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Experimental study on low pulse energy processing with femtosecond lasers for glaucoma treatment

机译:飞秒激光低脉冲能量处理治疗青光眼的实验研究

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摘要

The feasibility of low energy processing in ocular tissues with femtosecond laser sources was investigated in this research. One laser source was a femtosecond amplifier, and the other was a femtosecond oscillator. The amplifier used in this experiment was a CPA-2001 (Clark-MXR, Inc), with 150 fs pulse duration and 1 kHz repetition rate. The femtosecond oscillator (model 900-B Mira) produced a 200 fs pulse duration and a 76 MHz repetition rate. Both these two laser systems operated at 800 nm wavelengths. Firstly, the pulse intensity thresholds in water produced by the two laser sources were compared. The optical breakdown probability analysis shows that the pulse energy threshold achieved by the oscillator was less than 10% of that achieved by the amplifier. Then, the non-linear propagation of the femtosecond pulses in the ocular tissues was studied with the femtosecond oscillator. The results showed a potential for pulse energy processing at the nanojoule level with a femtosecond oscillator in glaucoma treatment.
机译:在这项研究中,研究了使用飞秒激光源在眼组织中进行低能量处理的可行性。一个激光源是飞秒放大器,另一个是飞秒振荡器。本实验中使用的放大器是CPA-2001(Clark-MXR,Inc),具有150 fs的脉冲持续时间和1 kHz的重复频率。飞秒振荡器(900-B Mira型)产生200 fs的脉冲持续时间和76 MHz的重复频率。这两个激光系统都在800 nm波长下工作。首先,比较了两个激光源产生的水中的脉冲强度阈值。光学击穿概率分析表明,振荡器达到的脉冲能量阈值不到放大器达到的脉冲能量阈值的10%。然后,用飞秒振荡器研究了飞秒脉冲在眼组织中的非线性传播。结果显示在青光眼治疗中使用飞秒振荡器在纳焦级进行脉冲能量处理的潜力。

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