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Influence of particle size distribution on the rheological properties and mathematical model fitting of injectable borosilicate bioactive glass bone cement

机译:粒度分布对可注射硼硅酸盐生物活性玻璃骨水泥流变性能和数学模型拟合的影响

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Injectable bone cement combined with minimally invasive surgery has attracted much attention in recent years due to its rheological properties directly influencing its convenience and effectiveness in clinical applications. This study systematically investigates the influence of particle size distribution on the rheological, injectability, and anti-washout properties of borosilicate bioactive glass bone cement (BSBGC). Meanwhile, the setting time is also evaluated. Furthermore, a rheological model is proposed that describes the flow behaviour of BSBGC. Rheological results indicated that all the BSBGC samples exhibited non-Newtonian fluid behaviour, with thixotropic and shear-thinning properties. The BSBGC sample prepared via ball milling for 24 h (designated as CBM24) presented the largest thixotropic loop area, confirming that CBM24 has the greatest thixotropy. Particle size distribution greatly influenced the sol-gel time point, elastic and loss moduli, and viscosity of the BSBGC. Based on rheological results, four models (Ostwald-de Waele (Power law), Bingham, Herschel-Bulkley, and Casson) were selected and applied to fit the experimental data. It was found that the Power law and Herschel-Bulkley models were the most suitable for modelling the flow behaviour of the BSBGC, with the CBM24 sample having the greatest fitting proximity under the Power law model. Injectability test results showed that all BSBGC samples could be easily injected. Anti-washout test results indicated that CBM24 presented the most stable structure based on having the best anti-washout properties. Moreover, CBM24 had a reasonable initial and final setting time.
机译:由于其流变性能直接影响其在临床应用中的便利性和有效性,可注射骨水泥结合微创手术近年来引起了很多关注。该研究系统地研究了粒度分布对硼硅酸盐生物活性玻璃骨水泥(BSBGC)的流变,可注射性和抗冲洗性能的影响。同时,还评估设置时间。此外,提出了一种描述BSBGC的流动行为的流变模型。流变结果表明,所有BSBGC样品都表现出非牛顿流体行为,具有触变性和剪切稀疏性质。通过球磨机制备的BSBGC样品24小时(指定为CBM24)呈现最大的触变环区域,证实CBM24具有最大的触变性。粒度分布极大地影响了溶胶 - 凝胶时间点,弹性和损失模量,以及BSBGC的粘度。基于流变结果,选择了四种模型(Ostwald-de Waele(Power Law),Bingham,Herschel-Bulkley和Casson),并应用于适合实验数据。有人发现,电力法和Herschel-Bulkley模型最适合于建模BSBGC的流动行为,CBM24样品在电力法模型下具有最大的装配近。可注射性测试结果表明,所有BSBGC样品都可以容易地注入。抗冲洗试验结果表明CBM24基于具有最佳防冲洗性能的基于具有最佳防冲洗性能的结构最稳定的结构。此外,CBM24具有合理的初始凝固时间。

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