Batailler Cécile, Swan John, Sappey Marinier Elliot, Servien Elvire, Lustig Sébastien
Department of Orthopedic Surgery and Sport Medicine, Croix-Rousse Hospital, 69004 Lyon, France.
Service de Chirurgie Orthopédique, Université de Lyon, Université Claude Bernard Lyon 1, LBMC UMR_T9406, 69003 Lyon, France.
J Clin Med. 2020 Dec 25;10(1):47. doi: 10.3390/jcm10010047.
Total knee arthroplasty (TKA) is an effective treatment for severe osteoarthritis. Despite good survival rates, up to 20% of TKA patients remain dissatisfied. Recently, promising new technologies have been developed in knee arthroplasty, and could improve the functional outcomes. The aim of this paper was to present some new technologies in TKA, their current concepts, their advantages, and limitations. The patient-specific instrumentations can allow an improvement of implant positioning and limb alignment, but no difference is found for functional outcomes. The customized implants are conceived to reproduce the native knee anatomy and to reproduce its biomechanics. The sensors have to aim to give objective data on ligaments balancing during TKA. Few studies are published on the results at mid-term of these two devices currently. The accelerometers are smart tools developed to improve the TKA alignment. Their benefits remain yet controversial. The robotic-assisted systems allow an accurate and reproducible bone preparation due to a robotic interface, with a 3D surgical planning, based on preoperative 3D imaging or not. This promising system, nevertheless, has some limits. The new technologies in TKA are very attractive and have constantly evolved. Nevertheless, some limitations persist and could be improved by artificial intelligence and predictive modeling.
全膝关节置换术(TKA)是治疗重度骨关节炎的有效方法。尽管生存率良好,但仍有高达20%的TKA患者不满意。最近,膝关节置换术中开发了一些有前景的新技术,有望改善功能结果。本文旨在介绍TKA中的一些新技术、它们当前的概念、优点和局限性。患者特异性器械可改善植入物定位和肢体对线,但在功能结果方面未发现差异。定制植入物旨在重现天然膝关节解剖结构并再现其生物力学。传感器旨在提供TKA期间韧带平衡的客观数据。目前关于这两种装置中期结果的研究很少。加速度计是为改善TKA对线而开发的智能工具。它们的益处仍存在争议。机器人辅助系统由于机器人接口,基于术前三维成像或不基于术前三维成像,可进行准确且可重复的骨准备,并进行三维手术规划。然而,这个有前景的系统也有一些局限性。TKA中的新技术非常有吸引力且不断发展。然而,一些局限性仍然存在,可通过人工智能和预测模型加以改进。