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Development of a robotic system for orthodontic archwire bending

机译:正畸弓丝弯曲机器人系统的开发

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Customized archwires are demanded in the lingual orthodontic treatment for patients suffering from malocclusion. Traditionally, these archwires could only be bent by experienced orthodontists manually. This pattern requires a specialized skills training and occupies long charside time, but still cannot ensure the accuracy of appliances. Therefore, a novel robotic system was developed for automatic and accurate preparation in our study. First, the implementation of hardware system was designed. Second, a modular and ROS-integrated control system was developed to control automatic bending. Third, an adaptive sampling-based bending planner with collision checker in a time-varying environment was established and realized in control system architecture. Preliminary validation of the developed robot system and its control system have been conducted both in simulation and physical robotic system. Experimental results have shown that the developed robotic system with its ROS-integrated control system was able to accomplish automatic and accurate orthodontic archwire preparation.
机译:正畸牙齿矫治中需要定制的弓丝。传统上,这些弓丝只能由经验丰富的正畸医生手动弯曲。这种模式需要专门的技能培训,并占用很长的时间,但仍不能确保设备的准确性。因此,在我们的研究中开发了一种新颖的机器人系统,用于自动和准确的准备工作。首先,设计了硬件系统的实现。其次,开发了模块化和ROS集成的控制系统来控制自动弯曲。第三,建立了时变环境下带有碰撞检测器的自适应采样弯曲计划器,并在控制系统体系结构中实现。在仿真和物理机器人系统中都对开发的机器人系统及其控制系统进行了初步验证。实验结果表明,带有ROS集成控制系统的已开发机器人系统能够完成自动且准确的正畸弓丝准备。

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