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随着颈椎矢状位排列的改变,颈椎前路植入物的负荷分担情况发生改变。

Alteration of load sharing of anterior cervical implants with change in cervical sagittal alignment.

作者信息

Wang Mei, Gourab Krishnaj, McGrady Linda M, Rao Raj D

机构信息

Department of Orthopaedic Surgery, Medical College of Wisconsin, Milwaukee, WI 53226, United States.

出版信息

Med Eng Phys. 2008 Jul;30(6):768-73. doi: 10.1016/j.medengphy.2007.10.004. Epub 2007 Nov 26.

Abstract

Anterior cervical discectomy and fusion (ACDF) is often supplemented with the application of an anterior plate to improve the stability of the fusion segment. While plate design has been shown to influence stress shielding of the graft, little is known about how the kyphotic alignment of a fused cervical segment affects the load sharing between the anterior plate and the osteoligamentous structures of the spine. The aim of this study was to characterize load sharing between an anterior plate and the osteoligamentous structures of the cervical motion segments in kyphotic versus normal lordotic alignment following single-level ACDF using fresh ovine cervical spines (C3-C6). The loading protocol involved preloading the spine with a 20 N compressive force and applying quasi-static moments (up to 2.1 Nm) in the sagittal plane to simulate flexion and extension. Stiffness of the fusion segment was measured from the moment-rotation plot. Normal lordotic alignment was replicated by insertion of a fibular allograft 2 mm taller than the interbody space. Kyphotic alignment was simulated by removing the graft and reapplying a shorter anterior cervical plate. The average segmental sagittal angulation at C4-C5 was 5.2+/-1.6 degrees of lordosis for the normal lordotic group and 6.8+/-2.3 degrees of kyphosis for the kyphotic group. With flexion, the plate shared 52.8% of the applied load in the normal lordotic group, and 70.1% in the kyphotic group (p<0.03). In extension, the amount of load-share by the plate in the normal lordotic group was comparable to that of the kyphotic group (52.7% vs. 40.7%, p=0.16). This study shows that kyphotic alignment of the cervical fusion segment increases the load sharing of the anterior plate under flexion loading.

摘要

颈椎前路椎间盘切除融合术(ACDF)通常会辅以应用前路钢板来提高融合节段的稳定性。虽然已表明钢板设计会影响移植物的应力遮挡,但对于融合颈椎节段的后凸对线如何影响前路钢板与脊柱骨韧带结构之间的负荷分担却知之甚少。本研究的目的是使用新鲜的绵羊颈椎(C3 - C6),在单节段ACDF后,表征后凸与正常前凸对线情况下颈椎运动节段前路钢板与骨韧带结构之间的负荷分担情况。加载方案包括先用20 N的压缩力对脊柱进行预加载,并在矢状面施加准静态力矩(高达2.1 Nm)以模拟屈伸。从力矩 - 旋转图测量融合节段的刚度。通过插入比椎间间隙高2 mm的腓骨同种异体移植物来复制正常前凸对线。通过移除移植物并重新应用较短的颈椎前路钢板来模拟后凸对线。正常前凸组C4 - C5节段的平均节段矢状角为前凸5.2±1.6度,后凸组为后凸6.8±2.3度。在屈曲时,正常前凸组中钢板分担了52.8%的施加负荷,后凸组中为70.1%(p<0.03)。在伸展时,正常前凸组中钢板的负荷分担量与后凸组相当(52.7%对40.7%,p = 0.16)。本研究表明,颈椎融合节段的后凸对线会增加屈曲负荷下前路钢板的负荷分担。

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