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Biomechanical analysis of rapid maxillary expansion in the UCLP patient.

机译:UCLP患者快速上颌骨扩张的生物力学分析。

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摘要

This study was designed to investigate the biomechanical effects of rapid maxillary expansion (RME) in the patient with unilateral cleft lip and palate (UCLP). A finite element model of a patient's craniofacial complex with UCLP was created using data from spiral computed tomographic (CT) scanning. A transversal displacement with a magnitude of 5mm was applied on the maxillary premolar and first permanent molar crown of the model simulating the clinical situation. The stress and deformation within the craniofacial complex were then calculated and analyzed during 0.25- and 5-mm expansions. The corresponding orthodontic forces on each loaded tooth were also calculated. Obtained results revealed the biomechanical performance of the craniofacial complex with UCLP undergoing RME, including the distribution pattern of the stress and displacement, the transmission and dissipation of the orthodontic force, the stress level and the magnitude of the orthodontic force. All these findings could help us better comprehend the biomechanical mechanism of RME in the UCLP patient and provided theoretic data for optimizing surgical assisted RME in clinic.
机译:本研究旨在研究单侧唇left裂(UCLP)患者的快速上颌骨扩张(RME)的生物力学作用。使用来自螺旋计算机断层扫描(CT)扫描的数据创建了带有UCLP的患者颅面复合体的有限元模型。在模拟临床情况的模型的上颌前磨牙和第一恒磨牙牙冠上施加5mm的横向位移。然后在0.25和5毫米的扩张过程中计算并分析颅面复合体内的应力和变形。还计算了每个加载的牙齿上相应的牙齿正畸力。所得结果揭示了UCLP经历RME的颅面复合体的生物力学性能,包括应力和位移的分布方式,正畸力的传递和消散,应力水平和正畸力的大小。所有这些发现可以帮助我们更好地了解UCLP患者RME的生物力学机制,并为优化临床上的手术辅助RME提供理论数据。

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