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A novel augmented reality visualization in jaw surgery: enhanced ICP based modified rotation invariant and modified correntropy

机译:颚式手术中的一种新型增强现实可视化:增强的ICP基于ICP改进的旋转不变和改进的控制

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摘要

Image registration, accuracy, processing time and occlusions are the main limitations of augmented reality (AR) based jaw surgery. Therefore, the main aim of this paper is to reduce the registration error, which will help in improving the accuracy and reducing the processing time. Also, it aims to remove outliers and remove the registration outcomes trapped in local minima to improve the alignment problems and remove the occlusion caused by surgery instrument. The enhanced Iterative Closest Point (ICP) algorithm with rotation invariant and correntropy was used for the proposed system. Markerless image registration technique was used for AR-based jaw surgery. The problem of occlusion caused by surgical tools and blood is solved by using stereo based tracing with occlusion handling techniques. This research reduced alignment error 0.59 mm similar to 0.62 mm against 0.69 similar to 0.72 mm of state-of-the-art solution. The processing time of video frames was enhanced to 11.9 similar to 12.8 fps against 8 similar to 9.15 fps in state-of-the-art solution. This paper is focused on providing fast and accurate AR-based system for jaw surgery. The proposed system helps in improving the AR visualization during jaw surgery. The combination of methods and technology helped in improving AR visualization for jaw surgery and to overcome the failure caused by a large rotation angle and provides an initial parameter for better image registration. It also enhances performance by removing outliers and noises. The pose refinement stage provides a better result in terms of processing time and accuracy.
机译:图像配准,准确性,处理时间和闭塞是基于增强现实(AR)的颚式手术的主要限制。因此,本文的主要目的是降低注册误差,这将有助于提高准确性和减少处理时间。此外,它旨在删除异常值并删除捕获在局部最小值的注册结果,以改善对准问题并去除手术器械引起的闭塞。具有旋转不变和校正的增强迭代最近点(ICP)算法用于所提出的系统。无标记图像配准技术用于基于Ar的颚式手术。通过使用闭塞处理技术的立体声跟踪来解决由外科手术工具和血液引起的闭塞问题。该研究将对准误差减小0.59毫米,与0.62毫米相似,与0.69毫米类似于0.72毫米的最先进的解决方案。视频帧的处理时间增强至11.9类似于在最先进的解决方案中与9.15 FPS相似的12.8fps。本文专注于提供快速准确的AR基下颌手术系统。所提出的系统有助于改善颌手术期间的AR可视化。方法和技术的组合有助于改善颌手术的AR可视化,并克服由大旋转角度引起的故障,并提供更好的图像配准的初始参数。它还通过删除异常值和噪音来增强性能。姿势细化阶段在处理时间和准确性方面提供了更好的结果。

著录项

  • 来源
    《Multimedia Tools and Applications》 |2021年第16期|23923-23947|共25页
  • 作者单位

    Charles Sturt Univ CSU Sch Comp & Math Wagga Wagga NSW Australia;

    Charles Sturt Univ CSU Sch Comp & Math Wagga Wagga NSW Australia|Univ Western Sydney UWS Sch Comp Data & Math Sci Sydney NSW Australia|Southern Cross Univ SCU Sch Informat Technol Sydney NSW Australia|Crown Inst Higher Educ Informat Technol Dept Sydney NSW Australia|Asia Pacific Int Coll APIC Informat Technol Dept Sydney NSW Australia;

    Charles Sturt Univ CSU Sch Comp & Math Wagga Wagga NSW Australia;

    Charles Sturt Univ CSU Sch Comp & Math Wagga Wagga NSW Australia|Univ Western Sydney UWS Sch Comp Data & Math Sci Sydney NSW Australia|Southern Cross Univ SCU Sch Informat Technol Sydney NSW Australia|Asia Pacific Int Coll APIC Informat Technol Dept Sydney NSW Australia;

    Cent Coast Area Hlth Dept Oral & Maxillofacial Serv Gosford Australia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Augmented reality; Jaw surgery; Image registration; Correntropy; Iterative closest point (ICP); Global reference point; Rotation invariant;

    机译:增强现实;颌手术;图像登记;守则;迭代最近的点(ICP);全局参考点;旋转不变;
  • 入库时间 2022-08-19 02:46:41

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