大鼠髌骨肌腱生物力学行为的实验研究

Fakhir S, S. J. Abass, Noor Ali Sadek
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引用次数: 0

摘要

肌腱是人体的重要结构,可以承受拉伸载荷。这种组织的主要功能是在日常活动中稳定关节。此外,肌腱具有粘弹性,这可以决定它们对载荷的反应,并限制损伤的可能性。其中一个主要的观点,这篇论文的工作是研究生物力学行为的肌腱响应拉伸载荷,以描述他们的生物行为。同时,总结了可以说明肌腱行为的数学表达式。所有实验均由生理学实验室/医学院/ Al- Nahrain大学对10只体重[108- 360]gm的褐家鼠进行体外拉伸试验。因此,从大鼠膝盖上解剖了20个标本,因为髌骨肌腱总是水分充足,以防止组织干燥。研究结果显示,行为的肌腱响应拉伸载荷与两种技术;恒载技术和连续荷载技术。分析了髌腱的应力应变关系,并将改进的叠加理论应用于不同应变水平下的髌腱。得到的结果表明,修正的叠加理论得到了与实验结果部分相似的较好的结果。此外,由于肌腱中的弹性蛋白含量高于韧带,肌腱的初始模式比韧带的初始模式更长。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Study of a Biomechanical Behaviour of Rat Patellar Tendon
Tendon is important structure of the human body, since it can sustain tensile loading. The primary function of this tissue is to stabilize the joints they attached to it during daily activities. As well as, tendon has viscoelastic properties that can determine their response to loading and restrict the potential of injuries. One of the major points that this paper works with is the study of the biomechanical behaviour of tendon in response to tensile loading to describe their biological behaviour. Also, conclude the mathematical expression that may illustrate the tendon behaviour. All of the experiments were made in Physiology laboratories / Medical College/ Al- Nahrain University on ten rats "Rattus Norvegicus" of [108- 360] gm weight for in- vitro tensile test. So that 20 specimens were dissected from the rat knees, for the patellar tendons which always hydrated to prevent the tissue dryness. The results of the study, shows the behaviour of the tendon in response to tensile loading with two techniques; the dead loads technique and the continuous loads technique. The stress- strain relationships were also evaluated, as well as, the modified superposition theory was applied at different strain levels to the patellar tendon. The obtained results show that the modified superposition theory gives good results that are partly similar to the experimental results. Also, the tendon shows longer initial pattern than that for the ligament due to the presence of higher elastin content in the tendon than in the ligament.
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