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前牙反牙合正畸矫治后下颌运动及咬肌活动的变化

Changes in jaw movement and jaw closing muscle activity after orthodontic correction of incisor crossbite.

作者信息

Sohn B W, Miyawaki S, Noguchi H, Takada K

机构信息

Department of Orthodontics, Dental College, Yonsei University to Osaka, Japan.

出版信息

Am J Orthod Dentofacial Orthop. 1997 Oct;112(4):403-9. doi: 10.1016/s0889-5406(97)70048-9.

Abstract

The possible influences of the direction of occlusal loading delivered to the incisors in the sagittal direction during chewing on jaw movement and jaw closing muscle activity were investigated. Ten healthy children with crossbite of one or two incisors on the right side were selected. Each subject chewed a piece of chewing gum on the right side, and jaw displacements and electromyographic signals from the posterior temporalis and superficial masseter muscles on the ipsilateral side were sampled simultaneously. After orthodontic correction of the incisor crossbite relationship, identical records were taken. The inclinations of the gliding contacts for each posterior tooth in the lateral jaw excursion position were consistent before and after the treatment. The posttreatment records showed broader jaw movement patterns in the frontal view and faster jaw movement velocity in the lateral direction at a level close to the habitual maximum intercuspation position, when compared with the pretreatment records (P < 0.05). The duration of the muscle activity and the incidence of the silent periods of the masseter muscle during chewing significantly decreased after the treatment (P < 0.05). The current results give a neurophysiologic rationale for explaining the significance of orthodontic treatment in improving lowered masticatory efficiency in the way that the change in direction of the occlusal load achieved by tooth movement influences on the periodontal sensory input, which, in turn, modifies the trigeminal motor output and thus, eventually, jaw muscle activities.

摘要

研究了咀嚼过程中矢状方向上施加于切牙的咬合负荷方向对下颌运动和下颌闭合肌活动的可能影响。选择了10名右侧有一颗或两颗切牙反合的健康儿童。每位受试者右侧咀嚼一片口香糖,同时采集同侧颞肌后部和咬肌浅层的下颌位移和肌电信号。在对切牙反合关系进行正畸矫治后,进行相同的记录。治疗前后,外侧下颌运动偏移位置上每颗后牙的滑动接触倾斜度一致。与治疗前记录相比,治疗后记录显示在接近习惯性最大牙尖交错位水平时,正面观下颌运动模式更宽,外侧方向下颌运动速度更快(P < 0.05)。治疗后咀嚼过程中咬肌的肌肉活动持续时间和静息期发生率显著降低(P < 0.05)。目前的结果为解释正畸治疗在改善降低的咀嚼效率方面的意义提供了神经生理学依据,即牙齿移动实现的咬合负荷方向变化影响牙周感觉输入,进而改变三叉神经运动输出,最终改变下颌肌肉活动。

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