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首页> 外文期刊>Journal of the Formosan Medical Association =: Taiwan yi zhi >A new orthodontic force system for moment control utilizing the flexibility of common wires: Evaluation of the effect of contractile force and hook length
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A new orthodontic force system for moment control utilizing the flexibility of common wires: Evaluation of the effect of contractile force and hook length

机译:利用普通金属丝的柔韧性来控制力矩的正畸新力系统:评估收缩力和钩长的影响

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Background/Purpose The application of an appropriate force system is indispensable for successful orthodontic treatments. Second-order moment control is especially important in many clinical situations, so we developed a new force system composed of a straight orthodontic wire and two crimpable hooks of different lengths to produce the second-order moment. The objective of this study was to evaluate this new force system and determine an optimum condition that could be used in clinics. Methods We built a premolar extraction model with two teeth according to the concept of a modified orthodontic simulator. This system was activated by applying contractile force from two hooks that generated second-order moment and force. The experimental device incorporated two sensors, and forces and moments were measured along six axes. We changed the contractile force and hook length to elucidate their effects. Three types of commercial wires were tested. Results The second-order moment was greater on the longer hook side of the model. Vertical force balanced the difference in moments between the two teeth. Greater contractile force generated a greater second-order moment, which reached a limit of 150?g. Excessive contractile force induced more undesired reactions in the other direction. Longer hooks induced greater moment generation, reaching their limit at 10?mm in length. Conclusion The system acted similar to an off-center V-bend and can be applied in clinical practice as an unconventional loop design. We suggest that this force system has the potential for second-order moment control in clinical applications.
机译:背景/目的对于成功的正畸治疗,必不可少的是要施加适当的力量系统。在许多临床情况下,二阶力矩控制尤为重要,因此我们开发了一种新的受力系统,该系统由一条正畸钢丝和两个不同长度的可弯钩组成,以产生二阶力矩。这项研究的目的是评估这种新的力量系统,并确定可用于临床的最佳条件。方法我们根据改良的正畸模拟器的概念建立了一个具有两个牙齿的前磨牙拔除模型。通过施加来自两个钩的收缩力来激活该系统,该钩产生了二阶力矩和力。实验装置装有两个传感器,沿六个轴测量了力和力矩。我们改变了收缩力和钩的长度来阐明它们的作用。测试了三种类型的商业电线。结果在模型的较长钩侧,二阶矩较大。垂直力平衡了两个齿之间的力矩差。更大的收缩力产生更大的二阶矩,其极限为150微克。过度的收缩力会在另一个方向上引起更多不希望的反应。钩子越长,产生的力矩越大,长度达到10?mm时达到极限。结论该系统的作用类似于偏心的V形弯曲,可作为非常规回路设计应用于临床。我们建议该力系统在临床应用中具有二阶力矩控制的潜力。

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