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Near-IR Mode-Locked Laser Assisted Sintering and Morphological Engineering of Biomaterials - A New Approach for Integrative Manufacturing of Hard-Soft Tissues for in-Theatre Use!

机译:近红外模式锁定激光辅助烧结和生物材料的形态学工程 - 一种新的戏剧使用中硬组织制造的新方法!

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The emergence of mode-locked near-IR (NIR) lasers has opened novel and exciting opportunities in dental and orthopaedic medicine. In a mode-locked laser cavity the pulse duration and repetition rates may be controlled between 10-100s of femtosecond (fs) and kHz-GHz ranges, respectively. This unique capability for controlling the incident laser power in a near-IR mode-locked laser has been explored for studying the materials phase transformation, sintering and bonding mechanisms in calcium phosphate and chitosan/calcium phosphate suspensions as biomaterials. The investigation primarily focusses on interaction of such a laser in a linear regime, resulting in a plethora of phase combinations and morphologically controlled structures, which are well suited for in-theatre processing of hard-soft tissues for personalized therapy. In this article, the engineered medical device which combines the materials and laser power delivery at the point of tissue restoration is also discussed. The article exemplifies the case for enamel restoration using such a medical device, which then sets the scene for much wider use in tissue engineering.
机译:模式锁定的近红外(NIR)激光器的出现在牙科和骨科医学中开辟了新颖和令人兴奋的机会。在模式锁定的激光腔中,可以分别在10-100°的FemtoSecond(FS)和KHz-GHz范围之间控制脉冲持续时间和重复率。已经探讨了在近红外模式锁定激光器中控制入射激光功率的这种独特能力用于研究磷酸钙和壳聚糖/磷酸钙悬浮醇中的材料相变,烧结和粘合机制作为生物材料。该研究主要关注这种激光在线性状态下的相互作用,导致血红蛋白组合和形态学控制的结构,这非常适用于用于个性化治疗的硬软组织的戏剧剧院。在本文中,还讨论了将材料和激光动力传递结合在组织恢复点的工程化医疗装置。本文举例说明了使用这种医疗设备的搪瓷恢复的情况,然后将场景设置为在组织工程中更广泛地使用。

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