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Effect of Magnet Position on Tipping and Bodily Tooth Movement in Magnetic Force-Driven Orthodontics

机译:磁力位置对磁力驱动正畸性倾翻和身体牙齿运动的影响

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摘要

The goal of our study is to launch magnetic force-driven orthodontics. This continuous study investigated the influence of magnet position on tipping and bodily tooth movement, using 3D printing technology and digital analysis. Orthodontic typodont models (TMs) for space-closure were 3D printed to mimic maxillary central incisors. Nd-Fe-B magnets were placed in the middle third (Model-M), and the cervical third (Model-C), of the tooth. TMs, before and after movement, were digitally scanned and superimposed. The 3D digital coordinates (X, Y, and Z axes), and rotations (yaw, pitch, and roll) of the tooth crown and root, were calculated and compared between the two magnet position settings. Model-M showed higher rates of movement, but more rotation than Model-C ( < 0.01). The root apex of Model-M moved in the opposite direction of the crown ( = −0.29), indicating tipping movement. In contrast, the crown and root apex moved in the same direction ( = 0.56) in Model-C, indicating bodily movement. These patterns were confirmed in a typodont model of a moderate crowding case. The results validated that modifying the magnet position increased the amount of bodily tooth movement, and decreased rotation/tipping in an ex vivo setting.
机译:我们研究的目标是发射磁力驱动的正畸性。这种不断的研究研究了使用3D印刷技术和数字分析的磁体位置对倾斜和身体齿移动的影响。空间闭合的正畸典型模型(TMS)是印刷成模拟上颌骨中央门牙的3D。将ND-Fe-B磁体置于中间三(型号M)和牙齿的宫颈第三(型号C)中。运动之前和之后的TMS经过数字扫描和叠加。在两个磁体位置设置之间计算并比较了齿冠和根的3D数字坐标(X,Y和Z轴)和旋转(偏航,俯仰和卷)。 Model-M显示出更高的运动率,但比Model-C(<0.01)旋转更多。模型-M的根顶点在冠部(= -0.29)的相反方向上移动,表示倾斜运动。相反,冠和根顶部在模型-c中以相同的方向(= 0.56)移动,表明身体运动。在适度拥挤的情况的Typodond模型中确认了这些模式。结果验证了改变磁体位置增加了体内齿移动的量,并减少了离体设置中的旋转/倾翻。

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