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A Review of Pneumatic Actuators Used for the Design of Medical Simulators and Medical Tools

机译:用于医疗模拟器和医疗工具设计的气动执行器的综述

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摘要

Simulators have been traditionally used for centuries during medical gestures training. Nowadays, mechatronic technologies have opened the way to more evolved solutions enabling objective assessment and dedicated pedagogic scenarios. Trainees can now practice in virtual environments representing various kind of patient and body parts including physio-pathologies issues. Gestures, to be mastered, vary according to each medical specialty (e.g., ultrasound probe orientations, or forceps installation during assisted delivery). Hence, medical students need kinesthetic feedback in order to significantly improve their learning capabilities. Gesture simulators require haptic devices with variable stiffness actuators. Existing solutions do not always fit the requirements because of their significant size. Contrary to electric actuators, pneumatic technology is low-cost, available off-the-shelf and offers a better mass−power ratio. However, it presents two main drawbacks: nonlinear dynamics and need for a compressed air supply. During the last decade, we have developed several haptic solutions based on pneumatic actuation (e.g., birth simulator, epidural needle insertion simulator) and, recently, in a joint venture with Prisme laboratory, a pneumatic probe master device for remote ultrasonography. This paper recalls literature scientific approaches on pneumatic actuation developed in the medical context and illustrated with the aforementioned applications to highlight the benefits.
机译:在医学手势培训期间,模拟器传统上用于几个世纪。如今,机电技术已经开辟了更多进化的解决方案,使客观评估和专门的教学情景能够。学员现在可以在虚拟环境中练习代表各种患者和身体部位,包括物理病理问题。要掌握的手势,根据每个医学专业(例如,超声波探头方向或辅助交付期间的镊子安装而变化)。因此,医学生需要Kinesthetic反馈,以便显着提高学习能力。手势模拟器需要具有可变刚度执行器的触觉设备。由于其大小,现有解决方案并不总是满足要求。与电动执行器相反,气动技术是低成本,提供现成的,提供更好的质量比。然而,它提出了两个主要缺点:非线性动力学,需要压缩空气供应。在过去十年中,我们开发了基于气动驱动(例如,出生模拟器,硬膜外针插入模拟器)的几种触觉解决方案,最近,在具有Primse实验室的合资企业中,具有用于远程超声检查的气动探针主设备。本文召回了在医学背景中开发的气动致动的文学科学方法,并用上述应用突出了突出了益处。

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