Suppr超能文献

犬颅交叉韧带复合体在低应变率下的粘弹性特征

Viscoelastic characteristics of the canine cranial cruciate ligament complex at slow strain rates.

作者信息

Readioff Rosti, Geraghty Brendan, Elsheikh Ahmed, Comerford Eithne

机构信息

School of Engineering, University of Liverpool, Liverpool, UK.

Institute of Life Course and Medical Sciences, University of Liverpool, Liverpool, UK.

出版信息

PeerJ. 2020 Dec 22;8:e10635. doi: 10.7717/peerj.10635. eCollection 2020.

Abstract

Ligaments including the cruciate ligaments support and transfer loads between bones applied to the knee joint organ. The functions of these ligaments can get compromised due to changes to their viscoelastic material properties. Currently there are discrepancies in the literature on the viscoelastic characteristics of knee ligaments which are thought to be due to tissue variability and different testing protocols. The aim of this study was to characterise the viscoelastic properties of healthy cranial cruciate ligaments (CCLs), from the canine knee (stifle) joint, with a focus on the toe region of the stress-strain properties where any alterations in the extracellular matrix which would affect viscoelastic properties would be seen. Six paired CCLs, from skeletally mature and disease-free Staffordshire bull terrier stifle joints were retrieved as a femur-CCL-tibia complex and mechanically tested under uniaxial cyclic loading up to 10 N at three strain rates, namely 0.1%, 1% and 10%/min, to assess the viscoelastic property of strain rate dependency. The effect of strain history was also investigated by subjecting contralateral CCLs to an ascending (0.1%, 1% and 10%/min) or descending (10%, 1% and 0.1%/min) strain rate protocol. The differences between strain rates were not statistically significant. However, hysteresis and recovery of ligament lengths showed some dependency on strain rate. Only hysteresis was affected by the test protocol and lower strain rates resulted in higher hysteresis and lower recovery. These findings could be explained by the slow process of uncrimping of collagen fibres and the contribution of proteoglycans in the ligament extracellular matrix to intra-fibrillar gliding, which results in more tissue elongations and higher energy dissipation. This study further expands our understanding of canine CCL behaviour, providing data for material models of femur-CCL-tibia complexes, and demonstrating the challenges for engineering complex biomaterials such as knee joint ligaments.

摘要

包括交叉韧带在内的韧带在施加于膝关节器官的骨骼之间起支撑和传递负荷的作用。这些韧带的功能可能会因其粘弹性材料特性的变化而受损。目前,关于膝关节韧带粘弹性特征的文献存在差异,这被认为是由于组织变异性和不同的测试方案所致。本研究的目的是表征犬膝关节( stifle 关节)健康颅交叉韧带( CCL )的粘弹性特性,重点关注应力 - 应变特性的趾部区域,在该区域可以观察到细胞外基质中任何影响粘弹性特性的变化。从骨骼成熟且无疾病的斯塔福郡斗牛梗 stifle 关节中获取六对 CCL ,作为股骨 - CCL - 胫骨复合体,并在单轴循环加载下以 0.1% 、 1% 和 10%/min 三种应变率进行机械测试,直至 10 N ,以评估应变率依赖性的粘弹性特性。还通过使对侧 CCL 经历上升( 0.1% 、 1% 和 10%/min )或下降( 10% 、 1% 和 0.1%/min )应变率方案来研究应变历史的影响。应变率之间的差异无统计学意义。然而,韧带长度的滞后和恢复表现出对应变率的一定依赖性。只有滞后受测试方案的影响,较低的应变率导致较高的滞后和较低的恢复。这些发现可以通过胶原纤维解卷曲的缓慢过程以及韧带细胞外基质中蛋白聚糖对纤维内滑动的贡献来解释,这导致更多的组织伸长和更高的能量耗散。本研究进一步扩展了我们对犬 CCL 行为的理解,为股骨 - CCL - 胫骨复合体的材料模型提供了数据,并展示了工程复杂生物材料如膝关节韧带所面临的挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/75fb/7761198/14ad45f7aeb4/peerj-08-10635-g001.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验