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An Intelligent Ophthalmic Regional Anesthesia Training System based on Capacitive Sensing

机译:基于电容传感的智能眼科区域麻醉训练系统

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摘要

Safe administration of regional anesthesia in the eye involves insertion of syringe needle into the intra-orbital space at the correct position and angle to avoid injury to ocular structures. A training manikin which emulates human ocular anatomy and provides feedback on the quality of anesthetic procedure would considerably help to reduce the risks involved in real life procedures. This paper presents an anatomically accurate training manikin that has been developed employing rapid prototyping techniques. The system detects and alarms the trainee when a needle is in close proximity of the ocular muscles to avoid injury. Additionally it also apprises the trainee on whether the muscles have been touched by the needle. Proximity of needle is detected by a capacitive sensing scheme. A Virtual Instrument developed measures output from capacitive sensing electrodes and presents it through an intuitive graphical user interface. The proposed touch and proximity detection schemes have been validated by tests performed on a prototype training manikin developed, thus demonstrating its use for practical purposes.
机译:眼部区域麻醉的安全管理包括将注射器针头以正确的位置和角度插入眶内空间,以避免损伤眼部结构。模拟人类眼部解剖并提供麻醉过程质量反馈的训练人体模型将大大有助于降低实际操作中的风险。本文介绍了一种利用快速原型技术开发的解剖学精确的训练人体模型。当针头靠近眼肌时,系统会检测并报警学员,以避免受伤。此外,它还告知学员肌肉是否已被针触及。通过电容传感方案检测针的接近度。开发的虚拟仪器测量电容传感电极的输出,并通过直观的图形用户界面显示。在开发的原型训练人体模型上进行的测试验证了所提出的触摸和接近检测方案,从而证明了其实用性。

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