Calhoun William R, Ilev Ilko K
Optical Therapeutics and Medical Nanophotonics Laboratory, Office of Science and Engineering Laboratories, U.S. Food and Drug Administration, Silver Spring, MD, 20993, USA,
Lasers Med Sci. 2015 May;30(4):1341-6. doi: 10.1007/s10103-015-1726-5. Epub 2015 Mar 17.
Clinical therapy incorporating femtosecond laser (FSL) devices is a quickly growing field in modern biomedical technology due to their precision and ability to generate therapeutic effects with substantially less laser pulse energy. FSLs have the potential to produce nonlinear optical effects such as harmonic generation (HG), especially in tissues with significant nonlinear susceptibilities such as the cornea. HG in corneal tissue has been demonstrated in nonlinear harmonic microscopy using low-power FSLs. Furthermore, the wavelength ranges of harmonic spectral emissions generated in corneal tissues are known to be phototoxic above certain intensities. We have investigated how the critical FSL parameters pulse energy, pulse repetition rate, and numerical aperture influence both second (SHG) and third harmonic generation (THG) in corneal tissue. Experimental results demonstrated corresponding increases in HG intensity with increasing repetition rate and numerical aperture. HG duration decreased with increasing repetition rate and pulse energy. The data also demonstrated a significant difference in HG between FSL parameters representing the two most common classes of FSL therapeutic devices.
由于其精确性以及能够以显著更低的激光脉冲能量产生治疗效果,结合飞秒激光(FSL)设备的临床治疗在现代生物医学技术中是一个快速发展的领域。飞秒激光有产生非线性光学效应的潜力,如谐波产生(HG),特别是在具有显著非线性磁化率的组织中,如角膜。在使用低功率飞秒激光的非线性谐波显微镜中,已经证明了角膜组织中的谐波产生。此外,已知在角膜组织中产生的谐波光谱发射的波长范围在某些强度以上具有光毒性。我们研究了关键的飞秒激光参数脉冲能量、脉冲重复率和数值孔径如何影响角膜组织中的二次谐波产生(SHG)和三次谐波产生(THG)。实验结果表明,随着重复率和数值孔径的增加,谐波产生强度相应增加。谐波产生持续时间随着重复率和脉冲能量的增加而减少。数据还表明,代表两种最常见飞秒激光治疗设备类型的飞秒激光参数之间的谐波产生存在显著差异。