[Influence on the movement of a complete denture caused by differences in artificial tooth materials].

M Kurokawa
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Abstract

An experiment using modal analysis was used to ascertain the activity of complete dentures and artificial teeth. Three types of artificial teeth were used: a porcelain tooth, a resin tooth and a hard resin tooth. Animation and displacement values were used as criteria in determining the influence that differences in tooth materials had on the activity of the complete denture. The experiment was conducted to act as an aid in denture design and the following results were obtained: 1. The resonance frequency for the different test materials ranged from mode 4 to mode 7. 2. Regarding displacement value, a value of 1 micron or more was obtained in the 1 octave bandwidth for the 250 Hz band, 500 Hz band and the 1 kHz band. Among these, maximum displacement for the upper complete denture was as follows: When a porcelain tooth was used and a vibration of 1 for mode 1 (197 Hz) was applied, the value for the 3 cusp tip was 39.48 microns and that for the labial denture border side was 43.35 microns. As for the lower complete denture, when a porcelain tooth was used and 5 oscillation was applied for mode 1 (309 Hz), the value for the 3 cusp tip was 68.38 microns and that for the rear part of the denture border was 139.2 microns. 3. Regarding the activity of the complete denture in the 250 Hz and 1 kHz bands, when a porcelain tooth was used, a curve mode was observed for the upper complete denture in the labiolingual direction with the cervical line as the border. When the resin tooth and hard resin tooth were used, it was difficult to recognize any change with the cervical line as the border. It was also difficult to recognize a change at the cervical section for the lower complete denture. 4. As for the 500 Hz band, when a porcelain tooth and a resin tooth were used, there were frequencies (300 Hz-400 Hz) at which twisting in a labiolingual direction at the cervical section was recognized for the upper complete denture as well as frequencies (400 Hz-600 Hz) where this was not recognized. A rigid body mode was recognized when the hard resin tooth was used. In addition, differences in the location for applying for vibration had an influence on the activity of the lower complete denture.

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[人工牙材料差异对全口义齿运动的影响]。
采用模态分析方法测定了全口义齿和人工牙的活动性。使用了三种类型的假牙:瓷牙、树脂牙和硬树脂牙。动画和位移值被用作确定牙齿材料差异对全口义齿活动的影响的标准。本实验作为义齿设计的辅助工具,得到以下结果:不同测试材料的共振频率范围从4型到7型。2. 关于位移值,在250 Hz频段、500 Hz频段和1 kHz频段的1倍频宽范围内获得了1微米或更大的位移值。其中,上全口义齿的最大位移为:当使用瓷牙时,在模式1 (197 Hz)的振动为1时,3尖尖的位移值为39.48微米,唇义齿边缘的位移值为43.35微米。对于下全口义齿,当使用瓷牙,在模式1 (309 Hz)下振荡5次时,3齿尖的值为68.38微米,义齿后缘的值为139.2微米。3.对于全口义齿在250 Hz和1 kHz频段的活动,当使用烤瓷牙时,上颌全口义齿在唇舌方向以颈线为边界呈曲线模式。当使用树脂牙和硬树脂牙时,以颈椎线为边界难以识别任何变化。对于下全口义齿,也很难识别颈椎部分的变化。4. 至于500 Hz频段,当使用瓷牙和树脂牙时,上颌全口义齿在300 Hz-400 Hz的频率上可以识别出颈段唇舌方向的扭转,而在400 Hz-600 Hz的频率上则不能识别。当使用硬树脂牙时,识别出刚体模式。此外,施加振动位置的不同对下全口义齿的活动也有影响。
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