首页> 外文会议>Haptics Symposium (HAPTICS), 2012 IEEE >Design and validation of an epidural needle insertion simulator with haptic feedback for training resident anaesthesiologists
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Design and validation of an epidural needle insertion simulator with haptic feedback for training resident anaesthesiologists

机译:具有触觉反馈的硬膜外针头插入模拟器的设计和验证,用于培训住院麻醉师

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Epidural needle insertion is a complex procedure that requires training of residents' psychomotor skills using simulators, alternative to training on cadavers and real patients. Haptic feedback is a key feature in the development of such simulators. Its three important aspects are: i) to provide a realistic simulation, ii) to objectively measure the performance of users, and iii) to classify the users. A high-fidelity simulator is often considered to be the best choice to produce a realistic simulation. However, the trade-off between fidelity of the simulator to its cost is still a key issue and it depends on the objective of simulation. One way to address this issue is to simulate only the important (clinically) haptic cues. In this paper a low-fidelity custom built two degree-of-freedom (1DOF for needle insertion and 1DOF for needle orientation along the midline) haptic interface has been developed and clinically validated by expert/resident anaesthesiologists. The proposed haptic interface provides high translational force by means of a motor and rotational torque by means of a brake. The simulator simulates needle-tissue and needle-bone interaction forces. It has a graphical user interface that displays a cross-sectional image (midline) of the patient's lumbar anatomy. It also incorporates simulation of different virtual patients. The initial face and construct validity tests show promising results for further investigation.
机译:硬膜外针头插入是一个复杂的过程,需要使用模拟器来训练居民的心理运动技能,而不是对尸体和真实患者进行训练。触觉反馈是此类模拟器开发中的关键功能。它的三个重要方面是:i)提供逼真的模拟,ii)客观地衡量用户的表现,以及iii)对用户进行分类。高保真模拟器通常被认为是进行真实模拟的最佳选择。但是,仿真器的保真度与成本之间的权衡仍然是关键问题,它取决于仿真的目标。解决此问题的一种方法是仅模拟重要的(临床上)触觉提示。在本文中,已经开发了一种低保真度定制的两个自由度(用于插入针头的1DOF和用于沿中线的针头取向的1DOF)触觉界面,并已由专家/住院麻醉师进行临床验证。提出的触觉接口通过电动机提供高平移力,并通过制动器提供旋转扭矩。该模拟器模拟针-组织和针-骨的相互作用力。它具有图形用户界面,可显示患者腰部解剖结构的横截面图像(中线)。它还包含了对不同虚拟患者的模拟。最初的面孔和构造效度测试显示出可喜的结果,有待进一步研究。

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