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矢状面髋关节、膝关节和踝关节生物力学与前交叉韧带损伤风险:一项前瞻性研究。

Sagittal Plane Hip, Knee, and Ankle Biomechanics and the Risk of Anterior Cruciate Ligament Injury: A Prospective Study.

作者信息

Leppänen Mari, Pasanen Kati, Krosshaug Tron, Kannus Pekka, Vasankari Tommi, Kujala Urho M, Bahr Roald, Perttunen Jarmo, Parkkari Jari

机构信息

Tampere Research Center of Sports Medicine, UKK Institute, Tampere, Finland.

Oslo Sports Trauma Research Center, Norwegian School of Sport Sciences, Oslo, Norway.

出版信息

Orthop J Sports Med. 2017 Dec 22;5(12):2325967117745487. doi: 10.1177/2325967117745487. eCollection 2017 Dec.

Abstract

BACKGROUND

Stiff landings with less knee flexion and high vertical ground-reaction forces have been shown to be associated with an increased risk of anterior cruciate ligament (ACL) injury. The literature on the association between other sagittal plane measures and the risk of ACL injuries with a prospective study design is lacking.

PURPOSE

To investigate the relationship between selected sagittal plane hip, knee, and ankle biomechanics and the risk of ACL injury in young female team-sport athletes.

STUDY DESIGN

Case-control study; Level of evidence, 3.

METHODS

A total of 171 female basketball and floorball athletes (age range, 12-21 years) participated in a vertical drop jump test using 3-dimensional motion analysis. All new ACL injuries, as well as match and training exposure data, were recorded for 1 to 3 years. Biomechanical variables, including hip and ankle flexion at initial contact (IC), hip and ankle ranges of motion (ROMs), and peak external knee and hip flexion moments, were selected for analysis. Cox regression models were used to calculate hazard ratios (HRs) with 95% CIs. The combined sensitivity and specificity of significant test variables were assessed using a receiver operating characteristic (ROC) curve analysis.

RESULTS

A total of 15 noncontact ACL injuries were recorded during follow-up (0.2 injuries/1000 player-hours). Of the variables investigated, landing with less hip flexion ROM (HR for each 10° increase in hip ROM, 0.61 [95% CI, 0.38-0.99]; < .05) and a greater knee flexion moment (HR for each 10-N·m increase in knee moment, 1.21 [95% CI, 1.04-1.40]; = .01) was significantly associated with an increased risk of ACL injury. Hip flexion at IC, ankle flexion at IC, ankle flexion ROM, and peak external hip flexion moment were not significantly associated with the risk of ACL injury. ROC curve analysis for significant variables showed an area under the curve of 0.6, indicating a poor combined sensitivity and specificity of the test.

CONCLUSION

Landing with less hip flexion ROM and a greater peak external knee flexion moment was associated with an increased risk of ACL injury in young female team-sport players. Studies with larger populations are needed to confirm these findings and to determine the role of ankle flexion ROM as a risk factor for ACL injury. Increasing knee and hip flexion ROMs to produce soft landings might reduce knee loading and risk of ACL injury in young female athletes.

摘要

背景

研究表明,着陆时膝关节屈曲较少且垂直地面反作用力较大的硬着陆与前交叉韧带(ACL)损伤风险增加有关。目前缺乏采用前瞻性研究设计探讨其他矢状面指标与ACL损伤风险之间关系的文献。

目的

探讨年轻女性团队运动运动员矢状面选定的髋、膝和踝关节生物力学与ACL损伤风险之间的关系。

研究设计

病例对照研究;证据等级,3级。

方法

共有171名篮球和地板球女运动员(年龄范围12 - 21岁)参与了使用三维运动分析的垂直纵跳测试。记录所有新发生的ACL损伤以及1至3年的比赛和训练暴露数据。选择生物力学变量进行分析,包括初始接触(IC)时的髋和踝关节屈曲、髋和踝关节活动范围(ROM)以及膝关节和髋关节的最大外部屈曲力矩。使用Cox回归模型计算风险比(HRs)及95%可信区间(CIs)。采用受试者工作特征(ROC)曲线分析评估显著测试变量的综合敏感性和特异性。

结果

随访期间共记录到15例非接触性ACL损伤(0.2例/1000运动员小时)。在所研究的变量中,髋部活动范围减小(髋部ROM每增加10°,HR为0.61 [95% CI,0.38 - 0.99];P <.05)和膝关节屈曲力矩增大(膝关节力矩每增加10 N·m,HR为1.21 [95% CI,1.04 - 1.40];P =.01)与ACL损伤风险增加显著相关。IC时的髋部屈曲、IC时的踝部屈曲、踝部活动范围和最大外部髋部屈曲力矩与ACL损伤风险无显著关联。对显著变量的ROC曲线分析显示曲线下面积为0.6,表明该测试的综合敏感性和特异性较差。

结论

髋部活动范围减小和最大外部膝关节屈曲力矩增大与年轻女性团队运动运动员ACL损伤风险增加有关。需要开展更大样本量的研究来证实这些发现,并确定踝关节活动范围作为ACL损伤风险因素的作用。增加膝关节和髋关节的活动范围以实现软着陆可能会降低年轻女性运动员的膝关节负荷和ACL损伤风险。

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