Koolstra J H, van Eijden T M
Department of Functional Anatomy, Academic Centre for Dentistry Amsterdam (ACTA), The Netherlands.
J Biomech. 1997 Sep;30(9):883-9. doi: 10.1016/s0021-9290(97)00047-x.
The movements of the human jaw are controlled by the forces produced by the masticatory muscles. As the jaw moves, these muscles change in length and their force producing units, the sarcomeres, change in length simultaneously. The lengths and length changes of the sarcomeres are determinants for the forces they are able to produce. Hence, masticatory muscle force and jaw movement influence each other which makes it difficult to study their mutual relationship. In this paper, lengths and contraction velocities of the sarcomeres of the human jaw-opening and jaw-closing muscles are presented as well as the consequences for force production during jaw open-close movements simulated with a biomechanical model. Jaw-opening muscles acted almost synchronic in terms of sarcomere length, contraction velocity and force production. They were able to produce the largest isometric forces at relatively small jaw openings at the cost of reduced force production capabilities in wide open positions. In contrast, the jaw-closing muscles acted more differently. They were able to sustain active muscle force throughout a large range of the closing movement. Within this group the masseter and medial pterygoid contracted excentrically during a short time. The lateral pterygoid muscle portions behaved differently with respect to both groups. The jaw-opening muscles produced negligible passive forces during jaw closing. The passive forces of the jaw-closing muscles, however, contributed significantly to a limitation of the jaw-opening movement.
人类颌骨的运动由咀嚼肌产生的力量控制。随着颌骨的移动,这些肌肉的长度会发生变化,其产生力量的单位——肌节,也会同时发生长度变化。肌节的长度和长度变化是其能够产生的力量的决定因素。因此,咀嚼肌力量和颌骨运动相互影响,这使得研究它们之间的相互关系变得困难。本文介绍了人类开颌肌和闭颌肌肌节的长度和收缩速度,以及用生物力学模型模拟颌骨开合运动时力量产生的结果。开颌肌在肌节长度、收缩速度和力量产生方面几乎同步作用。它们能够在相对较小的颌骨开口时产生最大的等长力量,但在大开口位置时力量产生能力会降低。相比之下,闭颌肌的作用则更为不同。它们能够在整个较大范围的闭合运动中维持主动肌肉力量。在这一组中,咬肌和翼内肌在短时间内进行离心收缩。翼外肌部分在这两组中表现不同。开颌肌在颌骨闭合时产生的被动力可以忽略不计。然而,闭颌肌的被动力对限制颌骨开口运动有显著贡献。