Department of Clinical Oral Physiology, School of Dentistry, Aarhus University, Aarhus, Denmark.
J Oral Rehabil. 2012 May;39(5):349-56. doi: 10.1111/j.1365-2842.2011.02278.x. Epub 2012 Jan 30.
Efficient mastication of different types and size of food depends on fast integration of sensory information from mechanoreceptors and central control mechanisms of jaw movements and applied bite force. The neural basis underlying mastication has been studied for decades but little progress in understanding the dynamics of bite force has been made mainly due to technical limitations of bite force recorders. The aims of this study were to develop a new intraoral bite force recorder which would allow the study of natural mastication without an increase in the occlusal vertical dimension and subsequently to analyze the relation between electromyographic (EMG) activity of jaw-closing muscles, jaw movements and bite force during mastication of five different types of food. Customized force recorders based on strain gauge sensors were fitted to the upper and lower molar teeth on the preferred chewing side in fourteen healthy and dentate subjects (21-39 years), and recordings were carried out during voluntary mastication of five different kinds of food. Intraoral force recordings were successively obtained from all subjects. anova showed that impulse of bite force as well as integrated EMG was significantly influenced by food (P<0·05), while time-related parameters were significantly affected by chewing cycles (P<0·001). This study demonstrates that intraoral force recordings are feasible and can provide new information on the dynamics of human mastication with direct implications for oral rehabilitation. We also propose that the control of bite force during mastication is achieved by anticipatory adjustment and encoding of bolus characteristics.
不同类型和大小的食物的有效咀嚼依赖于机械感受器的感觉信息的快速整合以及下颌运动和施加的咬合力的中枢控制机制。几十年来,人们一直在研究咀嚼的神经基础,但由于咬合力记录器的技术限制,对口咬力动态的理解几乎没有进展。本研究的目的是开发一种新的口腔内咬合力记录器,它可以在不增加牙合垂直距离的情况下研究自然咀嚼,并随后分析咀嚼五种不同类型食物时下颌闭合肌的肌电图(EMG)活动、下颌运动和咬合力之间的关系。在 14 名健康和有牙的受试者(21-39 岁)的偏好咀嚼侧的上下磨牙上定制了基于应变计传感器的力记录器,并在自愿咀嚼五种不同食物时进行了记录。从所有受试者中成功获得了口腔内力记录。方差分析显示,咬合力的脉冲以及整合的 EMG 受到食物的显著影响(P<0·05),而与时间相关的参数则受到咀嚼周期的显著影响(P<0·001)。本研究表明,口腔内力记录是可行的,可以为人类咀嚼的动态提供新的信息,这对口腔康复具有直接意义。我们还提出,咀嚼过程中咬合力的控制是通过对食团特征的预期调整和编码来实现的。