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定量分析六种 Burstone 几何结构中激活的腭弓传递的力系统。

Quantification of the force systems delivered by transpalatal arches activated in the six Burstone geometries.

出版信息

Angle Orthod. 2017 Jul;87(4):542-548. doi: 10.2319/041316-302.1.1. Epub 2016 Nov 8.

Abstract

OBJECTIVE

To evaluate the force systems produced by transpalatal arches (TPAs) activated according to the six classes of geometries described by Burstone and Koenig.

MATERIALS AND METHODS

Sixty appliances were tested for first-order activations using a mechanical force testing system. The TPAs were first checked for passivity in sagittal, transverse, and vertical planes at the measuring machine. Then 10 appliances per group were activated using a millimeter template to obtain the six classes of geometries, and the activated appliances were inserted into lingual tubes of the Force System Identification machine that recorded the deactivation forces and moments delivered by both terminal ends of the TPAs.

RESULTS

The overall force system with the actual values of forces and moments recorded by each type of activation was illustrated and compared with the mathematical model reported by Burstone and Koenig. Although a great consistency of the direction of forces and moments were observed, the theoretically feasible force systems could not be fully accomplished by the TPA activated for the six classes of geometries.

CONCLUSION

The first-order activations of the TPA can deliver predictable force systems in respect to the direction of forces and moments attainable, but some unexpected forces and moments are also produced. Careful clinical monitoring is, therefore, strongly recommended when using this statically indeterminate system.

摘要

目的

评估根据 Burstone 和 Koenig 描述的六类几何形状激活的腭弓(TPA)产生的力系统。

材料和方法

使用机械力测试系统对 60 个矫治器进行了一阶激活测试。首先在测量机上检查 TPA 在矢状面、横断面上的被动性,以及在垂直面上的被动性。然后,使用毫米模板激活每组中的 10 个矫治器,以获得六类几何形状,并将激活的矫治器插入力系统识别机的舌侧管中,该机器记录 TPA 两端产生的去激活力和力矩。

结果

用每种激活类型记录的实际力值和力矩值说明了整体力系统,并与 Burstone 和 Koenig 报告的数学模型进行了比较。尽管观察到力和力矩的方向具有很大的一致性,但通过为六类几何形状激活的 TPA 并不能完全实现理论上可行的力系统。

结论

TPA 的一阶激活可以在可达到的力和力矩方向上提供可预测的力系统,但也会产生一些意外的力和力矩。因此,在使用这种静不定系统时,强烈建议进行仔细的临床监测。

相似文献

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Removable quadhelices and transpalatal arches.可摘式四螺旋器和跨腭弓
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