Adams Danielle S, Fish Frank E
Department of Biology, West Chester University, West Chester, Pennsylvania.
J Morphol. 2019 Sep;280(9):1323-1331. doi: 10.1002/jmor.21033. Epub 2019 Jun 27.
Dorso-ventral oscillations of cetacean caudal flukes generate lift-based thrust for swimming. Movements of the flukes are actuated by epaxial and hypaxial muscles through caudal tendons inserting onto vertebrate in the peduncle. To determine if the caudal tendons in the peduncle affect the flexibility of the flukes, we must understand how the tendons from axial muscles insert onto the caudal vertebrate. The purpose of this study was to provide a detailed description of the various tendons within the cetacean peduncle with regard to their role in swimming and flexibility. Dissection of the peduncle and flukes of multiple odontocete species showed that there were two distinct epaxial tendon sets within the peduncle: (1) extensor caudae medialis tendon (ECM) and (2) extensor caudae lateralis tendon (ECL). There is one distinct hypaxial tendon set, the medial tendon of the hypaxialis lumborum (MHL). The ECM and MHL tendons inserted serially onto caudal vertebrae while the ECL inserted exclusively onto the terminal vertebrae posterior to the fluke insertion. It is typical that tendons insert onto bone, however, the connection to the core fibrous layer of the flukes suggests an element of active control of the flexibility of the flukes via the axial muscles. Tension from muscular contraction transmitted through the tendons could affect both spanwise and chordwise flexibility. Changing flexibility could modulate thrust and efficiency over an extended operation range of swimming speeds in cetaceans.
鲸类尾鳍的背腹摆动产生基于升力的推进力用于游泳。尾鳍的运动由轴上肌和轴下肌通过插入尾柄椎骨的尾腱驱动。为了确定尾柄中的尾腱是否会影响尾鳍的灵活性,我们必须了解轴肌的肌腱是如何插入尾椎的。本研究的目的是详细描述鲸类尾柄内各种肌腱在游泳和灵活性方面的作用。对多种齿鲸类物种的尾柄和尾鳍进行解剖后发现,尾柄内有两组不同的轴上肌腱:(1)尾内侧伸肌腱(ECM)和(2)尾外侧伸肌腱(ECL)。有一组不同的轴下肌腱,即腰轴下肌内侧肌腱(MHL)。ECM和MHL肌腱依次插入尾椎,而ECL仅插入尾鳍插入点后方的终椎。肌腱插入骨骼是常见的情况,然而,与尾鳍核心纤维层的连接表明,轴肌对尾鳍的灵活性具有主动控制作用。肌肉收缩产生的张力通过肌腱传递,可能会影响展向和弦向的灵活性。改变灵活性可以在鲸类的广泛游泳速度操作范围内调节推进力和效率。