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Visualization and analysis of occlusion for human jaws using a 'functionally generated path'

机译:使用“功能生成的路径”可视化和分析人类颌骨的咬合

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Abstract: Dynamic characteristics of occlusion during lower jaw motion are useful in the diagnosis of jaw articulation problems and in computer-aided design/ manufacture of teeth restorations. The Functionally Generated Path (FGP), produced as a surface which envelops the actual occlusal surface of the moving opponent jaw, can be used for compact representation of dynamic occlusal relations. In traditional dentistry FGP is recorded as a bite impression in a patient's mouth. We propose an efficient computerized technique for FGP reconstruction and validate it through implementation and testing. The distance maps between occlusal surfaces of jaws, calculated for multiple projection directions and accumulated for mandibular motion, provide information for FGP computation. Rasterizing graphics hardware is used for fast calculation of the distance maps. Real-world data are used: the scanned shape of teeth and the measured motion of the lower jaw. We show applications of FGP to analysis of the occlusion relations and occlusal surface design for restorations.!8
机译:摘要:下颌运动过程中的咬合动态特征可用于诊断颌关节问题以及计算机辅助设计/制造的牙齿修复体。功能性生成的路径(FGP)作为包围移动的对手颚的实际咬合面的表面而产生,可用于动态咬合关系的紧凑表示。在传统牙科中,FGP被记录为患者口腔中的咬痕。我们提出了一种有效的计算机化的FGP重建技术,并通过实施和测试对其进行了验证。下颌的咬合面之间的距离图(针对多个投影方向进行计算并针对下颌运动进行累积)为FGP计算提供了信息。栅格化图形硬件用于快速计算距离图。使用真实数据:扫描的牙齿形状和测得的下颌运动。我们展示了FGP在修复物的咬合关系和咬合面设计分析中的应用!8

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