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前交叉韧带自体移植物的塑性和弹性生物力学特性。

Plastic and elastic biomechanical properties of anterior cruciate ligament autografts.

作者信息

Garcia Mason, Momenzadah Kaveh, Shariyate Mohammad Javad, Kheir Nadim, Khak Mohammad, Villarreal Juan B, Abbasian Mohammadreza, Flaherty Alexandra F, Hanna Philip, Ramappa Arun, Paschos Nikolaos K, Nazarian Ara

机构信息

Musculoskeletal Translational Innovation Initiative, Beth Israel Deaconess Medical Center, Harvard Medical School, 330 Brookline Avenue, RN123, Boston, MA, 02115, USA.

Mechanical Engineering Department, Boston University, Boston, MA, USA.

出版信息

BMC Musculoskelet Disord. 2024 Feb 19;25(1):157. doi: 10.1186/s12891-024-07262-y.

Abstract

BACKGROUND

Anterior cruciate ligament (ACL) rupture is a common orthopedic injury, occurring in roughly 68.6 per 100,000 persons annually, with the primary treatment option being ACL reconstruction. However, debate remains about the appropriate graft type for restoring the native biomechanical properties of the knee. Furthermore, plastic graft elongation may promote increased knee laxity and instability without rupture. This study aims to investigate the plastic properties of common ACL-R graft options.

METHODS

Patellar tendon (PT), hamstring tendon (HT), and quadriceps tendon (QT) grafts were harvested from 11 cadaveric knees (6 male and 5 female) with a mean age of 71(range 55-81). All grafts were mechanically tested under uniaxial tension until failure to determine each graft's elastic and plastic biomechanical properties.

RESULTS

Mechanically, the QT graft was the weakest, exhibiting the lowest failure force and the lowest failure stress (QT < HT, p = 0.032). The PT was the stiffest of the grafts, having a significantly higher stiffness (PT > QT, p = 0.0002) and Young's modulus (PT > QT, p = 0.001; PT > HT, p = 0.041). The HT graft had the highest plastic elongation at 4.01 ± 1.32 mm (HT > PT, p = 0.002). The post-yield behavior of the HT tendon shows increased energy storage capabilities with the highest plastic energy storage (HT > QT, p = 0.012) and the highest toughness (HT > QT, p = 0.032).

CONCLUSION

Our study agrees with prior studies indicating that the failure load of all grafts is above the requirements for everyday activities. However, grafts may be susceptible to yielding before failure during daily activities. This may result in the eventual loss of functionality for the neo-ACL, resulting in increased knee laxity and instability.

摘要

背景

前交叉韧带(ACL)断裂是一种常见的骨科损伤,每年每10万人中约有68.6人发生,主要治疗选择是ACL重建。然而,关于恢复膝关节天然生物力学特性的合适移植物类型仍存在争议。此外,移植物的塑性伸长可能会在不发生断裂的情况下导致膝关节松弛和不稳定增加。本研究旨在调查常见ACL-R移植物选择的塑性特性。

方法

从11具尸体膝关节(6例男性和5例女性)中获取髌腱(PT)、腘绳肌腱(HT)和股四头肌肌腱(QT)移植物,平均年龄71岁(范围55-81岁)。所有移植物均在单轴拉伸下进行力学测试,直至失效,以确定每个移植物的弹性和塑性生物力学特性。

结果

在力学方面,QT移植物最薄弱,表现出最低的破坏载荷和最低的破坏应力(QT<HT,p = 0.032)。PT是最硬的移植物,具有显著更高的刚度(PT>QT,p = 0.0002)和杨氏模量(PT>QT,p = 0.001;PT>HT,p = 0.041)。HT移植物具有最高的塑性伸长,为4.01±1.32毫米(HT>PT,p = 0.002)。HT肌腱的屈服后行为显示出能量储存能力增加,具有最高的塑性储能(HT>QT,p = 0.012)和最高的韧性(HT>QT,p = 0.032)。

结论

我们的研究与先前的研究一致,表明所有移植物的破坏载荷均高于日常活动的要求。然而,移植物在日常活动中可能在失效前易发生屈服。这可能导致新ACL最终失去功能,导致膝关节松弛和不稳定增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ddaa/10875842/802b22d668eb/12891_2024_7262_Fig1_HTML.jpg

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