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Feature Driven Rule Based Framework for Automatic Modeling of Organic Shapes in the Design of Personalized Medical Prosthetics

机译:特征驱动规则基于框架的个性化医学假修设计中有机形状的自动建模框架

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We propose a novel framework for the personalized design of organic shapes that are constrained to exhibit conformity with the underlying anatomy. Such constrained design is significant for several applications such as the design of implants and prosthetics, which need to be adapted to the anatomy of a patient. In such applications, vaguely defined work instructions are usually employed by expert designers to carry out a sequence of surface modification operations using interactive CAD tools. Our approach involves the abstraction of the work instructions and the expert knowledge into feature dependent machine interpretable rules in a Knowledge Base. Robustly identified canonical set of anatomical features are then employed to determine concrete surface shaping operations by a Smart Shape Modeler. These operations are eventually performed sequentially to adapt a surface to a target shape. The versatility of our approach lies in a priori defining an entire design workflow through a scripting language, thereby yielding a high degree of automation that is completely flexible and customizable via scriptable rules. Consequently, it eliminates tedious manual intervention and offers desirable precision and reproducibility. We validate this framework with a practical application - automatic modeling of shells in hearing aid (HA) manufacturing (HAM).
机译:我们提出了一种新颖的有机形状设计的框架,这些框架被限制为与潜在的解剖结构表现出符合性。这种约束的设计对于诸如植入物和假肢的设计之类的应用是重要的,这需要适应患者的解剖学。在这种应用中,模糊定义的工作指令通常由专家设计师使用,使用交互式CAD工具执行一系列表面修改操作。我们的方法涉及在知识库中抽象工作指示和专家知识,以特征依赖机器可解释规则。然后采用强大地识别的规范组织特征来通过智能形状建模来确定混凝土表面整形操作。最终顺序地执行这些操作以使表面适应目标形状。我们的方法的多功能性在于通过脚本语言定义整个设计工作流程的先验性,从而产生高度自动化,可以通过脚本规则完全灵活和可自定义。因此,它消除了繁琐的手动干预,并提供了理想的精度和再现性。我们用实际应用验证了该框架 - 助听器(HA)制造(HAM)中的壳牌自动建模。

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