[口腔外支抗中磨牙运动与正畸力传递机制的关系[2]]。

K Kobayashi, H Arai
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引用次数: 0

摘要

研究了磨牙的运动与正畸力传递的关系,特别是在口腔外支抗中外弓的上拉作用。从水平拉向向上40度的角度对磨牙运动进行了理论分析。在人体干颅骨上进行全息实验,研究正畸力的传递机理,从水平拉向每5度向上40度。1. 外弓的水平拉力导致磨牙远端移动。磨牙的长轴向远端倾斜。牙面颅骨向下、后方向移位。2. 当外弓向上倾斜约18度时,磨牙身体向远上方向移动。但牙面头盖骨有一点向下和向后的变化。3.当外弓向上倾斜25 ~ 30度时,磨牙向顺时针方向旋转,牙面颅骨向逆时针方向旋转。牙面颅骨未见弯曲变形。4. 牙面头盖骨向上拉25 ~ 30度。这些方向在临床上被解释为抑制上颌骨的向下和向前生长。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[The relationship between the movement of molars and the transmitted mechanism of orthodontic forces in extraoral anchorage (2)].

The relationship between the movement of molars and the transmission of orthodontic forces were especially studied about the upward pull of the outer bow in extraoral anchorage. Molar movements were theoretically analyzed from horizontal pull to upward angle of 40 degree. The transmission mechanism of the orthodontic force was studied from horizontal pull to 40 degree upward angle on each 5 degree with the holography experiment on a human dry skull. 1. Horizontal pull of the outer bow resulted in distal movement of the molar. The long axis of the molar was tipped distally. The dentofacial cranium transformed to the lower and backward direction. 2. When the outer bow was inclined at an upward angle of about 18 degree, the molar moved bodily to the distal and superior direction. But the dentofacial cranium transformed a little to the lower and backward direction. 3. When the outer bow was inclined from 25 to 30 degree upward angle, the molar rotated to the clockwise direction, and the dentofacial cranium rotated to the counter clockwise. The bending deformation was not observed on the dentofacial cranium. 4. The dentofacial cranium was compressed in the pull direction from 25 to 30 degree upward angle. These directions were clinically interpreted as inhibition of the downward and forward growth of the maxillary bone.

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