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Local and global subaxial cervical spine biomechanics after single-level fusion or cervical arthroplasty

机译:单层融合或颈椎置换术后局部和全局颈椎以下的生物力学

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An experimental in vitro biomechanical study was conducted on human cadaveric spines to evaluate the motion segment (C4–C5) and global subaxial cervical spine motion after placement of a cervical arthroplasty device (Altia TDI™,Amedica, Salt Lake City, UT) as compared to both the intact spine and a single-level fusion. Six specimens (C2–C7) were tested in flexion/extension, lateral bending, and axial rotation under a ± 1.5 Nm moment with a 100 N axial follower load. Following the intact spine was tested; the cervical arthroplasty device was implanted at C4–C5 and tested. Then, a fusion using lateral mass fixation and an anterior plate was simulated and tested. Stiffness and range of motion (ROM) data were calculated. The ROM of the C4–C5 motion segment with the arthroplasty device was similar to that of the intact spine in flexion/extension and slightly less in lateral bending and rotation, while the fusion construct allowed significantly less motion in all directions. The fusion construct caused broader effects of increasing motion in the remaining segments of the subaxial cervical spine, whereas the TDI did not alter the adjacent and remote motion segments. The fusion construct was also far stiffer in all motion planes than the intact motion segment and the TDI, while the artificial disc treated level was slightly stiffer than the intact segment. The Altia TDI allows for a magnitude of motion similar to that of the intact spine at the treated and adjacent levels in the in vitro setting.
机译:对人体尸体脊椎进行了一项体外生物力学实验研究,以评估放置颈椎关节置换术装置(Altia TDI™,Amedica,盐湖城,犹他州)后的运动节段(C4-C5)和颈椎整体下轴运动完整的脊柱和单层融合。在100 N的轴向从动载荷下,在±1.5 Nm的力矩下,测试了六个试样(C2-C7)的弯曲/延伸,横向弯曲和轴向旋转。继完整脊柱后进行测试;颈椎关节置换装置植入C4–C5并进行测试。然后,模拟和测试了使用侧块固定和前板的融合。计算了刚度和运动范围(ROM)数据。带有关节置换装置的C4–C5运动节段的ROM在弯曲/伸展方面与完整脊柱的ROM类似,而在横向弯曲和旋转方面则较小,而融合结构允许在所有方向上的运动明显较少。融合结构在子轴颈椎的其余部分引起运动增加的更广泛影响,而TDI并未改变相邻和远程运动部分。融合构造在所有运动平面上都比完整运动段和TDI坚硬得多,而经人工椎间盘处理的水平比完整段稍强。 Altia TDI允许在体外治疗和邻近水平上的运动幅度与完整脊柱相似。

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