Slager G E, Otten E, van Eijden T M, van Willigen J D
Department of Medical Physiology, University of Groningen, 9712 KZ Groningen, The Netherlands.
J Neurophysiol. 1997 Dec;78(6):3222-33. doi: 10.1152/jn.1997.78.6.3222.
When the resistance to a forceful isometric bite is suddenly removed in unloading experiments, the bite force drops to zero and the mandible reaches a constant velocity. This occurs at an initial bite force of 100 N after approximately 12 ms when the incisors have moved 4.5 mm. Reflex activity is far too slow to limit the velocity at impact. To explore the influence of other factors (cocontraction, force-length properties, and force-velocity properties of the muscles) on the velocity at impact, a numerical forward dynamic model of the jaw system is formulated. Unloading experiments in different experimental conditions were simulated with the model. Most parameter values of the model are based on physiological data, both from literature and a data basis from a human cadaver study. Other parameter values were found by optimally fitting the model results to data from the unloading experiments. The model analysis shows that the limitation of the jaw velocity mainly may be due to the force-velocity properties of the jaw-closing muscles. Force-length properties of the jaw muscles hardly contribute to the impact velocity. The compliance of tendinous sheets in the jaw muscles is unfavorable for the reduction in impact velocity, whereas cocontraction of jaw-opening and -closing muscles helps to limit impact velocity. The force-velocity properties of the muscles provide a quick mechanism for dealing with unexpected closing movements and so avoid damage to the dental elements.
在卸载实验中,当突然去除对强力等长咬合的阻力时,咬合力降至零,下颌骨达到恒定速度。当切牙移动4.5毫米后,在大约12毫秒时,初始咬合力为100牛顿时会出现这种情况。反射活动太慢,无法在撞击时限制速度。为了探究其他因素(肌肉的协同收缩、力-长度特性和力-速度特性)对撞击速度的影响,建立了下颌系统的数值正向动力学模型。用该模型模拟了不同实验条件下的卸载实验。模型的大多数参数值基于文献中的生理数据以及人体尸体研究的数据基础。通过将模型结果与卸载实验数据进行最佳拟合,找到了其他参数值。模型分析表明,下颌速度的限制主要可能归因于下颌闭合肌肉的力-速度特性。下颌肌肉的力-长度特性对撞击速度几乎没有贡献。下颌肌肉中腱膜的顺应性不利于撞击速度的降低,而下颌开合肌肉的协同收缩有助于限制撞击速度。肌肉的力-速度特性提供了一种快速机制来应对意外的闭合运动,从而避免对牙齿部件造成损伤。