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Responsive Hydrogels Based Lens Structure with Configurable Focal Length for Intraocular Lens (IOLs) Application

机译:基于敏感水凝胶的透镜结构,具有用于眼透镜(IOLS)应用的可配置焦距

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Stimuli-responsive hydrogel has attracted wide interests in bio- applications, especially in bio-optical systems that need tuning and adjustment of their optical performances. In this paper, we have investigated the materials and structural designs for the potential intraocular Lens (IOLs) design by studying swelling induced morphology changes and subsequently optical properties of ionic responsive Poly (Acrylamide-co-sodium acrylate) hydrogel. The equilibrium swelling ratio and swelling kinetics of gel were measured under both free standing and confined conditions. The Poly (Acrylamide-co-sodium acrylate) hydrogel has shown reversible swelling response to the ion concentration. Autonomous focusing of the gel lens was demonstrated under the certain ionic stimulus. Initial optical results have been presented with designable stimuli-responsive focal length shifting under structural confinement.
机译:刺激响应的水凝胶在生物应用中引起了广泛的兴趣,特别是在需要调谐和调整光学性能的生物光学系统中。 本文通过研究溶胀诱导的形态变化以及随后的离子响应性聚(丙烯酰胺 - 共丙烯酸钠)水凝胶,研究了潜在的眼内晶状体(IOL)设计的材料和结构设计。 在自由站立和限制条件下测量凝胶的平衡溶胀比和肿胀动力学。 聚(丙烯酰胺 - 共丙烯酸钠)水凝胶已显示对离子浓度的可逆溶胀响应。 在某些离子刺激下证明了凝胶镜的自主聚焦。 初始光学结果已经在结构监禁下具有可设计的刺激响应性焦距移位。

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