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外科辅助快速上颌扩展:面中部和颅骨应力分布

Surgically assisted rapid maxillary expansion: midfacial and cranial stress distribution.

作者信息

Holberg Christof, Steinhäuser Stefanie, Rudzki Ingrid

机构信息

Department of Orthodontics, University of Munich, Munich, Germany.

出版信息

Am J Orthod Dentofacial Orthop. 2007 Dec;132(6):776-82. doi: 10.1016/j.ajodo.2005.12.036.

Abstract

INTRODUCTION

Our aim in this study was to investigate the stresses in the midface and at the cranial base during surgically assisted rapid maxillary expansion, to determine whether surgically assisted separation of the maxilla from the cranial base can be considered justified and necessary.

METHODS

By using finite element models, surgically assisted rapid maxillary expansion with or without separation of the pterygomaxillary junction was simulated, and the stresses at various points in the midface and the cranial base were analyzed. The finite element models consisted of more than 50,000 individual elements and almost 100,000 nodes.

RESULTS

The stresses recorded at the measurement points of the midface and the cranial base were usually lower upon separation of the pterygomaxillary junction than those measured without this additional surgical measure. The stress measured at the optic foramen without separation was 122.4 MPa, whereas, with separation of the pterygomaxillary junction, it was only 32.7 MPa. The finite element method proved to be a suitable procedure for comparing the biomechanical influences of various therapeutic measures involving a combined surgical-orthodontic procedure. The results confirm the effectiveness of an additional separation of the pterygomaxillary junction as a protective measure to reduce stress to the foramina of the cranial base.

CONCLUSIONS

To protect the cranial base from undesirable side effects, separation of the pterygomaxillary junction appears to be a reasonable and necessary additional measure for surgically assisted palatal suture expansion.

摘要

引言

本研究的目的是调查外科辅助快速上颌扩展过程中面中部和颅底的应力,以确定将上颌与颅底进行外科分离是否合理且必要。

方法

通过使用有限元模型,模拟了翼上颌连接分离或未分离的外科辅助快速上颌扩展,并分析了面中部和颅底不同点的应力。有限元模型由超过50,000个单独单元和近100,000个节点组成。

结果

翼上颌连接分离时,面中部和颅底测量点记录的应力通常低于未采取此额外手术措施时测量的应力。未分离时视神经孔处测量的应力为122.4兆帕,而翼上颌连接分离时,仅为32.7兆帕。有限元方法被证明是一种比较涉及联合外科正畸手术的各种治疗措施生物力学影响的合适方法。结果证实了额外分离翼上颌连接作为减少颅底孔应力的保护措施的有效性。

结论

为保护颅底免受不良副作用影响,翼上颌连接分离似乎是外科辅助腭中缝扩展的合理且必要的额外措施。

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