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Toward Holographic-Guided Surgery

机译:朝着全息引导的手术

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The implementation of augmented reality (AR) in image-guided surgery (IGS) can improve surgical interventions by presenting the image data directly on the patient at the correct position and in the actual orientation. This approach can resolve the switching focus problem, which occurs in conventional IGS systems when the surgeon has to look away from the operation field to consult the image data on a 2-dimensional screen. The Microsoft HoloLens, a head-mounted AR display, was combined with an optical navigation system to create an AR-based IGS system. Experiments were performed on a phantom model to determine the accuracy of the complete system and to evaluate the effect of adding AR. The results demonstrated a mean Euclidean distance of 2.3 mm with a maximum error of 3.5 mm for the complete system. Adding AR visualization to a conventional system increased the mean error by 1.6 mm. The introduction of AR in IGS was promising. The presented system provided a solution for the switching focus problem and created a more intuitive guidance system. With a further reduction in the error and more research to optimize the visualization, many surgical applications could benefit from the advantages of AR guidance.
机译:通过在正确位置和实际取向上呈现在患者上直接在患者上呈现图像数据,在图像引导手术(IGS)中的增强现实(AR)的实施可以改善手术干预。这种方法可以解决切换焦点问题,当外科医生必须远离操作字段时,在传统的IGS系统中发生在传统的IGS系统中,以在二维屏幕上咨询图像数据。 Microsoft Hololens是一个头部安装的AR显示器,与光学导航系统相结合,以创建基于AR的IGS系统。对幻像模型进行实验,以确定完整系统的准确性,并评估添加AR的效果。结果表明,平均欧几里德距离为2.3毫米,最大误差为3.5毫米3.5毫米。将AR可视化添加到传统系统增加了1.6毫米的平均误差。 IGS中的AR引入很有希望。呈现的系统为切换焦点问题提供了一种解决方案,并创建了更直观的引导系统。通过进一步减少误差和更多的研究来优化可视化,许多手术应用可以从AR指导的优势中受益。

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