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鸵鸟(Struthio camelus)双髌骨籽骨的力臂和运动学分析。

Analysis of the moment arms and kinematics of ostrich (Struthio camelus) double patellar sesamoids.

机构信息

Structure and Motion Laboratory, Royal Veterinary College, Hertfordshire, UK.

出版信息

J Exp Zool A Ecol Integr Physiol. 2017 Apr;327(4):163-171. doi: 10.1002/jez.2082. Epub 2017 Aug 23.

Abstract

The patella ("kneecap") is a biomechanically important feature of the tendinous insertion of the knee extensor muscles, able to alter the moment arm lengths between its input and output tendons, and so modify the mechanical advantage of the knee extensor muscle. However, patellar gearing function is little-explored outside of humans, and the patella is often simplified or ignored in biomechanical models. Here, we investigate patellar gearing and kinematics in the ostrich-frequently used as an animal analogue to human bipedal locomotion and unusual in its possession of two patellae at the knee joint. We use x-ray reconstruction of moving morphology (XROMM) techniques to capture the kinematics of the patellae in an adult ostrich cadaver, passively manipulated in flexion-extension. Moment arm ratios between the input and output tendons of each patella are calculated from kinematically determined centers of patellofemoral joint rotation. Both patellae are found to decrease the mechanical advantage of the extensor muscle-tendon complex, decreasing the tendon output force for a given muscle input force, but potentially increasing the relative speed of knee extension. Mechanically and kinematically, the proximal patella behaves similarly to the single patella of most other species, whereas the distal patella has properties of both a fixed retroarticular process and a moving sesamoid. It is still not clear why ostriches possess two patellae, but we suggest that the configuration in ostriches benefits their rapid locomotion and provides tendon protection.

摘要

髌骨(“膝盖骨”)是膝关节伸肌肌腱附着处的一个重要生物力学特征,能够改变其输入和输出肌腱之间的力臂长度,从而改变伸膝肌的机械优势。然而,髌骨的传动功能在人类以外的领域很少被探索,在生物力学模型中,髌骨经常被简化或忽略。在这里,我们研究了鸵鸟的髌骨传动功能和运动学,鸵鸟通常被用作人类双足运动的动物模型,并且其膝关节有两个髌骨,这是不寻常的。我们使用 X 射线重建运动形态学(XROMM)技术来捕获成年鸵鸟尸体在被动屈伸过程中髌骨的运动学。从确定的髌股关节旋转中心计算每个髌骨的输入和输出肌腱之间的力臂比。发现两个髌骨都降低了伸肌-肌腱复合体的机械优势,降低了给定肌肉输入力时的肌腱输出力,但可能增加了膝关节伸展的相对速度。在力学和运动学方面,近端髌骨的行为与大多数其他物种的单髌骨相似,而远端髌骨具有固定的关节后突和活动的籽骨的特性。目前还不清楚为什么鸵鸟有两个髌骨,但我们认为鸵鸟的这种结构有利于它们的快速运动,并提供了肌腱保护。

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