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Study of the Mechanical Environment of Chondrocytes in Articular Cartilage Defects Repaired Area under Cyclic Compressive Loading

机译:循环压缩载荷下关节软骨缺陷修复区域的软骨细胞机械环境研究

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摘要

COMSOL finite element software was used to establish a solid-liquid coupling biphasic model of articular cartilage and a microscopic model of chondrocytes, using modeling to take into account the shape and number of chondrocytes in cartilage lacuna in each layer. The effects of cyclic loading at different frequencies on the micromechanical environment of chondrocytes in different regions of the cartilage were studied. The results showed that low frequency loading can cause stress concentration of superficial chondrocytes. Moreover, along with increased frequency, the maximum value of stress response curve of chondrocytes decreased, while the minimum value increased. When the frequency was greater than 0.2?Hz, the extreme value stress of response curve tended to be constant. Cyclic loading had a large influence on the distribution of liquid pressure in chondrocytes in the middle and deep layers. The concentration of fluid pressure changed alternately from intracellular to peripheral in the middle layer. Both the range of liquid pressure in the upper chondrocytes and the maximum value of liquid pressure in the lower chondrocytes in the same lacunae varied greatly in the deep layer. At the same loading frequency, the elastic modulus of artificial cartilage had little effect on the mechanical environment of chondrocytes.
机译:COMSOL有限元软件用于建立关节软骨和软骨细胞微观模型的固态耦合双相模型,使用建模考虑每层软骨LELUNA中软骨细胞的形状和数量。研究了不同频率对软骨不同地区软骨细胞微机械环境的循环载荷的影响。结果表明,低频负荷可引起浅表菌的应力集中。此外,随着频率的增加,软骨细胞的应力响应曲线的最大值降低,而最小值增加。当频率大于0.2ΩHz时,响应曲线的极值应力趋于恒定。循环载荷对中间层和深层细胞细胞中液体压力分布的影响很大。流体压力的浓度从中间层中的细胞内变化。上层细胞内的液体压力范围和在相同的LELUNA中的下软骨细胞中的液体压力的最大值在深层中变化很大。在相同的装载频率下,人造软骨的弹性模量对软骨细胞的机械环境影响不大。

著录项

  • 来源
    《Journal of healthcare engineering.》 |2017年第1期|共10页
  • 作者单位

    Tianjin Key Laboratory of the Design and Intelligent Control of the Advanced Mechatronical System;

    Tianjin Key Laboratory of the Design and Intelligent Control of the Advanced Mechatronical System;

    Tianjin Key Laboratory of the Design and Intelligent Control of the Advanced Mechatronical System;

    Department of Mechanics;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医用一般科学;
  • 关键词

  • 入库时间 2022-08-20 09:25:04

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