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一种向兔膝关节的关节软骨施加可变冲击应力的方法。

A method for delivering variable impact stresses to the articular cartilage of rabbit knees.

作者信息

Borrelli Joseph, Burns Meghan E, Ricci William M, Silva Matthew J

机构信息

Department of Orthopaedic Surgery, School of Medicine, Washington University, St. Louis, Missouri 63110, USA.

出版信息

J Orthop Trauma. 2002 Mar;16(3):182-8. doi: 10.1097/00005131-200203000-00008.

Abstract

OBJECTIVE

To develop a method by which a single impact force of controlled magnitude and rate could be applied uniformly to an area on the posterior aspect of the medial femoral condyle of adult rabbits.

DESIGN

An in-vivo animal model using a pendulum device, designed and manufactured to supply the kinetic energy necessary to apply different impact loads to the posterior aspect of the medial femoral condyle of a rabbit.

SETTING

Biomechanical laboratory, University Medical Center.

SUBJECTS

A total of thirty-six femoral condyles from 3-kilogram New Zealand White (NZW) rabbits were used during this evaluation.

INTERVENTION

An aluminum impactor was made based on the sagittal and coronal radii of curvature of six matched pairs (n = 12) of femurs from three-kilogram NZW rabbits. This impactor was coupled with the pendulum and used to apply different impact loads to both of the medial femoral condyle of the knees of NZW rabbits (n = 24).

MAIN OUTCOME MEASUREMENTS

Peak impact force, time to peak impact force, and average contact area between impactor and medial femoral condyle, were measured for each group of animals tested.

RESULTS

The pendulum delivered a consistent impact force to the rabbit condyle of 120.0 N (+/-18.1; coefficient of variance, 15 percent) with 400 grams attached to the pendulum arm, at an average time to peak force of 0.021 seconds (+/-0.001, co. var. 4.8 percent). The peak impact force was significantly different for each of the three impact mass groups of animals (p < 0.001). By contrast, time to peak force for each mass group averaged approximately 0.020 seconds and the average contact area was 6.26 mm2 (+/-0.51). Quantitative assessment of the exposed medium pressure-sensitive film confirmed uniform impact force intensity within each specimen.

CONCLUSIONS

An in-vivo animal model was developed to deliver a controlled and rapid impact force to a specific area of the weight-bearing surface of the adult rabbit knee. These loads were applied at a rate comparable to the clinical setting of falling onto an outstretched hand, thus simulating a common clinical scenario by which cartilage is often injured. This model can be used in future experiments to investigate mechanism by which posttraumatic arthritis develops after articular injuries.

摘要

目的

开发一种方法,通过该方法可以将大小和速率可控的单一冲击力均匀地施加于成年兔股骨内侧髁后侧的一个区域。

设计

使用摆锤装置的体内动物模型,该装置经设计和制造,可提供将不同冲击负荷施加于兔股骨内侧髁后侧所需的动能。

设置

大学医学中心生物力学实验室。

对象

在本次评估中,共使用了来自3千克新西兰白兔(NZW)的36个股骨髁。

干预

根据3千克NZW兔的六对匹配股骨(n = 12)的矢状面和冠状面曲率半径制作了一个铝制冲击器。该冲击器与摆锤相连,用于对NZW兔膝关节的两个股骨内侧髁施加不同的冲击负荷(n = 24)。

主要观察指标

对每组受试动物测量峰值冲击力、达到峰值冲击力的时间以及冲击器与股骨内侧髁之间的平均接触面积。

结果

当在摆锤臂上附加400克重物时,摆锤对兔髁施加的冲击力一致,为120.0牛(±18.1;变异系数为15%),达到峰值力的平均时间为0.021秒(±0.001,变异系数为4.8%)。三个冲击质量组的动物的峰值冲击力有显著差异(p < 0.001)。相比之下,每个质量组达到峰值力的时间平均约为0.020秒,平均接触面积为6.26平方毫米(±0.51)。对暴露的中压敏感膜的定量评估证实了每个标本内冲击力强度均匀。

结论

开发了一种体内动物模型,以向成年兔膝关节负重表面的特定区域施加可控且快速的冲击力。这些负荷的施加速率与临床中摔倒时手掌伸展着地的情况相当,从而模拟了软骨常受损伤的常见临床场景。该模型可用于未来的实验,以研究关节损伤后创伤性关节炎发生的机制。

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