胫骨高位截骨术:技术与生物力学综述。

High Tibial Osteotomy: Review of Techniques and Biomechanics.

机构信息

State Key Laboratory for Manufacturing System Engineering, School of Mechanical Engineering, Xi'an Jiaotong University, 710054 Xi'an, Shaanxi, China.

Key Laboratory of Road Construction Technology and Equipment of MOE, Chang'an University, 710064 Xi'an, Shaanxi, China.

出版信息

J Healthc Eng. 2019 May 2;2019:8363128. doi: 10.1155/2019/8363128. eCollection 2019.

Abstract

High tibial osteotomy becomes increasingly important in the treatment of cartilage damage or osteoarthritis of the medial compartment with concurrent varus deformity. HTO produces a postoperative valgus limb alignment with shifting the load-bearing axis of the lower limb laterally. However, maximizing procedural success and postoperative knee function still possess many difficulties. The key to improve the postoperative satisfaction and long-term survival is the understanding of the vital biomechanics of HTO in essence. This review article discussed the alignment principles, surgical technique, and fixation plate of HTO as well as the postoperative gait, musculoskeletal dynamics, and contact mechanics of the knee joint. We aimed to highlight the recent findings and progresses on the biomechanics of HTO. The biomechanical studies on HTO are still insufficient in the areas of gait analysis, joint kinematics, and joint contact mechanics. Combining musculoskeletal dynamics modelling and finite element analysis will help comprehensively understand in vivo patient-specific biomechanics after HTO.

摘要

高位胫骨截骨术在治疗伴有内翻畸形的软骨损伤或内侧间室骨关节炎方面变得越来越重要。HTO 术后可使下肢负重轴线向外移位,产生外翻肢体对线。然而,最大限度地提高手术成功率和术后膝关节功能仍然存在许多困难。提高术后满意度和长期生存率的关键是从本质上理解 HTO 的重要生物力学。本文综述了 HTO 的对线原则、手术技术、固定钢板以及术后步态、肌肉骨骼动力学和膝关节接触力学。我们旨在强调 HTO 生物力学的最新发现和进展。在步态分析、关节运动学和关节接触力学方面,HTO 的生物力学研究仍然不足。结合肌肉骨骼动力学建模和有限元分析将有助于全面了解 HTO 后患者特定的体内生物力学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a5b/6525872/c2c0022c59cf/JHE2019-8363128.001.jpg

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