Baroud G, Matsushita C, Samara M, Beckman L, Steffen T
Orthopaedic Research Laboratory, Division of Orthopaedic Surgery, McGill University, Montreal, QC, Canada.
J Biomed Mater Res B Appl Biomater. 2004 Jan 15;68(1):105-11. doi: 10.1002/jbm.b.20010.
Injecting acrylic and, increasingly, calcium-phosphate cements into the porous bone structure is an emerging procedure, referred to as vertebroplasty, for the augmentation of osteoporotic vertebrae. Despite the benefits of vertebroplasty, it has limitations. The limitations of interest in this study are the injectability of bone cements and their mixing variability (i.e., low reproducibility of resulting viscosity). The objective of this study is to investigate the effect of oscillatory versus manual mixing on cement viscosity and mixing variability. Five cements are tested: (a) Vertebroplastic, (b) DP-Pour, (c) Antibiotic Simplex, (d) chronOS Inject, and (e) Biopex. Compared to manual mixing, oscillatory mixing significantly decreased the mean viscosity and the mixing variability, which was inferred from the coefficient of variation. For example, under oscillatory mixing, the viscosity and the variability for Vertebroplastic decreased to one-third of the corresponding values for manual mixing. Similar results were obtained for the other cements. The decrease in viscosity is attributed to the pseudo-plastic behavior of bone cements. The decrease in the variability of cement viscosity was attributed to greater dispersive mixing of the cement components under oscillatory mixing. The decrease in viscosity eases the injection by reducing the pressure required. The decrease in the variability of cement viscosity increases reproducibility of the cement injection. Oscillatory mixing appears to have the potential to contribute to improving vertebroplasty.
将丙烯酸类骨水泥以及越来越多的磷酸钙骨水泥注入多孔骨结构中,是一种新兴的手术方法,称为椎体成形术,用于增强骨质疏松性椎体。尽管椎体成形术有诸多益处,但也存在局限性。本研究关注的局限性在于骨水泥的可注射性及其混合变异性(即所得粘度的低重现性)。本研究的目的是探讨振荡混合与手动混合对骨水泥粘度和混合变异性的影响。测试了五种骨水泥:(a) Vertebroplastic,(b) DP-Pour,(c) 抗生素 Simplex,(d) chronOS Inject,以及 (e) Biopex。与手动混合相比,振荡混合显著降低了平均粘度和混合变异性,这是通过变异系数推断得出的。例如,在振荡混合下,Vertebroplastic 的粘度和变异性降至手动混合相应值的三分之一。其他骨水泥也得到了类似结果。粘度降低归因于骨水泥的假塑性行为。骨水泥粘度变异性的降低归因于振荡混合下水泥组分的更分散混合。粘度降低通过降低所需压力使注射更容易。骨水泥粘度变异性的降低提高了骨水泥注射的重现性。振荡混合似乎有可能有助于改进椎体成形术。