首页> 外文会议>2011 IEEE International Conference on Robotics and Automation >Development of the airway management training system WKA-4: For improved high-fidelity reproduction of real patient conditions, and improved tongue and mandible mechanisms
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Development of the airway management training system WKA-4: For improved high-fidelity reproduction of real patient conditions, and improved tongue and mandible mechanisms

机译:气道管理培训系统WKA-4的开发:用于改善真实患者状况的高保真再现,并改善舌头和下颌骨的机制

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In recent years advanced robotic technology has seen more use in the medical field to assist in the development of efficient training systems. Such training systems must fulfill the following criteria: they must provide quantitative information, must simulate the real-world conditions of the task, and assure training effectiveness. We developed Waseda Kyotokagaku Airway series to fulfill all of those requirements. The WKA series we had developed does not consider external appearance such as patient skin, or internal appearance such as the pharynx, larynx, and esophagus. Moreover, the tongue mechanism of the previous system can not precisely measure the force applied by medical devices and cannot simulate muscle stiffness. In addition, the mandible mechanism of the previous system could not adequately reproduce various airway difficulties or apply force control. For these reasons, we propose the WKA-4, which has high-fidelity simulated human anatomy, and we have improved the mechanism over the previous system. We have also attached a lung to the proposed system to improve simulation of the real-world conditions of the task. In this paper, we present how to design several organs with various embedded sensors and actuators, for a conventional patient model with high-fidelity simulated human anatomy. We also present the control system for the WKA-4. Finally, we present a set of experiments carried out using doctors as subjects, and they gave their valuable opinions about our system.
机译:近年来,先进的机器人技术已在医学领域得到更多使用,以协助开发有效的训练系统。这样的培训系统必须满足以下条件:它们必须提供定量信息,必须模拟任务的实际条件,并确保培训效果。为了满足所有这些要求,我们开发了早稻田Kyotokagaku Airway系列飞机。我们开发的WKA系列不考虑患者皮肤等外观,也不考虑咽,喉和食道等内部外观。而且,先前系统的舌头机构不能精确地测量医疗设备施加的力,并且不能模拟肌肉僵硬。另外,先前系统的下颌机构不能适当地重现各种气道困难或施加力控制。由于这些原因,我们提出了具有高保真度的模拟人体解剖结构的WKA-4,并且相对于以前的系统,我们改进了该机制。我们还为建议的系统附加了肺部功能,以改善对任务实际条件的仿真。在本文中,我们介绍了如何针对具有高保真模拟人体解剖结构的常规患者模型设计具有各种嵌入式传感器和执行器的多个器官。我们还介绍了WKA-4的控制系统。最后,我们介绍了一组以医生为主体进行的实验,他们对我们的系统提出了宝贵的意见。

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