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腭裂患者上颌骨手术辅助扩展的生物力学原理。

Biomechanical rationale for surgically facilitated expansion of the maxilla in the cleft palate patient.

作者信息

Kusakabe Toyohisa, Caputo Angelo A, Shetty Vivek, Iida Junichiro

机构信息

Department of Orthodontics, Division of Oral Functional Science, Graduate School of Dental Medicine, Hokkaido University, Sapporo, Japan.

出版信息

World J Orthod. 2007 Summer;8(2):167-73.

Abstract

AIM

To evaluate in vitro the biomechanical effects of surgically assisted rapid palatal expansion in a photoelastic unilateral cleft palate analog by observing stresses produced during appliance activation.

METHODS

A photoelastic analog of an adult skull with unilateral cleft palate was fabricated using birefringent materials to simulate bone and teeth. A customized hyrax appliance was applied to the anchor teeth and incrementally activated. Resulting stress patterns on both the cleft side and the intact side were observed and recorded photographically in the field of a circular polariscope. Subsequently, the pterygomaxillary junctions were sequentially cut, the appliance activations repeated, and the resulting stresses recorded.

RESULTS

With intact pterygomaxillary junctions, the highest stresses were localized at the zygomaticomaxillary and zygomaticofrontal sutures, with higher intensity on the intact side. Stresses concentrated in the pterygoid plates evidenced resistance to the expansion forces of the hyrax appliance. On separating the defect pterygomaxillary junction, increased stresses were located from the zygomaticomaxillary suture to the zygomaticofrontal suture and at the zygomatic arches on both sides, as well as the pterygomaxillary junction of the non-defect side. After cutting both the pterygomaxillary junctions, decreased stress was located from the zygomaticomaxillary suture to the zygomaticofrontal suture, the zygomatic arch, and the frontonasal sutures on both sides.

CONCLUSIONS

The pterygomaxillary junctions acted as the main resistive elements to expansion forces generated by a hyrax appliance. Separating the pterygomaxillary junctions assisted the bodily displacement of the lateral maxillary segment, which would facilitate correction of maxillary arch constrictions in the adult unilateral cleft lip patient.

摘要

目的

通过观察矫治器激活过程中产生的应力,在光弹性单侧腭裂模型上体外评估外科辅助快速腭扩展的生物力学效应。

方法

使用双折射材料制作成人单侧腭裂颅骨的光弹性模型,以模拟骨骼和牙齿。将定制的Hyrax矫治器应用于锚定牙并逐步激活。在圆偏振光镜视野中观察并拍照记录腭裂侧和完整侧产生的应力模式。随后,依次切断翼上颌连接,重复矫治器激活过程,并记录产生的应力。

结果

翼上颌连接完整时,最高应力集中在颧上颌缝和颧额缝,完整侧强度更高。翼突板中的应力集中表明对Hyrax矫治器扩展力的抵抗。分离缺损侧翼上颌连接后,应力增加部位从颧上颌缝至颧额缝以及双侧颧弓,以及非缺损侧翼上颌连接。切断双侧翼上颌连接后,应力降低部位从颧上颌缝至颧额缝、颧弓以及双侧额鼻缝。

结论

翼上颌连接是Hyrax矫治器产生的扩展力的主要抵抗元件。分离翼上颌连接有助于上颌骨外侧段的整体移位,这将有助于矫正成人单侧唇裂患者的上颌弓狭窄。

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