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Orthopedic surgery planning based on the integration of reverse engineering and rapid prototyping

机译:基于逆向工程和快速原型的整合的矫形外科手术规划

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This paper describes orthopedic surgical planning based on the integration of RE and RP. Using symmetrical characteristics of the human body, CAD data of the original bone without damages for the injured extent are generated from a mirror transformation of undamaged bone data for the uninjured extent. The physical model before the injury is manufactured from RP apparatus. Surgical planning, such as the selection of the proper implant, pre-forming of the implant, decision of fixation positions and incision sizes, etc., is determined by a physical simulation using the physical model. In order to examine the applicability and efficiency of surgical planning technology for orthopedics, various case studies, such as a proximal tibia plateau fracture, a distal tibia comminuted fracture and an iliac wing fracture of pelvis, are carried out. As a result of the examination, it has been shown that the orthopedic surgical planning based on the integration of RE and RP is an efficient surgical tool.
机译:本文介绍了基于RE和RP的整合的整形外科计划。利用人体的对称特征,原始骨骼的CAD数据没有损坏的损坏程度,从未对骨骼数据的镜子变换产生了未造成的程度。损伤前的物理模型由RP设备制造。外科手术规划,例如选择适当的植入物,预先形成植入物,固定位置和切口尺寸等,由使用物理模型的物理模拟确定。为了审查整形外科手术规划技术的适用性和效率,进行各种案例研究,如近端胫骨平台骨折,远端胫骨粉碎骨折和骨盆的髂骨翼骨折。由于考试,已经表明基于RE和RP集成的整形外科手术规划是有效的手术工具。

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