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后路腰椎间盘置换术后尸体腰椎节段运动学的生物力学评估:ProDisc-L 假体的研究

Biomechanical evaluation of the kinematics of the cadaver lumbar spine following disc replacement with the ProDisc-L prosthesis.

机构信息

Department of Bioengineering, University of Toledo, College of Engineering, Toledo, OH, USA.

出版信息

Spine (Phila Pa 1976). 2010 Jan 1;35(1):26-31. doi: 10.1097/BRS.0b013e3181c4eb9a.

Abstract

STUDY DESIGN

Biomechanical study of the ProDisc-L in a cadaveric model under pure moment loading. OBJECTIVE.: To determine the kinematic properties of a lumbar spine motion segment and the adjacent level following ProDisc-L disc replacement in the cadaveric spine.

SUMMARY OF BACKGROUND DATA

Total disc replacement is intended to preserve native motion, in an attempt to prevent accelerated adjacent segment degeneration. The quality and quantity of the motion following TDR may have important consequences on the facet joints of the same motion segment, as well as the motion at the prosthetic component interface.

METHODS

Ten cadaveric lumbar spines were radiographed (L3-L5) and tested under pure moments (+10 Nm to -10 Nm) with an applied follower load (200 N). Load-deformation was tested in flexion/extension, lateral bending (LB), and axial rotation (AR). Range of Motion (ROM) data were recorded. Superior adjacent disc pressure (L3-L4) was measured using subminiature pressure transducers. The L4-L5 disc was subsequently instrumented with a ProDisc-L. Radiographs and biomechanical tests were repeated.

RESULTS

Disc replacement significantly reduced extension (ROM 2.2 degrees +/- 0.5 degrees before and 1.2 degrees +/- 0.7 degrees after instrumentation) (P = 0.001), but not flexion (ROM 5.6 degrees +/- 3.1 degrees before and 6.2 degrees +/- 1.2 degrees after) (P = 0.34). Combined flexion/extension motion was marginally reduced (P = 0.517). LB ROM (7.4 degrees +/- 2.0 degrees ) was marginally reduced (P = 0.072) following instrumentation (6.2 degrees +/- 2.5 degrees ), while ROM in AR (3.4 degrees +/- 1.1 degrees ) was significantly increased (4.4 degrees +/- 1.2 degrees ) (P = 0.001). Superior adjacent segment ROM was preserved.No significant differences in disc pressure were observed at the adjacent motion segment before (199 kPa at maximum flexion and 171 kPa at maximum extension) or after disc replacement (252 kPa and 208 kPa, respectively).

CONCLUSION

In cadaveric spines, ROM of operated and adjacent motion segments was preserved following ProDisc-L insertion. Excision of the anterior anulus may increase laxity, which is taken up by the restoration of disc height and lordosis, at the cost of a moderate loss of flexion/extension motion. Adjacent segment kinematics were unaffected following TDR.

摘要

研究设计

在纯力矩加载下尸体模型中 ProDisc-L 的生物力学研究。

目的

确定腰椎运动节段和相邻节段在尸体脊柱中 ProDisc-L 椎间盘置换后的运动学特性。

背景资料总结

全椎间盘置换旨在保留原生运动,试图防止加速相邻节段退变。TDR 后的运动质量和数量可能对同一运动节段的关节突关节以及假体组件界面的运动有重要影响。

方法

10 具尸体腰椎(L3-L5)进行放射摄影,并在纯力矩(+10 Nm 至-10 Nm)下施加跟随力(200 N)进行测试。屈伸、侧屈(LB)和轴向旋转(AR)测试加载变形。记录活动范围(ROM)数据。使用微型压力传感器测量上相邻椎间盘压力(L3-L4)。随后在 L4-L5 椎间盘上安装 ProDisc-L。重复拍摄 X 光片和进行生物力学测试。

结果

椎间盘置换显著降低伸展(ROM 置换前 2.2 度 +/- 0.5 度,置换后 1.2 度 +/- 0.7 度)(P = 0.001),但不降低屈曲(ROM 置换前 5.6 度 +/- 3.1 度,置换后 6.2 度 +/- 1.2 度)(P = 0.34)。屈伸运动的综合运动幅度略有降低(P = 0.517)。侧屈运动范围(7.4 度 +/- 2.0 度)置换后(6.2 度 +/- 2.5 度)略有降低(P = 0.072),而旋转运动范围(3.4 度 +/- 1.1 度)显著增加(4.4 度 +/- 1.2 度)(P = 0.001)。上相邻节段运动幅度保持不变。在前(最大屈曲时 199 kPa,最大伸展时 171 kPa)或置换后(分别为 252 kPa 和 208 kPa)相邻运动节段,椎间盘压力无明显差异。

结论

在尸体脊柱中,ProDisc-L 插入后,手术和相邻运动节段的 ROM 得以保留。前环切除可能会增加松弛度,这是以丧失适度屈伸运动为代价的,通过恢复椎间盘高度和前凸来实现。TDR 后相邻节段运动学不受影响。

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