University Hospital Balgrist, University of Zurich, Forchstrasse 340, 8008, Zurich, Switzerland.
Department of Orthopaedic Surgery and Traumatology, Kantonsspital Winterthur, Brauerstrasse 15, 8401, Winterthur, Switzerland.
Arch Orthop Trauma Surg. 2021 Dec;141(12):2227-2233. doi: 10.1007/s00402-021-04204-4. Epub 2021 Oct 26.
Many of the functional complications that arise after total knee arthroplasty (TKA) are caused by a non-optimal balance of the knee after surgery. Over the past 20 years, technology has been used in the Operating Room (OR) to help improve precision and balance. The results of Computer-Assisted Surgery (CAS) and robotic systems show improved accuracy regarding implant positioning but a relatively small improvement in patient-reported outcomes and implant survival compared to conventional TKA. Recently, Augmented Reality (AR) has been proposed as a technology that could improve accuracy in orthopaedic surgery, providing a more efficient and cost-effective solution.
This article describes a novel AR-based surgical guidance system that measures intra-operatively the effect of prosthesis alignment and positioning on soft tissue balance. The system is integrated in a pair of smart glasses and two small sensors and displays surgical targets directly in the field of view of the surgeon.
The system has been used in a limited number of cases. While the preliminary experience has been positive, clinical research is ongoing to confirm to confirm the performance of the system and the impact on clinical outcomes.
Augmented Reality can be a valuable tool to improve accuracy in TKA. The use of smart glasses and integrated sensors improves the efficiency of the procedure, particularly when coupled with single-use instrumentation. A novel protocol for soft tissue assessment allows for a 3-dimensional evaluation of the ligaments and a better measurement of the effect of tibial rotation.
许多全膝关节置换术(TKA)后出现的功能并发症是由于手术后膝关节的平衡不理想引起的。在过去的 20 年中,手术室(OR)中的技术已被用于帮助提高精度和平衡。计算机辅助手术(CAS)和机器人系统的结果表明,在植入物定位方面的准确性有所提高,但与传统 TKA 相比,患者报告的结果和植入物存活率的提高相对较小。最近,增强现实(AR)被提出作为一种可以提高骨科手术准确性的技术,提供更高效和更具成本效益的解决方案。
本文介绍了一种基于 AR 的新型手术引导系统,该系统可在术中测量假体对线和定位对软组织平衡的影响。该系统集成在一副智能眼镜和两个小传感器中,并直接在外科医生的视野中显示手术目标。
该系统已在少数情况下使用。虽然初步经验是积极的,但正在进行临床研究以确认系统的性能及其对临床结果的影响。
增强现实技术可以成为提高 TKA 准确性的有价值工具。智能眼镜和集成传感器的使用提高了手术的效率,特别是在与一次性器械结合使用时。一种新的软组织评估方案允许对韧带进行 3 维评估,并更好地测量胫骨旋转的影响。