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在模拟滑雪着陆过程中,轴向撞击力与膝关节力和运动学的相关性。

Correlation of axial impact forces with knee joint forces and kinematics during simulated ski-landing.

机构信息

Division of Bioengineering, National University of Singapore, Singapore.

出版信息

J Sports Sci. 2011 Aug;29(11):1143-51. doi: 10.1080/02640414.2011.578146. Epub 2011 Jul 21.

DOI:10.1080/02640414.2011.578146
PMID:21774750
Abstract

Anterior cruciate ligament (ACL) rupture, during ski-landing, is caused by excessive knee joint forces and kinematics, like anterior tibial translation, internal tibial rotation, and valgus rotation. It is not well understood how these forces/kinematics are directly related to ski-landing impact. In the present study, we applied simulated ski-landing impact to knee specimens, and examined joint force/kinematic responses and their correlations with impact force. Ten human cadaveric knees were subjected to axial impact loading at 70° of flexion to simulate ski-landing impact. Impact was repeated with incremental magnitude until ACL failure. Axial impact forces, anterior-posterior and medial-lateral tibial forces were measured using a tri-axial load cell. Anterior-posterior tibial translation, internal-external tibial rotation, and valgus-varus rotation were determined using a motion-capture system. We found positive correlations of axial impact force with anterior tibial force, medial tibial force, anterior tibial translation, internal tibial rotation, and valgus joint rotation. Axial impact forces were more strongly correlated with anterior tibial forces (R(2) = 0.937 ± 0.050), anterior tibial translation (R(2) = 0.916 ± 0.059), and internal tibial rotation (R(2) = 0.831 ± 0.141) than medial tibial force (R(2) = 0.677 ± 0.193) and valgus joint rotation (R(2) = 0.630+0.271). During ski-landing, these joint forces/kinematics can synergistically act to increase ACL injury risk, whereby the failure mechanism would be dominated by anterior tibial forces, anterior tibial translation, and internal tibial rotation.

摘要

前交叉韧带(ACL)在滑雪落地时发生断裂,是由于膝关节力和运动学的过度作用引起的,如胫骨前移、胫骨内旋和外翻旋转。目前还不太清楚这些力/运动学如何与滑雪落地冲击直接相关。在本研究中,我们对膝关节标本施加模拟滑雪落地冲击,并检查关节力/运动学响应及其与冲击力的相关性。10 个人体尸体膝关节在 70°的屈曲位接受轴向冲击加载,以模拟滑雪落地冲击。用递增的幅度重复冲击,直到 ACL 失效。使用三轴力传感器测量轴向冲击力、前后和内外侧胫骨力。使用运动捕捉系统确定前后胫骨平移、内外侧胫骨旋转和内外翻旋转。我们发现轴向冲击力与前胫骨力、内胫骨力、前胫骨平移、内胫骨旋转和外翻关节旋转呈正相关。轴向冲击力与前胫骨力(R(2) = 0.937 ± 0.050)、前胫骨平移(R(2) = 0.916 ± 0.059)和内胫骨旋转(R(2) = 0.831 ± 0.141)的相关性强于内胫骨力(R(2) = 0.677 ± 0.193)和外翻关节旋转(R(2) = 0.630+0.271)。在滑雪落地时,这些关节力/运动学可以协同作用,增加 ACL 受伤的风险,其失效机制将主要由前胫骨力、前胫骨平移和内胫骨旋转决定。

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