Lazennec Jean Yves
Department of Orthopaedic and Trauma Surgery, Pitié-Salpêtrière Hospital, Assistance Publique-Hôpitaux de Paris, Paris F-75013, France.
World J Orthop. 2020 Aug 18;11(8):345-356. doi: 10.5312/wjo.v11.i8.345.
The ideal lumbar and cervical discs should provide six degrees of freedom and tri-planar (three-dimensional) motion. Although all artificial discs are intended to achieve the same goals, there is considerable heterogeneity in the design of lumbar and cervical implants. The "second generation total disc replacements" are non-articulating viscoelastic implants aiming at the reconstruction of physiologic levels of shock absorption and flexural stiffness. This review aims to give an overview of the available implants detailing the concepts and the functional results experimentally and clinically. These monobloc prostheses raise new challenges concerning the choice of materials for the constitution of the viscoelastic cushion, the connection between the components of the internal structure and the metal endplates and even the bone anchoring mode. New objectives concerning the quality of movement and mobility control must be defined.
理想的腰椎和颈椎椎间盘应提供六个自由度和三平面(三维)运动。尽管所有人工椎间盘都旨在实现相同的目标,但腰椎和颈椎植入物的设计存在很大差异。“第二代全椎间盘置换术”是旨在重建生理水平的减震和弯曲刚度的非关节式粘弹性植入物。本综述旨在概述现有的植入物,详细介绍实验和临床方面的概念及功能结果。这些整体式假体在构成粘弹性垫的材料选择、内部结构组件与金属终板之间的连接乃至骨锚固方式方面提出了新的挑战。必须确定有关运动质量和活动控制的新目标。