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Cervical disc prosthesis versus arthrodesis using one-level, hybrid and two-level constructs: an in vitro investigation

机译:颈椎间盘假体与关节固定术的比较,采用一级,混合和二级构造:体外研究

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IntroductionThe purpose of this experimental study was to analyse cervical spine kinematics after 1-level and 2-level total disc replacement (TDR) and compare them with those after anterior cervical arthrodesis (ACA) and hybrid construct. Kinematics and intradiscal pressures were also investigated at adjacent levels.MethodsTwelve human cadaveric spines were evaluated in different testing conditions: intact, 1 and 2-level TDR (Discocerv?, Scient’x/Alphatec), 1 and 2-level ACA, and hybrid construct. All tests were performed under load control protocol by applying pure moments loading of 2?N?m in flexion/extension (FE), axial rotation (AR) and lateral bending (LB).ResultsReduction of ROM after 1-level TDR was only significant in LB. Implantation of additional TDR resulted in significant decrease of ROM in AR at index level. A second TDR did not affect kinematics of the previously implanted TDR in FE, AR and LB. One and 2-level arthrodesis caused significant decrease of ROM in FE, AR and LB at the index levels. No significant changes in ROM were observed at adjacent levels except for 1-level arthrodesis in FE and hybrid construct in AR. When analysis was done under the displacement-control concept, we found that 1 and 2-constructs increased adjacent levels contribution to global ROMC3–C7 during FE and that IDP at superior adjacent level increased by a factor of 6.7 and 2.3 for 2-level arthrodesis and hybrid constructs, respectively.ConclusionAlthough 1- and 2-level TDR restored only partially native kinematics of the cervical spine, these constructs generated better biomechanical conditions than arthrodesis at adjacent levels limiting contribution of these segments to global ROM and reducing the amount of their internal stresses...
机译:简介本实验研究的目的是分析1级和2级全椎间盘置换(TDR)后的颈椎运动学,并将其与颈前路关节固定术(ACA)和混合构造后的颈椎运动学进行比较。方法还研究了相邻水平的运动学和椎间盘内压力。方法在不同的测试条件下评估了十二个人类尸体脊椎:完整,1级和2级TDR(Discocerv?,Scient'x / Alphatec),1级和2级ACA以及混合构造。所有测试均在载荷控制方案下通过施加2?N?m的纯弯矩,弯曲/延伸(FE),轴向旋转(AR)和横向弯曲(LB)载荷进行。结果1级TDR后ROM的减少仅是有意义的在LB。植入额外的TDR导致AR的ROM在指标水平上显着降低。第二个TDR不会影响FE,AR和LB中先前植入的TDR的运动学。一和二级关节置换术在指数水平导致FE,AR和LB中ROM显着降低。除了FE中的1级关节固定术和AR中的杂合构建体之外,在相邻水平上ROM均未观察到明显变化。当在位移控制概念下进行分析时,我们发现在FE期间1和2结构增加了对整体ROMC3–C7的邻近水平贡献,而在较高邻近水平上的IDP对于2水平关节固定术增加了6.7和2.3倍结论尽管1级和2级TDR仅部分恢复了颈椎的自然运动学,但这些结构在相邻水平上产生了比关节固定术更好的生物力学条件,从而限制了这些节段对整体ROM的贡献并减少了其内部数量强调...

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