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Optimal properties for coated titanium implants with the hydroxyapatite layer formed by the pulsed laser deposition technique

机译:用脉冲激光沉积技术形成涂覆钛植入物的最佳性能

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Pulsed laser deposition technique allow to 'tailor' bioceramic coat for metal implants by the change of deposition conditions. Each attribute is influenced by the several deposition parameters and each parameter change several various properties. Problem caused that many parameters has an opposite function and improvement of one property is followed by deterioration of other attribute. This study monitor influence of each single deposition parameter and evaluate its importance form the point of view of coat properties. For deposition KrF excimer laser in stainless-steel deposition chamber was used. Deposition conditions (ambient composition and pressures, metallic substrate temperature, energy density and target-substrate distance) were changed according to the film properties. A non-coated titanium implant was used as a control. Films with promising mechanical quality underwent an in vitro biological tests - measurement of proliferation activity, observing cell interactions with macrophages, fibroblasts, testing toxicity of percolates, observing a solubility of hydroxyapatite (HA) coat. Deposition conditions corresponding with the optimal mechanical and biochemical properties are: metal temperature 490 degrees Celsius, ambient-mixture of argon and water vapor, energy density 3 Jcm$+$MIN@2$/, target-substrate distance 7.5 cm.
机译:脉冲激光沉积技术允许通过沉积条件的变化为金属植入物“定制”生物陶瓷涂层。每个属性受几个沉积参数的影响,每个参数改变几种各种属性。问题导致许多参数具有相反的函数和一个属性的改进之后是其他属性的恶化。本研究监测每个单一沉积参数的影响,并评估其重要性构成涂层性质的观点。用于沉积KRF准分子激光器在不锈钢沉积室中。根据膜性能改变沉积条件(环境成分和压力,金属基板温度,能量密度和靶衬底距离)。使用未涂覆的钛植入物作为对照。具有有前途的机械质量的薄膜经历了体外生物试验 - 测量增殖活性,观察细胞与巨噬细胞的相互作用,成纤维细胞,渗透的毒性,观察羟基磷灰石(HA)涂层的溶解度。沉积条件与最佳机械和生化特性相对应:金属温度490摄氏度,环境 - 氩气和水蒸气的混合物,能量密度3 JCM $ + $ MIN @ 2 $ /,目标基板距离7.5厘米。

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