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Digital design and fabrication of simulation model for measuring orthodontic force

机译:测量正畸力的仿真模型的数字化设计与制作

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摘要

Three dimensional (3D) forces are the key factors for determining movement of teeth during orthodontic treatment. Designing precise forces and torques on tooth before treatment can result accurate tooth movements, but it is too difficult to realize. In orthodontic biomechanical systems, the periodontal tissues, including bones, teeth, and periodontal ligaments (PDL), are affected by braces, and measuring the forces applied on the teeth by braces should be based on a simulated model composed of these three types of tissues. This study explores the design and fabrication of a simulated oral model for 3D orthodontic force measurements. Based on medical image processing, tissue reconstruction, 3D printing, and PDL simulation and testing, a model for measuring force was designed and fabricated, which can potentially be used for force prediction, design of treatment plans, and precise clinical operation. The experiment illustrated that bi-component silicones with 2:8 ratios had similar mechanical properties to PDL, and with a positioning guide, the teeth were assembled in the mandible sockets accurately, and so a customized oral model for 3D orthodontic force measurement was created.
机译:三维(3D)力是确定正畸治疗过程中牙齿运动的关键因素。在治疗之前在牙齿上设计精确的力和扭矩会导致牙齿的精确运动,但这很难实现。在正畸生物力学系统中,牙周组织(包括骨骼,牙齿和牙周韧带(PDL))会受到牙套的影响,因此,应基于由这三种组织组成的模拟模型来测量牙套对牙齿的作用力。这项研究探索了用于3D正畸力测量的模拟口腔模型的设计和制造。基于医学图像处理,组织重建,3D打印以及PDL仿真和测试,设计和制造了用于测量力的模型,该模型可潜在地用于力预测,治疗计划设计和精确的临床操作。实验表明,比例为2:8的双组份有机硅具有与PDL相似的机械性能,并通过定位导向器将牙齿准确地组装在下颌窝中,从而创建了用于3D正畸力测量的定制口腔模型。

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