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膝关节反复模拟枢轴着陆时前交叉韧带的疲劳失效。

Anterior cruciate ligament fatigue failures in knees subjected to repeated simulated pivot landings.

机构信息

Sensory Motor Performance Program, Rehabilitation Institute of Chicago, 345 East Superior Street, Room 1401, Chicago, IL 60611, USA.

出版信息

Am J Sports Med. 2013 May;41(5):1058-66. doi: 10.1177/0363546513477836. Epub 2013 Mar 4.

Abstract

BACKGROUND

It is not known whether the human anterior cruciate ligament (ACL) is susceptible to fatigue failure as a result of repetitive loading or whether certain knee morphologic characteristics increase that risk.

HYPOTHESES

The number of knee loading cycles required to fail an ACL by fatigue failure is unaffected by the magnitude of the external load delivered to the knee joint. Furthermore, sex, ACL cross-sectional area, and lateral tibial slope will not affect the number of loading cycles to ACL failure.

STUDY DESIGN

Controlled laboratory study.

METHODS

Knee pairs from 10 cadaveric donors (5 female) of similar age, height, and weight were imaged with 3-T magnetic resonance imaging to measure lateral tibial slope and ACL cross-sectional area. One knee from each pair was then subjected to repeated application of a load of 3 times body weight (3BW), while the other knee was subjected to a 4BW load, both involving impulsive compression force, knee flexion moment, and internal tibial torque combined with realistic trans-knee muscle forces. The resulting 3-dimensional tibiofemoral kinematics and kinetics were recorded, along with ACL relative strain and quadriceps, hamstring, and gastrocnemius muscle forces. The loading cycle was repeated until the ACL ruptured, a 3-mm increase in cumulative anterior tibial translation occurred, or a minimum of 50 trials was reached.

RESULTS

Eight of 10 knees failed under the 4BW load (mean ± SD cycles to failure, 21 ± 18), while 5 of 10 knees failed under the 3BW load (mean ± SD cycles to failure, 52 ± 10). Four knees exhibited a 3-mm increase in anterior tibial translation, 7 knees developed partial or complete visible ACL tears, and 2 knees developed complete ACL tibial avulsions. A Cox regression showed that the number of cycles to ACL failure was influenced by the simulated landing force (P = .012) and ACL cross-sectional area (P = .022). Donor sex and lateral tibial slope did not influence the number of cycles to ACL failure.

CONCLUSION

The human ACL is susceptible to fatigue failure when pivot landings of 3*BW or more load the knee repeatedly within a short time span. An ACL with a smaller cross-sectional area is at greater risk for this type of failure.

CLINICAL RELEVANCE

The results show that the human knee can only withstand a certain number of 3*BW or greater jump loading cycles within a short time period before the ACL will fail. Therefore, limiting the increase in the number and severity of pivot landing maneuvers performed over a week of training would make sense from an injury prevention viewpoint.

摘要

背景

目前尚不清楚人体前交叉韧带(ACL)是否容易因重复加载而发生疲劳失效,或者某些膝关节形态特征是否会增加这种风险。

假设

通过疲劳失效使 ACL 失效所需的膝关节加载循环次数不受施加到膝关节的外部载荷大小的影响。此外,性别、ACL 横截面积和胫骨外侧倾斜度不会影响 ACL 失效的加载循环次数。

研究设计

对照实验室研究。

方法

对来自 10 具年龄、身高和体重相似的尸体供体(5 名女性)的膝关节进行 3-T 磁共振成像(MRI)成像,以测量胫骨外侧倾斜度和 ACL 横截面积。每对膝关节中的一条膝关节接受 3 倍体重(3BW)的重复施加的负荷,而另一条膝关节则接受 4BW 的负荷,两者均涉及脉冲压缩力、膝关节弯曲力矩和胫骨内扭矩以及现实的跨膝关节肌肉力。记录三维胫股关节运动学和动力学,以及 ACL 相对应变和股四头肌、腘绳肌和腓肠肌的力量。重复加载循环,直到 ACL 断裂、累积前胫骨平移增加 3 毫米或达到至少 50 次试验为止。

结果

10 条膝关节中有 8 条在 4BW 负荷下失效(失效的平均±SD 循环数,21±18),而 10 条膝关节中有 5 条在 3BW 负荷下失效(失效的平均±SD 循环数,52±10)。4 条膝关节出现前胫骨平移增加 3 毫米,7 条膝关节出现部分或完全可见的 ACL 撕裂,2 条膝关节出现完全 ACL 胫骨撕脱。Cox 回归显示,ACL 失效的循环次数受模拟着陆力(P=.012)和 ACL 横截面积(P=.022)的影响。供体性别和胫骨外侧倾斜度并不影响 ACL 失效的循环次数。

结论

当膝关节在短时间内反复承受 3*BW 或更大的枢轴着陆负荷时,人体 ACL 容易发生疲劳失效。横截面积较小的 ACL 更容易发生这种类型的失效。

临床意义

结果表明,在 ACL 失效之前,人类膝关节在短时间内只能承受一定数量的 3*BW 或更大的跳跃加载循环。因此,从损伤预防的角度来看,限制一周训练中枢轴着陆动作的次数和严重程度的增加是有意义的。

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What strains the anterior cruciate ligament during a pivot landing?在枢轴落地时,哪些力会使前交叉韧带紧张?
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