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圆柱形和双芯椎弓根螺钉在小牛和人体椎骨中的力学性能。

Mechanical performance of cylindrical and dual core pedicle screws in calf and human vertebrae.

作者信息

Lill C A, Schneider E, Goldhahn J, Haslemann A, Zeifang F

机构信息

AO Research Institute Davos, Clavadelerstrasse, 7270 Davos, Switzerland.

出版信息

Arch Orthop Trauma Surg. 2006 Dec;126(10):686-94. doi: 10.1007/s00402-006-0186-6. Epub 2006 Jul 25.

Abstract

INTRODUCTION

Failure of pedicle screws by loosening and back out remains a significant clinical problem. Pedicle screw fixation is determined by bone mineral density, pedicle morphology and screw design. The objective of this study was to compare the holding strength of newly developed dual core pedicle screws having a cylindrical design in terms of outer diameter and two cylindrical inner core regions connected by a conical transition with conventional cylindrical pedicle screws.

MATERIALS AND METHODS

Fifty bovine lumbar vertebrae and 40 human lumbar vertebrae were used. Five different screws were tested in nine experimental "settings" and ten specimens each. The screws were tested for cranial displacement and pullout strength before and after 5,000 cycles of cranio-caudal loading. The tests included a setting with fully inserted and 4 mm backed out screws. For statistical analysis the incomplete balanced block design was used.

RESULTS

Cyclic loading led to a decrease of pullout force between 24 and 31% and a 9% increase of displacement. The cylindrical screw designs were affected more than the dual core designs. The pullout force of cylindrical screws was smaller than of dual core screws. Even in a backed out condition dual core screws showed a significantly smaller displacement than cylindrical screws.

CONCLUSION

Pedicle screws with the dual core design provide good anchorage in the vertebra.

摘要

引言

椎弓根螺钉因松动和退出而失效仍然是一个重大的临床问题。椎弓根螺钉固定取决于骨矿物质密度、椎弓根形态和螺钉设计。本研究的目的是比较新开发的具有圆柱形设计的双芯椎弓根螺钉在外径方面以及由锥形过渡连接的两个圆柱形内芯区域与传统圆柱形椎弓根螺钉的握持力。

材料与方法

使用了50个牛腰椎椎体和40个人腰椎椎体。在九个实验“设置”中对五种不同的螺钉进行测试,每种设置十个标本。在进行5000次头尾向加载之前和之后,对螺钉进行头侧移位和拔出力测试。测试包括完全插入和退出4毫米螺钉的设置。统计分析采用不完全平衡区组设计。

结果

循环加载导致拔出力降低24%至31%,位移增加9%。圆柱形螺钉设计比双芯设计受影响更大。圆柱形螺钉的拔出力小于双芯螺钉。即使在退出状态下,双芯螺钉的位移也明显小于圆柱形螺钉。

结论

双芯设计的椎弓根螺钉在椎体中提供了良好的锚固。

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