首页> 外文期刊>Computer methods in biomechanics and biomedical engineering >Three-dimensional finite element analysis of initial displacement and stress on the craniofacial structures of unilateral cleft lip and palate model during protraction therapy with variable forces and directions
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Three-dimensional finite element analysis of initial displacement and stress on the craniofacial structures of unilateral cleft lip and palate model during protraction therapy with variable forces and directions

机译:初始位移的三维有限元分析,在变力和方向突起治疗期间单侧裂隙唇缘和口感模型的颅面结构

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Maxillary protraction and expansion is recommended to treat midfacial deficiency in patients with cleft lip and palate (CLP), where amount and direction of forces can change displacement and stress. This study assessed the initial displacement and stresses using Facemask and Maxgym forces with and without RME at +20(circle), 0(circle), and -20(circle)angulation using a finite element (FE) model of unilateral cleft lip and palate (UCCLP). The Initial displacement and stress were more for protraction with expansion as compared to only protraction. Asymmetric displacement was observed with more on cleft than on noncleft side and more on dental than skeletal structures. Palatal plane rotated less upward, increased arch width and decreased arch length was observed with protraction with expansion.
机译:建议颌骨突起和膨胀,以治疗唇腭裂和腭(CLP)的患者中期缺乏,其中力量和力量可以改变位移和应力。 本研究评估了使用单侧裂隙唇和口感的有限元(Fe)模型的+20(圆圈),0(圆)和-20(圆)角度使用和没有RME的Facemask和Maxgym力的初始位移和应力。 (UCCLP)。 与仅突出相比,初始位移和压力更多地具有抗膨胀。 观察到不对称位移比裂缝,而不是在骨骼结构上的裂缝中,比骨骼结构更多。 腭平面向上旋转,增加拱形宽度和弓形长度随着膨胀而观察到的。

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