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高屈膝位时前交叉韧带和后交叉韧带的原位力:一项体外研究

In situ forces of the anterior and posterior cruciate ligaments in high knee flexion: an in vitro investigation.

作者信息

Li Guoan, Zayontz Shay, Most Ephrat, DeFrate Louis E, Suggs Jeremy F, Rubash Harry E

机构信息

Orthopaedic Biomechanics Laboratory, Massachusetts General Hospital/Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, MA 02114, USA.

出版信息

J Orthop Res. 2004 Mar;22(2):293-7. doi: 10.1016/S0736-0266(03)00179-7.

Abstract

The function of the anterior and posterior cruciate ligaments (ACL and PCL) in the first 120 degrees of flexion has been reported extensively, but little is known of their behavior at higher flexion angles. The aim of this investigation was to study the effects of muscle loads on the in situ forces in both ligaments at high knee flexion (>120 degrees). Eighteen fresh-frozen human knee specimens were tested on a robotic testing system from full extension to 150 degrees of flexion in response to quadriceps (400 N), hamstrings (200 N), and combined quadriceps and hamstrings (400 N/200 N) loads. The in situ forces in the ACL and PCL were measured using the principle of superposition. The force in the ACL peaked at 30 degrees of flexion (71.7 +/- 27.9 N in response to the quadriceps load, 52.3 +/- 24.4 N in response to the combined muscle load, 32.3 +/- 20.9 N in response to the hamstrings load). At 150 degrees, the ACL force was approximately 30 N in response to the quadriceps load and 20 N in response to the combined muscle load and isolated hamstring load. The PCL force peaked at 90 degrees (34.0 +/- 15.3 N in response to the quadriceps load, 88.6 +/- 23.7 N in response to the combined muscle load, 99.8 +/- 24.0 N in response to the hamstrings load) and decreased to around 35 N at 150 degrees in response to each of the loads. These results demonstrate that the ACL and PCL carried significantly less load at high flexion in response to the simulated muscle loads compared to the peak loads they carried in response to the same muscle loads at other flexion angles. The data could provide a reference point for the investigation of non-weight bearing flexion and extension knee exercises in high flexion. Furthermore, these data could be useful in designing total knee implants to achieve high flexion.

摘要

前交叉韧带和后交叉韧带(ACL和PCL)在屈膝120度以内的功能已有广泛报道,但对于它们在更高屈膝角度时的表现却知之甚少。本研究的目的是探讨肌肉负荷对高屈膝角度(>120度)时两条韧带原位力的影响。18个新鲜冷冻的人体膝关节标本在机器人测试系统上进行测试,从完全伸展到150度屈膝,以响应股四头肌(400 N)、腘绳肌(200 N)以及股四头肌和腘绳肌联合(400 N/200 N)负荷。使用叠加原理测量ACL和PCL的原位力。ACL的力在屈膝30度时达到峰值(股四头肌负荷时为71.7±27.9 N,肌肉联合负荷时为52.3±24.4 N,腘绳肌负荷时为32.3±20.9 N)。在150度时,股四头肌负荷下ACL的力约为30 N,肌肉联合负荷和单独腘绳肌负荷下为20 N。PCL的力在90度时达到峰值(股四头肌负荷时为34.0±15.3 N,肌肉联合负荷时为88.6±23.7 N,腘绳肌负荷时为99.8±24.0 N),在150度时,每种负荷下均降至约35 N。这些结果表明,与在其他屈膝角度承受相同肌肉负荷时的峰值负荷相比,在高屈膝角度下,ACL和PCL在模拟肌肉负荷下承受的负荷明显更小。这些数据可为高屈膝角度下非负重屈膝和伸膝练习的研究提供参考点。此外,这些数据对于设计全膝关节假体以实现高屈膝角度可能有用。

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