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使用NextAR系统整合运动学对线和韧带实时延长的全膝关节置换术新手术技术

Novel Surgical Technique for Total Knee Arthroplasty Integrating Kinematic Alignment and Real-Time Elongation of the Ligaments Using the NextAR System.

作者信息

Sabatini Luigi, Ascani Daniele, Vezza Daniele, Massè Alessandro, Cacciola Giorgio

机构信息

Robotic and Minimally Invasive Orthopaedic Center, Humanitas "Gradenigo", 10153 Turin, Italy.

Medacta International, 6874 Castel San Pietro, Switzerland.

出版信息

J Pers Med. 2024 Jul 26;14(8):794. doi: 10.3390/jpm14080794.

Abstract

This study introduces an innovative surgical approach for total knee arthroplasty (TKA) that combines kinematic alignment (KA) principles with real-time elongation of the knee ligaments through the range of motion, using augmented reality (AR). The novelty of the surgical technique lies in the possibility of enhancing the decision-making process to perform the cut on the tibia as for the KA caliper technique developed by Dr. Stephen Howell. The NextAR is a CT-based AR system that offers the possibility of performing three-dimensional surgical preoperative planning and an accurate execution in the surgical room through single-use infrared sensors, smart glasses, and a control unit. During the preoperative planning, the soft tissue is not considered and only the alignment based on bony reference is ensured. Thanks to the possibility of measuring in real time the elongation of the knee collateral lateral ligaments, the system assists the surgeon in optimizing the cut on the tibia after an accurate resurfacing of the femur as described in the KA surgical technique. The implant used in this novel approach is a medial pivot design (Medacta GMK Sphere) that allows the restoration of the physiological behavior of the software tissue and natural knee kinematics. In conclusion, this novel technique offers a promising approach to TKA, allowing personalized treatment tailored to each patient's unique anatomy and soft tissue characteristics. The integration of KA and real-time soft tissue analysis provided by NextAR enhances surgical precision and outcomes, potentially improving patient satisfaction and functional results.

摘要

本研究介绍了一种全膝关节置换术(TKA)的创新手术方法,该方法将运动学对线(KA)原则与通过运动范围实时延长膝关节韧带相结合,利用增强现实(AR)技术。该手术技术的新颖之处在于,对于斯蒂芬·豪厄尔博士开发的KA卡尺技术而言,有可能改进在胫骨上进行截骨的决策过程。NextAR是一种基于CT的AR系统,它通过一次性红外传感器、智能眼镜和控制单元,提供了进行三维手术术前规划并在手术室中精确执行的可能性。在术前规划期间,不考虑软组织,仅确保基于骨性参考的对线。由于能够实时测量膝关节外侧副韧带的伸长,该系统可协助外科医生在按照KA手术技术对股骨进行精确表面置换后,优化胫骨截骨。这种新方法中使用的植入物是一种内侧旋转平台设计(Medacta GMK Sphere),可恢复软组织的生理行为和自然膝关节运动学。总之,这种新技术为TKA提供了一种有前景的方法,允许根据每个患者独特的解剖结构和软组织特征进行个性化治疗。NextAR提供的KA与实时软组织分析的整合提高了手术精度和效果,有可能提高患者满意度和功能结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/460e/11355594/5ded1c3adb85/jpm-14-00794-g001.jpg

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