人髌骨肌腱的中间部分在机械上是均匀的。

IF 3.3 2区 医学 Q2 ENGINEERING, BIOMEDICAL Journal of the Mechanical Behavior of Biomedical Materials Pub Date : 2024-12-18 DOI:10.1016/j.jmbbm.2024.106875
Adam Kositsky , Lauri Stenroth , Ervin Nippolainen , Jari Torniainen , Janne T.A. Mäkelä , Petri Paakkari , Tommi Paakkonen , Heikki Kröger , Juha Töyräs , Isaac O. Afara , Rami K. Korhonen
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引用次数: 0

摘要

人髌骨肌腱在其内外侧和前后区包含明显的束束。研究表明,在体内活动中存在区域特异性行为,但尚不清楚这种区域差异是否源于肌腱本身的局部成分和力学特性的差异。此外,人类髌骨肌腱任何区域的粘弹性特性在以前都没有得到很好的描述。本文对8具尸体膝盖的肌腱进行了人体髌骨肌腱6个区域(3个中外侧× 2个正后方)的组成和材料特性的全面研究。对哑铃形试样进行了全面的粘弹性(应力松弛和正弦)和弹性(破坏)力学试验。机械测试后,测定样品的尿酸(蛋白多糖)、羟脯氨酸(胶原蛋白)和含水量。没有发现任何测量的生物力学或生化参数的系统区域差异。然而,应力和应变之间的相位差随着正弦频率的增加而减小(从0.1 Hz到5 Hz),这表明人体髌骨肌腱在更高的应变率下表现得更有弹性。这些结果表明,人类髌骨肌腱在其中间是一种均匀的材料,其他因素,如几何约束、内固定特性和插入点,可能是体内任何区域特异性行为的原因。此外,随着应变率的增加,人类髌骨肌腱的弹性行为可能支持在快速动作(如短跑)中改善关节控制和增强运动经济性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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The human patellar tendon is mechanically homogenous at its mid-substance
The human patellar tendon contains distinct fascicle bundles across its mediolateral and anteroposterior regions. Studies have suggested region-specific behaviour during in vivo actions, but it is unclear whether such regional differences result from localized variation in composition and mechanical properties within the tendon itself. Furthermore, the viscoelastic properties of any region of the human patellar tendon have not been well described previously. Here, a comprehensive investigation of the composition and material properties of six regions (three mediolateral × two anteroposterior) of the human patellar tendon was performed on tendons harvested from eight cadaver knees. Thorough viscoelastic (stress relaxation and sinusoidal) and elastic (failure) mechanical tests were conducted on dumbbell-shaped samples. Uronic acid (proteoglycan), hydroxyproline (collagen), and water contents were measured from the samples after mechanical testing. No systematic between-region differences were found for any measured biomechanical or biochemical parameter. However, the phase difference between stress and strain decreased as a function of increasing sinusoidal frequency (from 0.1 Hz to 5 Hz), suggesting the human patellar tendon behaves more elastically at higher strain rates. These results indicate the human patellar tendon is a homogenous material at its mid-substance and that other factors, such as geometrical constraints, enthesis properties, and insertion points, may be responsible for any region-specific behaviour in vivo. Additionally, the more elastic behaviour of the human patellar tendon as strain rate increases likely supports improved joint control and enhanced movement economy during fast actions such as sprinting.
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来源期刊
Journal of the Mechanical Behavior of Biomedical Materials
Journal of the Mechanical Behavior of Biomedical Materials 工程技术-材料科学:生物材料
CiteScore
7.20
自引率
7.70%
发文量
505
审稿时长
46 days
期刊介绍: The Journal of the Mechanical Behavior of Biomedical Materials is concerned with the mechanical deformation, damage and failure under applied forces, of biological material (at the tissue, cellular and molecular levels) and of biomaterials, i.e. those materials which are designed to mimic or replace biological materials. The primary focus of the journal is the synthesis of materials science, biology, and medical and dental science. Reports of fundamental scientific investigations are welcome, as are articles concerned with the practical application of materials in medical devices. Both experimental and theoretical work is of interest; theoretical papers will normally include comparison of predictions with experimental data, though we recognize that this may not always be appropriate. The journal also publishes technical notes concerned with emerging experimental or theoretical techniques, letters to the editor and, by invitation, review articles and papers describing existing techniques for the benefit of an interdisciplinary readership.
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