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膝关节在侧向假步动作中的运动学和动力学。

Knee joint kinematics and kinetics during a lateral false-step maneuver.

机构信息

University of California, Los Angeles, CA, USA.

出版信息

J Athl Train. 2009 Sep-Oct;44(5):503-10. doi: 10.4085/1062-6050-44.5.503.

Abstract

CONTEXT

Cutting maneuvers have been implicated as a mechanism of noncontact anterior cruciate ligament (ACL) injuries in collegiate female basketball players.

OBJECTIVE

To investigate knee kinematics and kinetics during running when the width of a single step, relative to the path of travel, was manipulated, a lateral false-step maneuver.

DESIGN

Crossover design.

SETTING

University biomechanics laboratory.

PATIENTS OR OTHER PARTICIPANTS

Thirteen female collegiate basketball athletes (age = 19.7 +/- 1.1 years, height = 172.3 +/- 8.3 cm, mass = 71.8 +/- 8.7 kg).

INTERVENTION(S): Three conditions: normal straight-ahead running, lateral false step of width 20% of body height, and lateral false step of width 35% of body height.

MAIN OUTCOME MEASURE(S): Peak angles and internal moments for knee flexion, extension, abduction, adduction, internal rotation, and external rotation.

RESULTS

Differences were noted among conditions in peak knee angles (flexion [P < .01], extension [P = .02], abduction [P < .01], and internal rotation [P < .01]) and peak internal knee moments (abduction [P < .01], adduction [P < .01], and internal rotation [P = .03]). The lateral false step of width 35% of body height was associated with larger peak flexion, abduction, and internal rotation angles and larger peak abduction, adduction, and internal rotation moments than normal running. Peak flexion and internal rotation angles were also larger for the lateral false step of width 20% of body height than for normal running, whereas peak extension angle was smaller. Peak internal rotation angle increased progressively with increasing step width.

CONCLUSIONS

Performing a lateral false-step maneuver resulted in changes in knee kinematics and kinetics compared with normal running. The differences observed for lateral false steps were consistent with proposed mechanisms of ACL loading, suggesting that lateral false steps represent a hitherto neglected mechanism of noncontact ACL injury.

摘要

背景

在大学生女子篮球运动员中,切割动作被认为是前交叉韧带(ACL)非接触性损伤的机制之一。

目的

研究在跑步时改变单步宽度(相对于行进路径)的情况下,即侧向假步操作,膝关节的运动学和动力学。

设计

交叉设计。

地点

大学生物力学实验室。

患者或其他参与者

13 名女性大学生篮球运动员(年龄=19.7±1.1 岁,身高=172.3±8.3cm,体重=71.8±8.7kg)。

干预措施

三种情况:正常直线跑步、宽度为身体高度 20%的侧向假步和宽度为身体高度 35%的侧向假步。

主要观察指标

膝关节屈伸、外展、内收、内旋和外旋的最大角度和内力矩。

结果

在最大膝关节角度(屈曲[P<0.01]、伸展[P=0.02]、外展[P<0.01]和内旋[P<0.01])和最大膝关节内力矩(外展[P<0.01]、内收[P<0.01]和内旋[P=0.03])方面,各条件之间存在差异。与正常跑步相比,身体高度 35%的侧向假步与更大的最大屈曲、外展和内旋角度以及更大的外展、内收和内旋峰值内力矩相关。身体高度 20%的侧向假步的最大屈曲和内旋角度也大于正常跑步,而最大伸展角度则较小。随着步宽的增加,最大内旋角度逐渐增加。

结论

与正常跑步相比,侧向假步操作导致膝关节运动学和动力学发生变化。侧向假步观察到的差异与 ACL 加载的提议机制一致,表明侧向假步代表了迄今被忽视的非接触性 ACL 损伤机制。

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