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髂胫束张力影响髌股关节和胫股关节的运动学。

Iliotibial band tension affects patellofemoral and tibiofemoral kinematics.

作者信息

Merican Azhar M, Amis Andrew A

机构信息

Musculoskeletal Surgery Department, Imperial College London, Charing Cross Hospital, London, United Kingdom; University of Malaya Medical Centre, Malaysia.

Musculoskeletal Surgery Department, Imperial College London, Charing Cross Hospital, London, United Kingdom; Biomechanics Section, Mechanical Engineering Department, Imperial College London, South Kensington Campus, London SW7 2AZ, United Kingdom.

出版信息

J Biomech. 2009 Jul 22;42(10):1539-1546. doi: 10.1016/j.jbiomech.2009.03.041. Epub 2009 May 28.

Abstract

The iliotibial band (ITB) has an important role in knee mechanics and tightness can cause patellofemoral maltracking. This study investigated the effects of increasing ITB tension on knee kinematics. Nine fresh-frozen cadaveric knees had the components of the quadriceps loaded with 175 N. A Polaris optical tracking system was used to acquire joint kinematics during extension from 100 degrees to 0 degrees flexion. This was repeated after the following ITB loads: 30, 60 and 90 N. There was no change with 30 N load for patellar translation. On average, at 60 and 90 N, the patella translated laterally by 0.8 and 1.4mm in the mid flexion range compared to the ITB unloaded condition. The patella became more laterally tilted with increasing ITB loads by 0.7 degrees, 1.2 degrees and 1.5 degrees for 30, 60 and 90 N, respectively. There were comparable increases in patellar lateral rotation (distal patella moves laterally) towards the end of the flexion cycle. Increased external rotation of the tibia occurred from early flexion onwards and was maximal between 60 degrees and 75 degrees flexion. The increase was 5.2 degrees, 9.5 degrees and 13 degrees in this range for 30, 60 and 90 N, respectively. Increased tibial abduction with ITB loads was not observed. The combination of increased patellar lateral translation and tilt suggests increased lateral cartilage pressure. Additionally, the increased tibial external rotation would increase the Q angle. The clinical consequences and their relationship to lateral retinacular releases may be examined, now that the effects of a tight ITB are known.

摘要

髂胫束(ITB)在膝关节力学中起着重要作用,其紧张度增加会导致髌股关节轨迹异常。本研究调查了增加髂胫束张力对膝关节运动学的影响。对九个新鲜冷冻的尸体膝关节施加175 N的股四头肌负荷。使用北极星光学跟踪系统在膝关节从100度屈曲伸展至0度的过程中获取关节运动学数据。在施加以下髂胫束负荷后重复该操作:30 N、60 N和90 N。30 N负荷时髌股平移无变化。平均而言,在60 N和90 N负荷下,与髂胫束未加载状态相比,在屈膝中期髌骨分别向外平移0.8 mm和1.4 mm。随着髂胫束负荷增加,髌骨向外倾斜增加,30 N、60 N和90 N负荷时分别增加0.7度、1.2度和1.5度。在屈膝周期结束时,髌骨向外旋转(髌骨远端向外移动)也有类似增加。从屈膝早期开始胫骨出现外旋增加,在屈膝60度至75度之间达到最大。在该范围内,30 N、60 N和90 N负荷时增加量分别为5.2度、9.5度和13度。未观察到随着髂胫束负荷增加胫骨外展增加。髌骨向外平移和倾斜增加表明外侧软骨压力增加。此外,胫骨外旋增加会增大Q角。鉴于已知髂胫束紧张的影响,现在可以研究其临床后果及其与外侧支持带松解的关系。

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