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The effect of standard and low-modulus cement augmentation on the stiffness, strength, and endplate pressure distribution in vertebroplasty

机译:标准和低模量水泥增强对椎体成形术中刚度,强度和终板压力分布的影响

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PurposeVertebroplasty restores stiffness and strength of fractured vertebral bodies, but alters their stress transfer. This unwanted effect may be reduced by using more compliant cements. However, systematic experimental comparison of structural properties between standard and low-modulus augmentation needs to be done. This study investigated how standard and low-modulus cement augmentation affects apparent stiffness, strength, and endplate pressure distribution of vertebral body sections.MethodsThirty-nine human thoracolumbar vertebral body sections were prepared by removing cortical endplates and posterior elements. The specimens were scanned with a HR-pQCT system and loaded in the elastic range. After augmentation with standard or low-modulus cement they were scanned again and tested in two steps. First, the contact pressure distribution between specimen and loading plates was measured with pressure-sensitive films. Then, they were loaded again in the elastic range and compressed until failure. Apparent stiffness was compared before and after augmentation, whereas apparent strength of augmented specimens was compared to a non-augmented reference group.ResultsVertebral body sections with fillings connecting both endplates were on average 33% stiffer and 47% stronger with standard cement, and 27% stiffer and 30% stronger with low-modulus cement. In contrast, partial fillings showed no significant strengthening for both cements and only a slight stiffness increase (16%). The averaged endplate pressure above/below the cement was on average 15% lower with low-modulus cement compared to standard cement.ConclusionAugmentation connecting both endplates significantly strengthened and stiffened vertebral body sections also with low-modulus cement. A trend of reduced pressure concentrations above/below the cement was observed with low-modulus cement...
机译:目的椎体成形术可恢复骨折椎体的刚度和强度,但会改变其应力传递。通过使用更柔顺的水泥可以减少这种不良影响。但是,需要对标准模量和低模量增强之间的结构特性进行系统的实验比较。这项研究调查了标准和低模量的水泥增强如何影响椎体切面的表观刚度,强度和终板压力分布。方法通过去除皮质终板和后部元件制备了39个人胸腰椎椎体切片。用HR-pQCT系统扫描样品并在弹性范围内加载。用标准或低模量水泥加固后,将它们再次扫描并分两步进行测试。首先,用压敏膜测量样品和加载板之间的接触压力分布。然后,将它们再次加载在弹性范围内,并压缩直至失效。对比增强前后的表观刚度,将增强标本的表观强度与非增强参考组进行比较。结果连接两个终板的带有填充物的椎体平均硬度比标准水泥高33%,比普通水泥高47%,和27%使用低模量水泥时,硬度更高,强度提高30%。相比之下,部分填充物对两种水泥均无明显增强作用,而刚度仅略有增加(<16%)。与标准水泥相比,低模量水泥的平均端板压力平均低15%。结论通过低模量水泥将两个端板连接在一起的增强可显着增强和加固椎体。在低模量水泥中观察到了在水泥上方/下方的减压浓度降低的趋势。

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