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Augmented Reality Guidance System for Peripheral Nerve Blocks

机译:周围神经块的增强现实制导系统

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Peripheral nerve block treatments are ubiquitous in hospitals and pain clinics worldwide. State of the art techniques use ultrasound (US) guidance and/or electrical stimulation to verify needle tip location. However, problems such as needle-US beam alignment, poor echogenicity of block needles and US beam thickness can make it difficult for the anesthetist to know the exact needle tip location. Inaccurate therapy delivery raises obvious safety and efficacy issues. We have developed and evaluated a needle guidance system that makes use of a magnetic tracking system (MTS) to provide an augmented reality (AR) guidance platform to accurately localize the needle tip as well as its projected trajectory. Five anesthetists and five novices performed simulated nerve block deliveries in a polyvinyl alcohol phantom to compare needle guidance under US alone to US placed in our AR environment. Our phantom study demonstrated a decrease in targeting attempts, decrease in contacting of critical structures, and an increase in accuracy of 0.68 mm compared to 1.34mm RMS in US guidance alone. Currently, the MTS uses 18 and 21 gauge hypodermic needles with a 5 degree of freedom sensor located at the needle tip. These needles can only be sterilized using an ethylene oxide process. In the interest of providing clinicians with a simple and efficient guidance system, we also evaluated attaching the sensor at the needle hub as a simple clip-on device. To do this, we simultaneously performed a needle bending study to assess the reliability of a hub-based sensor.
机译:在世界各地的医院和疼痛诊所中,周围神经阻滞治疗无处不在。现有技术使用超声(US)引导和/或电刺激来验证针尖位置。但是,诸如针-US束对准,块状针的回声性差和US-束厚度之类的问题可能会使麻醉师难以知道确切的针尖位置。不正确的治疗方式会引起明显的安全性和有效性问题。我们已经开发并评估了一种针头引导系统,该系统利用磁跟踪系统(MTS)提供了增强现实(AR)引导平台,可以准确地定位针尖及其投影轨迹。五名麻醉师和五名新手在聚乙烯醇幻象中进行了模拟的神经阻滞传递,以比较仅在US情况下的针引导与在我们AR环境中放置的US引导。我们的幻像研究表明,与仅在美国指导下的1.34mm RMS相比,瞄准尝试的减少,与关键结构的接触的减少以及0.68 mm的准确性的提高。当前,MTS使用18号和21号皮下注射针头,针头处有5个自由度传感器。这些针只能使用环氧乙烷工艺进行灭菌。为了给临床医生提供一个简单而有效的引导系统,我们还评估了将传感器作为一个简单的夹钳装置安装在针头上的方法。为此,我们同时进行了针头弯曲研究,以评估基于轮毂的传感器的可靠性。

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