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一种用于矫正腰椎矢状面不稳定的新型软性植入物的初步设计与实验研究。

Preliminary design and experimental studies of a novel soft implant for correcting sagittal plane instability in the lumbar spine.

作者信息

Minns R J, Walsh W K

机构信息

Regional Medical Physics Department, Durham Unit, Dryburn Hospital, U.K.

出版信息

Spine (Phila Pa 1976). 1997 Aug 15;22(16):1819-25; discussion 1826-7. doi: 10.1097/00007632-199708150-00004.

Abstract

STUDY DESIGN

A novel soft implant design for resisting the instability of the lumbar spine in the sagittal plane was mechanically tested.

OBJECTIVES

To ascertain whether a soft preformed implant made of differing grades of silicone would contribute to stabilizing the lumbar spine in the sagittal plane.

SUMMARY OF BACKGROUND DATA

Methods of stabilizing the lumbar spine in patients who present with chronic low back pain have usually concentrated on rigidly fixing the associated segment. This has many inherent problems with both the surgical methods and the long-term rigidity at and away from the stabilized site. To the authors knowledge, no "soft" interspinous spacer that would allow a certain amount of flexion but still stabilize the movements associated with instability at the level of the lesion has been investigated mechanically as an alternative to rigid fixation or prosthetic replacement.

METHODS

The apparatus was designed to allow a cadaveric lumbar motion segment to be tested in compression at four angles of flexion with loads up to 700 N. The intradiscal pressure and sagittal plane stiffness were recorded during loading, with and without various sizes of the soft silicone implants placed between the spinous processes.

RESULTS

Insertion of the silicone implants between the spinous processes reduced the intradiscal pressure under load at the angles of flexion tested. The size of the interspinous space determines the optimal diameter of the implant that afforded sagittal stability, the load-bearing contribution of the implant, and the prevention of disc space narrowing at the level investigated.

CONCLUSIONS

A circular silicone spacer placed between the spinous processes appears to contribute to the stability of the cadaveric lumbar spine. There are many attractions to using a simple, soft implant that can be placed with minimal surgery between the spinous processes.

摘要

研究设计

对一种用于抵抗腰椎矢状面不稳定的新型软性植入物设计进行了力学测试。

目的

确定由不同等级硅胶制成的预成型软性植入物是否有助于稳定腰椎矢状面。

背景数据总结

对于患有慢性下腰痛的患者,稳定腰椎的方法通常集中在刚性固定相关节段。这在手术方法以及稳定部位及其周围的长期刚性方面都存在许多固有问题。据作者所知,尚未对一种能允许一定程度的屈曲但仍能稳定病变水平处与不稳定相关运动的“软性”棘突间间隔器进行力学研究,以替代刚性固定或假体置换。

方法

该装置设计用于使尸体腰椎运动节段在四个屈曲角度下承受高达700 N的载荷进行压缩测试。在加载过程中,记录有无各种尺寸的软性硅胶植入物置于棘突间时的椎间盘内压力和矢状面刚度。

结果

在棘突间插入硅胶植入物可降低测试屈曲角度下加载时的椎间盘内压力。棘突间间隙的大小决定了能提供矢状稳定性的植入物的最佳直径、植入物的承重贡献以及在所研究水平防止椎间盘间隙变窄的效果。

结论

置于棘突间的圆形硅胶间隔器似乎有助于尸体腰椎的稳定性。使用一种简单的软性植入物,可通过最小限度的手术置于棘突间,有诸多优点。

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