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Wavelength optimization in femtosecond laser corneal surgery

机译:飞秒激光角膜手术中的波长优化

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PURPOSE. To evaluate the influence of wavelength on penetration depth and quality of femtosecond laser corneal incisions in view of optimizing procedures in corneal surgery assisted by ultrashort pulse lasers. METHODS. We performed penetrating and lamellar incisions on eye bank corneas using several ultrashort pulse laser sources. Several wavelengths within the near-infrared and shortwaveinfrared wavelength range were used and the pulse energy was varied. The corneas were subsequently analyzed using light microscopy as well as transmission and scanning electron microscopy. RESULTS. We found higher penetration depths and improved incision quality when using wavelengths close to k λ = 1650 nm rather than the wavelength of k λ = 1030 nm typical in current clinical systems. Optical micrographs show an improvement of the penetration depth by a factor of 2 to 3 while maintaining a good incision quality when using the longer wavelength. These results were confirmed with micrographs obtained with transmission and scanning electron microscopy. CONCLUSIONS. A wavelength change from the standard 1030 nm to 1650 nm in corneal surgery assisted by ultrashort pulse laser considerably reduces light scattering within the tissue. This results in a better preservation of the laser beam quality in the volume of the tissue, particularly when working at depths required for deep lamellar or penetrating keratoplasty. Using this wavelength yields improved penetration depths into the tissue; it permits use of lower energies for any given depth and thus reduces unwanted side effects as thermal effects.
机译:目的。鉴于超短脉冲激光辅助角膜手术的优化程序,以评估波长对飞秒激光角膜切口穿透深度和质量的影响。方法。我们使用几种超短脉冲激光源对眼库角膜进行了穿透性和层状切口。使用了近红外和短波红外波长范围内的几个波长,并且改变了脉冲能量。随后使用光学显微镜以及透射和扫描电子显微镜对角膜进行分析。结果。当使用接近kλ= 1650 nm的波长而不是当前临床系统中典型的kλ= 1030 nm的波长时,我们发现更高的穿透深度和更高的切口质量。光学显微照片显示,当使用较长波长时,穿透深度提高了2到3倍,同时保持了良好的切口质量。通过透射和扫描电子显微镜获得的显微照片证实了这些结果。结论。在超短脉冲激光辅助下的角膜手术中,从标准的1030 nm到1650 nm的波长变化大大减少了组织内的光散射。这样可以更好地保持组织体积内的激光束质量,特别是在深层或穿透性角膜移植术所需的深度进行工作时。使用该波长可提高进入组织的穿透深度;它允许在任何给定深度使用较低的能量,从而减少了不必要的副作用,如热效应。

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