首页> 外文期刊>Clinical biomechanics >Finite element modeling of soft tissues: Material models, tissue interaction and challenges
【24h】

Finite element modeling of soft tissues: Material models, tissue interaction and challenges

机译:软组织的有限元建模:材料模型,组织相互作用和挑战

获取原文
获取原文并翻译 | 示例
           

摘要

Background Musculoskeletal soft tissues, such as articular cartilage, ligaments, knee meniscus and intervertebral disk, have a complex structure, which provides elasticity and capability to support and distribute the body loads. Soft tissues describe an inhomogeneous and multiphasic structure, and exhibit a nonlinear, time-dependent behavior. Their mechanical response is governed by a substance composed of protein fiber-rich and proteoglycan-rich extracellular matrix and interstitial fluid. Protein fibers (e.g. collagen) give the tissue direction dependent stiffness and strength. To investigate these complex biological systems, the use of mathematical tools is well established, alone or in combination with experimental in vitro and in vivo tests. However, the development of these models poses many challenges due to the complex structure and mechanical response of soft tissues. Methods Non-systematic literature review. Findings This paper provides a summary of different modeling strategies with associated material properties, contact interactions between articulating tissues, validation and sensitivity of soft tissues with special focus on knee joint soft tissues and intervertebral disk. Furthermore, it reviews and discusses some salient clinical findings of reported finite element simulations. Interpretation Model studies extensively contributed to the understanding of functional biomechanics of soft tissues. Models can be effectively used to elucidate clinically relevant questions. However, users should be aware of the complexity of such tissues and of the capabilities and limitations of these approaches to adequately simulate a specific in vivo or in vitro phenomenon.
机译:背景技术诸如关节软骨,韧带,膝盖半月板和椎间盘的肌肉骨骼软组织具有复杂的结构,其提供弹性以及支撑和分配身体负荷的能力。软组织描述了不均匀的多相结构,并表现出非线性的,时间依赖性的行为。它们的机械反应由富含蛋白质纤维和富含蛋白聚糖的细胞外基质和组织液组成的物质控制。蛋白纤维(例如胶原蛋白)赋予组织方向依赖的刚度和强度。为了研究这些复杂的生物系统,可以单独使用数学工具,也可以与体外和体内实验相结合来建立数学工具。然而,由于软组织的复杂结构和机械响应,这些模型的开发提出了许多挑战。方法非系统性文献综述。结论本文总结了不同建模策略的相关材料特性,关节组织之间的接触相互作用,软组织的验证和敏感性,尤其侧重于膝关节软组织和椎间盘。此外,它回顾并讨论了已报道的有限元模拟的一些重要临床发现。解释模型研究为理解软组织的功能生物力学做出了广泛贡献。模型可以有效地用于阐明临床相关问题。但是,用户应了解此类组织的复杂性以及这些方法足以充分模拟特定的体内或体外现象的能力和局限性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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