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首页> 外文期刊>Journal of biomechanical engineering. >Historical Review of Combined Experimental and Computational Approaches for Investigating Annulus Fibrosus Mechanics
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Historical Review of Combined Experimental and Computational Approaches for Investigating Annulus Fibrosus Mechanics

机译:历史综述调查环纤维机械的综合实验和计算方法

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Intervertebral disc research has sought to develop a deeper understanding of spine biomechanics, the complex relationship between disc health and back pain, and the mechanisms of spinal injury and repair. To do so, many researchers have focused on characterizing tissue-level properties of the disc, where the roles of tissue subcomponents can be more systematically investigated. Unfortunately, experimental challenges often limit the ability to measure important disc tissue- and subtissue-level behaviors, including fiber–matrix interactions, transient nutrient and electrolyte transport, and damage propagation. Numerous theoretical and numerical modeling frameworks have been introduced to explain, complement, guide, and optimize experimental research efforts. The synergy of experimental and computational work has significantly advanced the field, and these two aspects have continued to develop independently and jointly. Meanwhile, the relationship between experimental and computational work has become increasingly complex and interdependent. This has made it difficult to interpret and compare results between experimental and computational studies, as well as between solely computational studies. This paper seeks to explore issues of model translatability, robustness, and efficient study design, and to propose and motivate potential future directions for experimental, computational, and combined tissue-level investigations of the intervertebral disc.
机译:椎间盘研究试图发展对脊柱生物力学的更深入了解,椎间盘健康和背部疼痛之间的复杂关系,以及脊柱损伤和修复的机制。为此,许多研究人员专注于表征盘的组织级特性,其中可以更系统地研究组织子组件的角色。不幸的是,实验挑战通常限制了测量重要椎间盘组织和沉积级行为的能力,包括纤维 - 基质相互作用,瞬态营养素和电解质传输和损伤传播。已经引入了许多理论和数值建模框架来解释,请求,指导和优化实验研究努力。实验和计算工作的协同作用显着推出了该领域,这两个方面继续独立和共同发展。同时,实验和计算工作之间的关系变得越来越复杂和相互依存。这使得难以解释和比较实验和计算研究之间的结果,以及单独计算研究。本文旨在探讨模型可通用性,稳健性和高效的研究设计问题,并提出和激励椎间盘的实验,计算和组织水组织调查的潜在未来方向。

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