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Surface modification of collagen-based biomaterial induced by pulse width variable femtosecond laser pulses

机译:脉冲宽度可变飞秒激光脉冲诱导的胶原基生物材料的表面改性

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The ability to produce idealized cellular constructs is essential for understanding and controlling intercellular processes and ultimately for producing engineered tissue replacements. Preliminary results have been obtained on collagen modification by irradiation with single and multiple pulses of femtosecond laser with variable pulse duration. Irradiation of collagen thin film by single pulses of femtosecond duration results in creation of foam layer with micrometer thickness. The structure and thickness of the layer strongly depends on the number of the applied laser pulses. The surface properties of collagen thin films before and after Ti-sapphire irradiation with 800 nm were investigated by means of the technique Field Emission Scanning Electron Microscope (FESEM). Based on the FESEM results, it was possible to identify an energy density range as the ablation threshold for collagen thin films. The laser-induced foam formation was characterized over the intensity range 3 - 4.2×10~(11) W/cm~2. The results of the field emission scanning electron microscopy, showed that by tailoring the laser pulse duration, improved the uniformity of the pore network. Examination of the interaction of ultra-short laser pulses with collagen films is useful for controlling the chemical and microstructural modification of the created foam layer.
机译:产生理想的细胞构建体的能力对于理解和控制细胞间过程以及最终产生工程组织替代物至关重要。通过用单脉冲和多脉冲飞秒激光以可变的脉冲持续时间进行辐照,已获得了胶原蛋白修饰的初步结果。飞秒持续时间的单个脉冲辐照胶原蛋白薄膜会导致形成厚度为微米的泡沫层。该层的结构和厚度在很大程度上取决于所施加的激光脉冲的数量。利用场发射扫描电子显微镜(FESEM)技术研究了钛蓝宝石在800 nm辐照前后的胶原蛋白薄膜的表面性能。根据FESEM结果,可以确定能量密度范围作为胶原蛋白薄膜的消融阈值。在3-4.2×10〜(11)W / cm〜2的强度范围内表征了激光诱导的泡沫形成。场发射扫描电子显微镜的结果表明,通过调整激光脉冲的持续时间,提高了孔网络的均匀性。检查超短激光脉冲与胶原膜的相互作用对于控制所产生的泡沫层的化学和微观结构改性是有用的。

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