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2.0和2.4有限接触动力加压钢板以及不同厚度的2.0动力加压钢板的体外力学比较

In vitro mechanical comparison of 2.0 and 2.4 limited-contact dynamic compression plates and 2.0 dynamic compression plates of different thicknesses.

作者信息

Strom Adam M, Garcia Tanya C, Jandrey Karl, Huber Michael L, Stover Susan M

机构信息

Animal Specialty Group, Los Angeles, CA 90039, USA.

出版信息

Vet Surg. 2010 Oct;39(7):824-8. doi: 10.1111/j.1532-950X.2010.00736.x. Epub 2010 Sep 2.

Abstract

OBJECTIVE

To compare the bending structural stiffness and bending strength of thick and thin 2.4 mm limited contact dynamic compression plates (2.4 LC-DCP), 2.0 mm LC-DCP (2.0 LC-DCP), and 2.0 dynamic compression plates (2.0 DCP).

STUDY DESIGN

In vitro mechanical study.

METHODS

Two thicknesses of 2.4 LC-DCP, 2.0 LC-DCP, and 2.0 DCP stainless-steel plates were tested in 4-point bending. Data were collected during bending until implants plastically deformed. Bending structural stiffness and bending strength were determined from load displacement curves. Mechanical properties were compared between plates and the effects of plate type, size, and thickness on stiffness and strength were assessed using ANOVA.

RESULTS

The thick 2.4 LC-DCP implant was the stiffest and strongest; the thin 2.0 DCP implant was most compliant and weakest. Larger sized plates, thicker plates, and limited contact design of plates enhanced stiffness and strength. For the plates studied, plate size had a larger effect than plate type or thickness on stiffness and strength.

CONCLUSION

Increasing the size (width) and thickness of plates increases both the bending structural stiffness and strength. For the plates studied, LC-DCP implants were stiffer and stronger than DCP implants.

CLINICAL RELEVANCE

Plate bending structural stiffness and strength can be most effectively enhanced by using a larger sized plate, but gains can also be achieved by using a thicker plate and/or an LC-DCP instead of a DCP implant when possible.

摘要

目的

比较2.4毫米厚和薄的有限接触动力加压钢板(2.4 LC-DCP)、2.0毫米LC-DCP(2.0 LC-DCP)和2.0动力加压钢板(2.0 DCP)的弯曲结构刚度和弯曲强度。

研究设计

体外力学研究。

方法

对两种厚度的2.4 LC-DCP、2.0 LC-DCP和2.0 DCP不锈钢板进行四点弯曲测试。在弯曲过程中收集数据,直至植入物发生塑性变形。根据载荷位移曲线确定弯曲结构刚度和弯曲强度。比较不同钢板之间的力学性能,并使用方差分析评估钢板类型、尺寸和厚度对刚度和强度的影响。

结果

厚的2.4 LC-DCP植入物刚度和强度最大;薄的2.0 DCP植入物顺应性最强但强度最弱。较大尺寸的钢板、较厚的钢板以及钢板的有限接触设计可提高刚度和强度。对于所研究的钢板,钢板尺寸对刚度和强度的影响大于钢板类型或厚度。

结论

增加钢板的尺寸(宽度)和厚度可提高弯曲结构刚度和强度。对于所研究的钢板,LC-DCP植入物比DCP植入物更硬更强。

临床意义

使用较大尺寸的钢板可最有效地提高钢板的弯曲结构刚度和强度,但在可能的情况下,使用较厚的钢板和/或LC-DCP而非DCP植入物也可有所收获。

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