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Development of a New Type of Incisal Table for Prosthetic Articulators

机译:新型铰接式切牙台的研制

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This study illustrates the effectiveness of an advanced incisal table surface, featuring adjustable curvature, in the sake of more accurate articulator kinematics in anterior teeth reconstruction. Prosthetic articulators, used by dental technicians in reconstructive dentistry, are adjustable instruments that simulate the motion of mastication between dental casts: usually, the forward motion (protrusion) of the mandible is guided by sliding a pin over a flat table in order to recreate those movements when incisal teeth are missing. However, such protrusion is an approximation of the exact motion, since flat incisal tables have a limited set of adjustments. Customized software has been developed in order to simulate the kinematics of articulators in three-dimensional space: animations and measures of the envelope of teeth profiles show the unfeasibility of reconstructing with good approximation the profile of incisive teeth, when a simple ‘flat’ incisal table is used. A new incisal table with an adjustable curvature has been proposed, simulated, and built, and computer simulations demonstrated the superior precision of the new design when compared to a conventional articulator which uses a flat incisal table.
机译:这项研究说明了先进的切牙台表面的有效性,该表面具有可调节的曲率,以便在前牙重建中更精确的咬合器运动学。牙科技师在重建牙科中使用的义齿咬合器是可调节的器械,可模拟铸牙之间的咀嚼运动:通常,下颌骨的向前运动(伸出)是通过在平整的桌子上滑动销来引导的,以重建切牙缺失时的运动。但是,由于平坦的切牙台的调整量有限,因此这种突出是精确运动的近似值。已开发了定制软件,以在三维空间中模拟咬合架的运动学:动画和牙齿轮廓的测量表明,当简单的“平坦”切牙台时,无法很好地重建切齿的轮廓用来。已经提出,模拟和建造了一种新的可调节曲率的切牙台,并且与使用平直切牙台的传统咬合架相比,计算机仿真证明了新设计的优越精度。

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