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在动态载荷下,用柔顺性聚甲基丙烯酸甲酯增强的椎体松质骨的性能。

Performance of vertebral cancellous bone augmented with compliant PMMA under dynamic loads.

作者信息

Boger Andreas, Bohner Marc, Heini Paul, Schwieger Karsten, Schneider Erich

机构信息

AO Research Institute, Clavadelerstrasse 8, 7270 Davos Platz, Switzerland.

出版信息

Acta Biomater. 2008 Nov;4(6):1688-93. doi: 10.1016/j.actbio.2008.06.019. Epub 2008 Jul 10.

Abstract

Increased fracture risk has been reported for the adjacent vertebral bodies after vertebroplasty. This increase has been partly attributed to the high Young's modulus of commonly used polymethylmethacrylate (PMMA). Therefore, a compliant bone cement of PMMA with a bulk modulus closer to the apparent modulus of cancellous bone has been produced. This compliant bone cement was achieved by introducing pores in the cement. Due to the reduced failure strength of that porous PMMA cement, cancellous bone augmented with such cement could deteriorate under dynamic loading. The aim of the present study was to assess the potential of acute failure, particle generation and mechanical properties of cancellous bone augmented with this compliant cement in comparison to regular cement. For this purpose, vertebral biopsies were augmented with porous- and regular PMMA bone cement, submitted to dynamic tests and compression to failure. Changes in Young's modulus and height due to dynamic loading were determined. Afterwards, yield strength and Young's modulus were determined by compressive tests to failure and compared to the individual composite materials. No failure occurred and no particle generation could be observed during dynamical testing for both groups. Height loss was significantly higher for the porous cement composite (0.53+/-0.21%) in comparison to the biopsies augmented with regular cement (0.16+/-0.1%). Young's modulus of biopsies augmented with porous PMMA was comparable to cancellous bone or porous cement alone (200-700 MPa). The yield strength of those biopsies (21.1+/-4.1 MPa) was around two times higher than for porous cement alone (11.6+/-3.3 MPa).

摘要

据报道,椎体成形术后相邻椎体的骨折风险增加。这种增加部分归因于常用的聚甲基丙烯酸甲酯(PMMA)的高杨氏模量。因此,已经生产出一种体积模量更接近松质骨表观模量的顺应性PMMA骨水泥。这种顺应性骨水泥是通过在骨水泥中引入孔隙来实现的。由于那种多孔PMMA骨水泥的破坏强度降低,用这种骨水泥增强的松质骨在动态载荷下可能会恶化。本研究的目的是评估与常规骨水泥相比,用这种顺应性骨水泥增强的松质骨的急性失效、颗粒产生和力学性能的潜力。为此,用多孔和常规PMMA骨水泥对椎体活检组织进行增强,进行动态测试和压缩直至破坏。测定动态载荷引起的杨氏模量和高度变化。之后,通过压缩试验直至破坏来测定屈服强度和杨氏模量,并与各复合材料进行比较。两组在动态测试过程中均未发生失效,也未观察到颗粒产生。与用常规骨水泥增强的活检组织(0.16±0.1%)相比,多孔骨水泥复合材料的高度损失显著更高(0.53±0.21%)。用多孔PMMA增强的活检组织的杨氏模量与松质骨或单独的多孔骨水泥相当(200 - 700MPa)。这些活检组织的屈服强度(21.1±4.1MPa)比单独的多孔骨水泥(11.6±3.3MPa)高出约两倍。

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