首页> 外文会议>ASME internatioanl mechanical engineering congress and exposition >FINITE ELEMENT MODEL OF A CELL INCORPORATING CELL MEMBRANE, CYTOSKELETAL STRUCTURE AND INTRACELLULAR FLUID PRESSURE
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FINITE ELEMENT MODEL OF A CELL INCORPORATING CELL MEMBRANE, CYTOSKELETAL STRUCTURE AND INTRACELLULAR FLUID PRESSURE

机译:细胞膜,细胞骨架结构和细胞内液压细胞的有限元模型

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Compressive loading is intrinsic to certain tissues in our body like articular cartilage and bone (1). In situ experiments in cartilage suggest that chondrocytes can undergo significant deformation due to compressive loading on the tissue (2). In situ and isolated cell experiments have concluded that cells are quite resilient to compressive loading, aspiration etc. and exhibit a moduli in the range of 0.6 to 2 kPa (3). However, few studies have attempted to understand the compressive behavior of cells in terms of its structural components. The structural components of a cell consist of a membrane and a dense network of at least three elements (actin, microtubules and intermediate filaments). Using finite element analysis techniques we wanted to explore the role of these structural components in determining the ability of the cell to withstand compression.
机译:压缩载荷是我们体内某些组织的内在型,如关节软骨和骨骼(1)。在软骨中的原位实验表明,由于组织(2)上的压缩负载,软骨细胞可能发生显着的变形。原位和分离的细胞实验得出结论,细胞对压缩负载,抽吸等相当有弹性,并且在0.6至2kPa(3)的范围内表现出模量。然而,很少有研究已经试图在其结构部件方面理解细胞的压缩行为。细胞的结构组分由膜和至少三种元素(肌动蛋白,微管和中间细丝)的致密网络组成。使用有限元分析技术,我们希望探讨这些结构部件在确定细胞承受压缩的能力时的作用。

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