首页> 外文会议>Conference on Ophthalmic Technologies XIV; 20040124-20040125 and 20040127; San Jose,CA; US >First in vivo animal studies on intraocular nanosurgery and multiphoton tomography with low-energy 80 MHz near infrared femtosecond laser pulses
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First in vivo animal studies on intraocular nanosurgery and multiphoton tomography with low-energy 80 MHz near infrared femtosecond laser pulses

机译:低能量80 MHz近红外飞秒激光脉冲进行眼内纳米手术和多光子断层成像的首次体内动物研究

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We report on a method for refractive laser surgery based on low-energy femtosecond laser pulses provided by ultracompact turn-key non-amplified laser systems. An additional excimer laser is not required for ablation of the stroma. The novel method has the potential to be used for (ⅰ) optical flap creation as well as stroma ablation and (ⅱ) for non-invasive flap-free intrastromal ablation. In addition, 3D multiphoton imaging of the cornea can be performed. In particular, we used sub-nanojoule near infrared 80 MHz femtosecond laser pulses for multiphoton imaging of corneal structures with ultrahigh resolution (< 1μm) as well as for highly precise intraocular refractive surgery. Imaging based on two-photon excited cellular autofluorescence and SHG formation in collagen structures was performed at GW/cm~2 intensities, whereas destructive optical breakdown for nanoprocessing occurred at TW/cm~2 light intensities. These high intensities were realized with sub-nJ pulses within a subfemtoliter intrastromal volume by diffraction-limited focussing with high NA objectives and beam scanning 50 to 140 nm below the epithelial surface. Multiphoton tomography of the cornea was used to determine the target of interest and to visualize intraocular post-laser effects. Histological examination with light- and electron microscopes of laser-exposed porcine and rabbit eyes reveal a minimum intratissue cut size below 1 μm without destructive effects to surrounding collagen structures. LASIK flaps and intracorneal cavities could be realized with high precision using 200 fs, 80 MHz, sub-nanojoule pulses at 800 nm. First studies on 80 MHz femtosecond laser surgery on living rabbits have been performed.
机译:我们报告了一种基于超紧凑型交钥匙非放大激光系统提供的低能飞秒激光脉冲的屈光激光手术方法。消融基质不需要额外的准分子激光器。这种新方法有可能用于(ⅰ)光学皮瓣的形成和基质消融,以及(ⅱ)用于无创无瓣皮内基质消融。另外,可以执行角膜的3D多光子成像。特别是,我们使用亚纳米焦耳近红外80 MHz飞秒激光脉冲对具有超高分辨率(<1μm)的角膜结构进行多光子成像以及进行高精度眼内屈光手术。基于双光子激发的细胞自发荧光和胶原结构中SHG形成的成像是在GW / cm〜2的强度下进行的,而纳米加工的破坏性光学击穿发生在TW / cm〜2的光强度下。通过在具有高NA物镜的衍射限制聚焦和上皮表面下方50到140 nm的光束扫描下,在亚飞升基质内体积内的亚nJ脉冲实现了这些高强度。角膜的多光子层析成像用于确定目标,并可视化眼内激光后效果。用光和电子显微镜对猪和兔子的激光进行组织学检查,发现组织内切开的最小尺寸小于1μm,而对周围的胶原结构没有破坏作用。使用200 fs,80 MHz,800 nm的亚纳米焦耳脉冲可以高精度实现LASIK皮瓣和角膜内腔。已经对活着的兔子进行了80 MHz飞秒激光手术的初步研究。

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