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High precision laser sclerostomy

机译:高精度激光硬化术

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Ultrafast lasers offer a possibility of removing soft ophthalmic tissue without introducing collateral damage at the ablation site or in the surrounding tissue. The potential for using ultrashort pico- and femtosecond pulse lasers for modification of ophthalmic tissue has been reported elsewhere and has resulted in the introduction of new, minimally invasive procedures into clinical practice. Our research aims to define the most efficient parameters to allow for the modification of scleral tissue without introducing collateral damage. Our experiments were carried out on hydrated porcine sclera in vitro. Porcine sclera, which has similar collagen organization, histology and water content (~70%) to human tissue was used. Supporting this work we present a 2D finite element blow-off model which employs a one-step heating process. It is assumed that the incident laser radiation that is not reflected is absorbed in the tissue according to the Beer-Lambert law and transformed into heat energy. The experimental setup uses an industrial picosecond laser (TRUMPF TruMicro 5×50) with 5.9 ps pulses at 1030 nm, with pulse energies up to 125 μJ and a focused spot diameter of 35 μm. Use of a beam steering scan head allows flexibility in designing complicated scanning patterns. In this study we have demonstrated that picosecond pulses are capable of removing scleral tissue without introducing any major thermal damage which offers a possible route for minimally invasive sclerostomy. In assessing this we have tested several different scanning patterns including single line ablation, square and circular cavity removal.
机译:超快激光器提供了消除软眼科组织的可能性,而不会在消融部位或周围组织中引入侧支损伤。在其他地方据报道,使用用于改性眼科组织的超短型微微脉冲激光的可能性,导致新的,微创手术引入临床实践。我们的研究旨在定义最有效的参数,以便在不引入旁观损伤的情况下改变巩膜组织。我们的实验是在体外水合猪巩膜进行的。使用具有与人体组织类似的胶原蛋白组织,组织学和水含量(〜70%)的猪巩膜。支持这项工作我们介绍了一个2D有限元吹除模型,采用一步加热过程。假设未反射的入射激光辐射根据啤酒兰伯特法在组织中被吸收,并转化成热能。实验设置使用1030nm的工业PICOSECOND激光器(TRUMPF Trumicro 5×50),1030 nm,脉冲能量高达125μj,聚焦光斑直径为35μm。使用光束转向扫描头允许灵活地设计复杂的扫描模式。在这项研究中,我们已经证明皮秒脉冲能够去除巩膜组织而不引入任何主要的热损伤,这提供了可侵入性侵袭性的肠胃瘘的可能途径。在评估这一点时,我们测试了几种不同的扫描图案,包括单线消融,方形和圆形腔去除。

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