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Three-dimensional finite element analysis of the prosthetic rehabilitation for unilateral maxillary defect after free flap reconstruction

机译:自由襟翼重建后单侧上颌缺损假体康复的三维有限元分析

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Aims: The aim of this study was to evaluate the stress on the prostheses and abutment teeth in a unilateral maxillary defect with free flap reconstruction. Methods and Materials: A three-dimensional finite element model of the human unilateral maxillary defect was constructed. Prostheses after free flap reconstruction were established. The modelling and analytical processes were performed using the ANSYS technologies. Results: The stress concentration was located at the junction of the palatal and the free flap. The highest stress value of was 49.656 Mpa. Stress distribution was uniform in the remaining posterior teeth. As for the free flap, the stress concentration were also found at the area adjacent to the palatal and the posterior area of the free flap, with a maximum stress value of 13.03Mpa. Conclusions: Although the immediate surgical reconstruction for unilateral maxillary defect has some advantages, it might cause instability of the prostheses which may affect the overall prosthetic outcome to the point of view of biomechanics. Further research should be done to perfect this kind of treatment, leading to a successful surgical and prosthodontic rehabilitation.
机译:目的:本研究的目的是评估在单侧上颌缺损中的假体和邻接牙齿的压力,自由襟翼重建。方法和材料:构建了人类单侧上颌缺损的三维有限元模型。自由襟翼重建后的假肢成立。使用ANSYS技术进行建模和分析过程。结果:应力浓度位于腭和自由翼片的交界处。最高的应力值为49.656 MPa。剩余的后牙中应力分布均匀。对于自由翼片,在与游泳池的腭和后面积相邻的区域中也发现应力浓度,最大应力值为13.03MPa。结论:虽然单侧上颌缺陷的直接手术重建有一些优势,但可能导致对生物力学的角度来说可能影响额外的假体的不稳定。进一步的研究应采取进一步的研究,完善这种治疗,导致成功的手术和假期康复。

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