Yamane M, Yamaoka M, Hayashi M, Furutoyo I, Komori N, Ogiso B
Department of Endodontics, Nihon University School of Dentistry, Tokyo, Japan.
J Periodontal Res. 2008 Feb;43(1):84-9. doi: 10.1111/j.1600-0765.2007.00997.x.
Mechanical parameters obtained from the frequency response at tooth vibration informs of various periodontal tissue conditions. An electromagnetic vibration device was investigated for measuring tooth mobility using mechanical parameters obtained from the frequency response characteristics of an experimental tooth model. This electromagnetic vibration device was able to assess the overall condition of periodontal tissue associated with the alteration of each parameter. In this study, reliability and effects of bottom thicknesses of simulated periodontal ligament relative to mechanical parameters were analysed.
Measurement of tooth vibration was performed by an electromagnetic vibration device on experimental tooth models with different bottom thicknesses of simulated periodontal ligament. Using an electromagnetic vibration device, the mechanical parameters resonant frequency, elastic modulus and coefficient of viscosity were calculated from the frequency response characteristics derived from tooth vibration by an electromagnetic force. Variation of those parameters was investigated under four different experimental conditions and the implications of the results were discussed.
An electromagnetic vibration device clearly detected three mechanical parameters in all experimental conditions. The resonant frequency and the elastic modulus decreased with increasing bottom thickness. However, no significant difference in the coefficient of viscosity was observed among the experimental conditions.
Assessment of tooth mobility using mechanical parameters of an electromagnetic vibration device reproduced fine details of various simulated periodontal ligament conditions. Variation in the parameters resonant frequency, elastic modulus and coefficient of viscosity might be useful in evaluating changes of components in periodontal tissues.
从牙齿振动的频率响应中获得的力学参数可反映各种牙周组织状况。研究了一种电磁振动装置,利用从实验牙齿模型的频率响应特性中获得的力学参数来测量牙齿松动度。这种电磁振动装置能够根据每个参数的变化评估牙周组织的整体状况。在本研究中,分析了模拟牙周膜底部厚度相对于力学参数的可靠性和影响。
使用电磁振动装置对具有不同模拟牙周膜底部厚度的实验牙齿模型进行牙齿振动测量。利用电磁振动装置,根据电磁力引起的牙齿振动的频率响应特性计算力学参数共振频率、弹性模量和粘度系数。在四种不同的实验条件下研究这些参数的变化,并讨论结果的意义。
电磁振动装置在所有实验条件下均能清晰检测到三个力学参数。共振频率和弹性模量随底部厚度增加而降低。然而,在各实验条件下,粘度系数未观察到显著差异。
利用电磁振动装置的力学参数评估牙齿松动度可重现各种模拟牙周膜状况的精细细节。共振频率、弹性模量和粘度系数的变化可能有助于评估牙周组织成分的变化。