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行人受伤:高加载速率下人膝关节韧带的粘弹性特性

Pedestrian injuries: viscoelastic properties of human knee ligaments at high loading rates.

作者信息

van Dommelen J A W, Jolandan M Minary, Ivarsson B J, Millington S A, Raut M, Kerrigan J R, Crandall J R, Diduch D R

机构信息

Center for Applied Biomechanics, University of Virginia, Charlottesville, Virginia, USA.

出版信息

Traffic Inj Prev. 2005 Sep;6(3):278-87. doi: 10.1080/15389580590969436.

Abstract

OBJECTIVE

Accidents involving pedestrians are very common, and often lead to severe injuries to the lower extremities. In a large portion of pedestrian-automobile collisions, knee ligament injuries are sustained. In this study, the viscoelastic properties of the four major human knee ligaments were investigated at loading rates representative for pedestrian-automobile collisions.

METHODS

Bone-ligament-bone specimens were tested in knee distraction loading. The collateral ligaments and the separate functional bundles of the cruciate ligaments were tested in the anatomical position corresponding to a fully extended knee. A series of step-and-hold tests and ramp tests at different rates were conducted to characterize the time-dependent behavior of the knee ligaments for deformation rates associated with the pedestrian impact loading environment. The quasi linear viscoelastic (QLV) theory was used to describe the structural response of the knee ligaments and averaged parameters for this model were determined.

RESULTS

The QLV theory was found to be applicable for the time range that is relevant for pedestrian-automobile collisions. The structural behavior of the knee ligaments was found to be particularly rate-sensitive for high elongation rates, as occur during these collisions. The ligament stiffness was found to increase with age for both the collateral ligaments and with weight for the medial collateral ligament.

CONCLUSIONS

For the loading conditions that are relevant for pedestrian-automobile collisions, the use of the QLV model for the description of the mechanical behavior of knee ligaments is appropriate. The rate-sensitivity is particularly important for these extreme loading conditions. The relaxation behavior was found to be consistent between different ligament types and samples. Variations due to donor anthropometry were found predominantly for the instantaneous elastic behavior.

摘要

目的

涉及行人的事故非常常见,且常常导致下肢严重受伤。在很大一部分行人与汽车碰撞事故中,会发生膝关节韧带损伤。在本研究中,研究了人类四条主要膝关节韧带在代表行人与汽车碰撞的加载速率下的粘弹性特性。

方法

对骨-韧带-骨标本进行膝关节牵张加载测试。在与完全伸展膝关节相对应的解剖位置测试侧副韧带和交叉韧带的独立功能束。进行了一系列不同速率的阶跃保持测试和斜坡测试,以表征膝关节韧带在与行人碰撞加载环境相关的变形速率下的时间依赖性行为。采用准线性粘弹性(QLV)理论描述膝关节韧带的结构响应,并确定该模型的平均参数。

结果

发现QLV理论适用于与行人与汽车碰撞相关的时间范围。发现膝关节韧带的结构行为在高伸长率(如在这些碰撞中出现的情况)下对速率特别敏感。发现侧副韧带的韧带刚度随年龄增加,内侧副韧带的韧带刚度随体重增加。

结论

对于与行人与汽车碰撞相关的加载条件,使用QLV模型描述膝关节韧带的力学行为是合适的。速率敏感性对于这些极端加载条件尤为重要。发现不同韧带类型和样本之间的松弛行为是一致的。主要在瞬时弹性行为方面发现了由于供体人体测量学导致的差异。

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