Applied Materials Science, Department of Engineering Sciences, Uppsala University, Uppsala, Sweden.
J Mater Sci Mater Med. 2013 Apr;24(4):829-35. doi: 10.1007/s10856-013-4855-z. Epub 2013 Feb 8.
Premixed calcium phosphate cements (pCPC) have been developed to circumvent problems related to mixing and transfer of cements in the operating room. In addition, by using pCPC the short working times generally associated with conventional water-mixed cements are avoided. In this work, the influence of particle size on handling and hardening characteristics of a premixed monetite cement has been assessed. The cements were evaluated with respect to their injectability, setting time and compressive strength. It was found that cements with smaller particle sizes were more difficult to inject and had higher compressive strength. Regarding setting time, no clear trend could be discerned. The addition of granules made the cements easier to inject, but setting time was prolonged and lower strengths were obtained. The main findings of this work demonstrate that particle size can be used to control handling and physical properties of premixed cements and that previous knowledge from water-based CPC, regarding effects of particle size, is not directly applicable to premixed CPC.
预先混合的磷酸钙骨水泥(pCPC)的开发是为了避免在手术室中混合和转移骨水泥相关的问题。此外,通过使用 pCPC,可以避免与传统水混合骨水泥相关的短工作时间。在这项工作中,研究了粒径对预先混合的单水磷酸钙骨水泥的操作和硬化特性的影响。通过可注射性、凝固时间和抗压强度来评估骨水泥。结果表明,粒径较小的骨水泥更难注射,抗压强度更高。关于凝固时间,没有明显的趋势。添加颗粒使骨水泥更容易注射,但凝固时间延长,强度降低。这项工作的主要发现表明,粒径可以用于控制预先混合骨水泥的操作和物理性能,并且先前关于水基 CPC 中粒径影响的知识并不直接适用于预先混合的 CPC。