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量化卡格脂肪垫的运动。

Quantifying the motion of Kager's fat pad.

作者信息

Ghazzawi Ahmad, Theobald Peter, Pugh Neil, Byrne Carl, Nokes Len

机构信息

Institute of Medical Engineering and Medical Physics, School of Engineering, Cardiff University, The Parade, Cardiff, South Glamorgan CF24 3AA, United Kingdom.

出版信息

J Orthop Res. 2009 Nov;27(11):1457-60. doi: 10.1002/jor.20900.

Abstract

Kager's fat pad is located in Kager's triangle between the Achilles tendon, the superior cortex of the calcaneus, and flexor hallucis longus (FHL) muscle and tendon. Its biomechanical functions are not yet established, but recent studies suggest it performs important biomechanical roles as it is lined by a synovial membrane and its retrocalcaneal protruding wedge can be observed moving into the bursal space during ankle plantarflexion. Such features have prompted hypotheses that the protruding wedge assists in the lubrication of the Achilles tendon subtendinous area, distributes stress at the Achilles enthesis, and removes debris from within the retrocalcaneal bursa. This study examined the influence of FHL activity and Achilles tendon load on the protruding wedge sliding distance, using both dynamic ultrasound imaging and surface electromyogram. Intervolunteer results showed sliding distance was independent of FHL activity. This study has shown the protruding wedge to slide on average 60% further into the retrocalcaneal bursa when comparing the Achilles tendon loaded versus unloaded, consistently reaching the distal extremity. Sliding distance was dependent on a change in the Achilles tendon insertion angle. Our results support a number of hypothesized biomechanical functions of the protruding wedge including: lubrication of the subtendinous region; reduction of pressure change within the Achilles tendon enthesis organ; and removal of debris from within the retrocalcaneal bursa.

摘要

卡格脂肪垫位于跟腱、跟骨上皮质和拇长屈肌(FHL)的肌肉及肌腱之间的卡格三角内。其生物力学功能尚未明确,但最近的研究表明,由于它被滑膜覆盖,且在踝关节跖屈时可观察到其后跟骨突出楔形物移入滑囊间隙,所以它发挥着重要的生物力学作用。这些特征促使人们提出假说,即突出的楔形物有助于跟腱腱下区域的润滑、在跟腱附着点分散应力以及清除跟腱后滑囊内的碎屑。本研究使用动态超声成像和表面肌电图,研究了FHL活动和跟腱负荷对突出楔形物滑动距离的影响。志愿者间的结果显示,滑动距离与FHL活动无关。本研究表明,与未加载跟腱相比,加载跟腱时突出楔形物平均向跟腱后滑囊内滑动的距离要远60%,且始终能到达远端。滑动距离取决于跟腱插入角度的变化。我们的结果支持了关于突出楔形物的一些假设生物力学功能,包括:腱下区域的润滑;跟腱附着点器官内压力变化的减少;以及跟腱后滑囊内碎屑的清除。

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