observations and quantitative behavior indicating that the power-law rheology is an intrinsic feature of the cell structure. In this study, a biomechanical model of the cell in microbead twisting experiments is developed which incorporates the material law associated with power-law rheology using the finite element method. Such a biomechanical model can help elucidating the mechanics of cytoskeletal responses and relate the microrheology of the cytoskeleton to its overall behavior under mechanical stimulus. This biomechanical model is employed to explore the role of material constants associated with power-law rheology on the overall response of a cell in magnetic twisting cytometry. Furthermore, the computational approach is employed to mimic the experimental observations of [B. Fabry, G.N. Maksym, J.P. Butler, M. Glogauer, D. Navajas, J.J. Fredberg, Scaling the microrheology of living cells, Phys. Rev. Lett. 87 (2001) 148102; B. Fabry, G.N. Maksym, J.P. Butler, M. Glogauer, D. Navajas, N.A. Taback, E.J. Millet, J.J. Fredberg, Time scale and other invariants of integrative mechanical behavior in living cell, Phys. Rev. E, 68(4) (2003) 041914] on living cells.
机译:已经表明,细胞骨架对机械刺激的反应涉及细胞骨架聚合物的协调组装和拆卸以及它们与运动蛋白的偶联,这受普遍存在的称为幂律流变学的机械行为的控制。细胞力学中的各种实验技术已经产生了相似的定性观察和定量行为,表明幂律流变学是细胞结构的固有特征。在这项研究中,开发了微珠扭转实验中细胞的生物力学模型,该模型使用有限元方法结合了与幂律流变学相关的物质定律。这种生物力学模型可以帮助阐明细胞骨架反应的机制,并使细胞骨架的微流变学与其在机械刺激下的整体行为相关。该生物力学模型用于探索与幂律流变学相关的材料常数对磁性扭曲细胞术中细胞总体反应的作用。此外,采用计算方法来模仿[B.法布里(Fabry)马克西姆,J.P.巴特勒,M. Glogauer,D.纳瓦哈斯,J.J. Fredberg,缩放活细胞的微流变学,物理学。牧师87(2001)148102;法布里(B.Fabry) Maksym,J.P. Butler,M.Glogauer,D.Navajas,N.A. Taback,E.J.小米J.J.弗雷德伯格,时间尺度和活细胞中综合机械行为的其他不变量,物理学。 Rev. E,68(4)(2003)041914]。

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