...
首页> 外文期刊>Biomechanics and modeling in mechanobiology >Multiscale modelling for investigating the long-term time-dependent biphasic behaviour of the articular cartilage in the natural hip joint
【24h】

Multiscale modelling for investigating the long-term time-dependent biphasic behaviour of the articular cartilage in the natural hip joint

机译:用于研究天然髋关节软骨长期时间依赖性双相行为的多尺度建模

获取原文
获取原文并翻译 | 示例

摘要

A better understanding of the time-dependent biomechanical behaviour of the biphasic hip articular cartilage (AC) under physiological loadings is important to understand the onset of joint pathology and guide the clinical treatment. Current computational studies for the biphasic hip AC were usually limited to short-term duration or using elaborate loading. The present study aimed to develop a multiscale computational modelling to investigate the long-term biphasic behaviour of the hip AC under physiological loadings over multiple gait cycles. Two-scale computational modelling including a musculoskeletal model and a finite element model of the natural hip was created. These two models were then combined and used to investigate the biphasic behaviour of hip AC over 80 gait cycles. The results showed that the interstitial fluid pressure in the AC supported over 89 of the loading during gait. When the contact area was located at the AC centre, the contact pressure and fluid pressure increased over time from the first cycle to the 80th cycle, while when the contact area approached the edge, these pressures decreased first dramatically and then slowly over time. The peak stresses and strains in the solid matrix of the AC remained at a low level and increased over time from the first cycle to the 80th cycle. This study demonstrated that the long-term temporal variations of the biphasic behaviour of hip AC under physiological loadings are significant. The methodology has potentially important implications in the biomechanical studies of human cartilage and supporting the development of cartilage substitution.
机译:更好地了解双相髋关节软骨(AC)在生理负荷下的时间依赖性生物力学行为对于了解关节病理的发生和指导临床治疗具有重要意义。目前对双相髋关节 AC 的计算研究通常仅限于短期持续时间或使用复杂的负荷。本研究旨在开发一种多尺度计算模型,以研究髋关节 AC 在多个步态周期的生理负荷下的长期双相行为。创建了包括肌肉骨骼模型和自然髋关节有限元模型在内的双尺度计算模型。然后将这两个模型结合起来,用于研究髋关节 AC 在 80 个步态周期中的双相行为。结果表明,在步态期间,AC中的间质液压力支撑了89%以上的负荷。当接触区域位于交流中心时,接触压力和流体压力从第一个循环到第 80 个循环随时间增加,而当接触区域接近边缘时,这些压力首先急剧下降,然后随着时间的推移缓慢下降。AC固体基体中的峰值应力和应变保持在较低水平,并随时间从第一个循环到第80个循环而增加。本研究表明,在生理负荷下,髋关节AC双相行为的长期时间变化是显著的。该方法对人体软骨的生物力学研究具有潜在的重要意义,并支持软骨替代的发展。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号