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基于图像识别的无跟踪增强现实导航系统在一系列实体模型试验中的应用。

Application of image recognition-based tracker-less augmented reality navigation system in a series of sawbone trials.

作者信息

Chui Elvis Chun-Sing, Mak Kyle Ka-Kwan, Ng Randy Hin-Ting, Fung Ericsson Chun-Hai, Mak Harold Hei-Ka, Chan Mei-Shuen, Zhao Wei, Su Xiuyun, Zhang Jin, Xu Jianglong, Sang Hongxun, Pei Guoxian, Ong Michael Tim-Yun, Cheung Wing-Hoi, Law Sheung-Wai, Wong Ronald Man Yeung, Yung Patrick Shu-Hang

机构信息

Department of Orthopaedics and Traumatology, The Chinese University of Hong Kong, Shatin, Hong Kong SAR, China.

Department of Orthopaedics, Southern University of Science and Technology Hospital, Shenzhen, 518055, China.

出版信息

Arthroplasty. 2024 Aug 2;6(1):39. doi: 10.1186/s42836-024-00263-1.

Abstract

BACKGROUND

This study introduced an Augmented Reality (AR) navigation system to address limitations in conventional high tibial osteotomy (HTO). The objective was to enhance precision and efficiency in HTO procedures, overcoming challenges such as inconsistent postoperative alignment and potential neurovascular damage.

METHODS

The AR-MR (Mixed Reality) navigation system, comprising HoloLens, Unity Engine, and Vuforia software, was employed for pre-clinical trials using tibial sawbone models. CT images generated 3D anatomical models, projected via HoloLens, allowing surgeons to interact through intuitive hand gestures. The critical procedure of target tracking, essential for aligning virtual and real objects, was facilitated by Vuforia's feature detection algorithm.

RESULTS

In trials, the AR-MR system demonstrated significant reductions in both preoperative planning and intraoperative times compared to conventional navigation and metal 3D-printed surgical guides. The AR system, while exhibiting lower accuracy, exhibited efficiency, making it a promising option for HTO procedures. The preoperative planning time for the AR system was notably shorter (4 min) compared to conventional navigation (30.5 min) and metal guides (75.5 min). Intraoperative time for AR lasted 8.5 min, considerably faster than that of conventional navigation (31.5 min) and metal guides (10.5 min).

CONCLUSIONS

The AR navigation system presents a transformative approach to HTO, offering a trade-off between accuracy and efficiency. Ongoing improvements, such as the incorporation of two-stage registration and pointing devices, could further enhance precision. While the system may be less accurate, its efficiency renders it a potential breakthrough in orthopedic surgery, particularly for reducing unnecessary harm and streamlining surgical procedures.

摘要

背景

本研究引入了一种增强现实(AR)导航系统,以解决传统高位胫骨截骨术(HTO)的局限性。目的是提高HTO手术的精准度和效率,克服诸如术后对线不一致和潜在神经血管损伤等挑战。

方法

使用包含HoloLens、Unity引擎和Vuforia软件的AR - MR(混合现实)导航系统,对胫骨锯骨模型进行临床前试验。CT图像生成3D解剖模型,通过HoloLens进行投影,使外科医生能够通过直观的手势进行交互。Vuforia的特征检测算法有助于目标跟踪这一对虚拟与真实物体对齐至关重要的关键过程。

结果

在试验中,与传统导航和金属3D打印手术导板相比,AR - MR系统在术前规划和手术时间方面均显著缩短。AR系统虽然精度较低,但展现出了效率,使其成为HTO手术的一个有前景的选择。与传统导航(30.5分钟)和金属导板(75.5分钟)相比,AR系统的术前规划时间明显更短(4分钟)。AR系统的手术时间为8.5分钟,比传统导航(31.5分钟)和金属导板(10.5分钟)快得多。

结论

AR导航系统为HTO提供了一种变革性方法,在准确性和效率之间进行了权衡。持续改进,如纳入两阶段配准和指示设备,可进一步提高精度。虽然该系统可能精度较低,但其效率使其成为骨科手术中的一个潜在突破,特别是在减少不必要伤害和简化手术流程方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/08ed/11295607/83ebddabbd29/42836_2024_263_Fig1_HTML.jpg

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