Miller Adrian C, Cake Martin A, Warburton Natalie M
School of Veterinary and Life Sciences, Murdoch University, Murdoch, WA, Australia.
J Anat. 2017 Dec;231(6):931-938. doi: 10.1111/joa.12683. Epub 2017 Sep 19.
The kangaroo knee is, as in other species, a complex diarthrodial joint dependent on interacting osseous, cartilaginous and ligamentous components for its stability. While principal load bearing occurs through the femorotibial articulation, additional lateral articulations involving the fibula and lateral fabella also contribute to the functional arrangement. Several fibrocartilage and ligamentous structures in this joint remain unexplained or have been misunderstood in previous studies. In this study, we review the existing literature on the structure of the kangaroo 'knee' before providing a new description of the gross anatomical and histological structures. In particular, we present strong evidence that the previously described 'femorofibular disc' is best described as a fibular meniscus on the basis of its gross and histological anatomy. Further, we found it to be joined by a distinct tendinous tract connecting one belly of the m. gastrocnemius with the lateral meniscus, via a hyaline cartilage cornu of the enlarged lateral fabella. The complex of ligaments connecting the fibular meniscus to the surrounding connective tissues and muscles appears to provide a strong resistance to external rotation of the tibia, via the restriction of independent movement of the proximal fibula. We suggest this may be an adaptation to resist the rotational torque applied across the joint during bipedal saltatory locomotion in kangaroos.
袋鼠的膝关节与其他物种一样,是一个复杂的双关节,其稳定性依赖于相互作用的骨、软骨和韧带成分。虽然主要的负重通过股胫关节进行,但涉及腓骨和外侧半月板的额外外侧关节也有助于功能布局。该关节中的几个纤维软骨和韧带结构在以前的研究中仍未得到解释或被误解。在本研究中,我们在对大体解剖和组织学结构进行新的描述之前,回顾了关于袋鼠“膝关节”结构的现有文献。特别是,我们提供了强有力的证据,基于其大体和组织学解剖结构,先前描述的“股腓盘”最好被描述为腓侧半月板。此外,我们发现它通过一条独特的腱束连接,该腱束通过扩大的外侧半月板的透明软骨角,将腓肠肌的一个肌腹与外侧半月板相连。连接腓侧半月板与周围结缔组织和肌肉的韧带复合体似乎通过限制近端腓骨的独立运动,为胫骨的外旋提供了强大的阻力。我们认为这可能是一种适应机制,以抵抗袋鼠双足跳跃运动过程中作用于关节的旋转扭矩。