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首页> 外文期刊>IJIDeM: International Journal on Interactive Design and Manufacturing >3D interactive environment for the design of medical devices
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3D interactive environment for the design of medical devices

机译:用于医疗设备设计的3D交互环境

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The effectiveness of custom-made prostheses or orthoses heavily depends on the experience and skills of the personnel involved in their production. For complex devices, such as lower limb prosthesis, a conventional manual approach affects the process at the point that the result is frequently not acceptable at the first trial. The paper presents a computer-aided environment, named socket modelling assistant $$^{2}$$ 2 (i.e., $$hbox {SMA}^{2})$$ SMA 2 ) , to interactively design the socket of lower limb prosthesis by implementing a set of design rules extrapolated from the traditional development process. The new computer-aided environment has been implemented embracing a low-cost philosophy and using open source libraries to provide a solution affordable also by small orthopaedic laboratories. The system permits to modify and interact with the 3D model of residual limb to create the socket geometric model ready to be manufactured by means of additive manufacturing. $$hbox {SMA}^{2}$$ SMA 2 embeds medical knowledge related to the device functioning, the conventional process and the way orthopaedic technicians work so that it can be much more reliable and repeatable compared to the conventional process, but still enough similar to it to be accepted by the involved personnel. In the paper, the new 3D design procedure is described in detail, from the acquisition of patient’s data to preliminary and customized modelling, and new geometric tools to perform context–related operations are shown. A case study is used to clarify the way the system works and to provide an example of the outcome.
机译:定制假肢或矫形器的有效性大量取决于参与其生产的人员的经验和技能。对于诸如较低的肢体假体的复杂设备,传统的手动方法会影响结果在第一次试验中经常不可接受的过程。本文提出了一个计算机辅助环境,名为Socket Modeling Assistant $$ ^ {2} $$ 2(即$$ hbox {sma} ^ {2}),以交互方式设计较低的插座肢体假肢通过实施从传统的开发过程推断的一套设计规则。新的计算机辅助环境已经实施,采用低成本的理念,并使用开源库来提供小型矫形实验室的实惠。该系统允许与残留肢体的3D模型进行修改和交互,以通过添加剂制造创建准备好的插座几何模型。 $$ hbox {sma} ^ {2} $$ sma 2嵌入与设备运行相关的医学知识,传统过程和骨科技术人员工作的方式,使其与传统过程相比可以更可靠,更可重复,但仍然足够类似于所涉及的人员接受。在本文中,从获取患者数据到初步和自定义建模的信息中详细描述了新的3D设计过程,并显示了用于执行相关的上下文相关操作的新的几何工具。案例研究用于阐明系统工作方式和提供结果的示例。

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