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Volume 21 Issue 5
Sep.  2013
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Study of damage effects of rabbit eyes induced by coupling cavity injection mode-locked Nd:YAG laser pulse train

  • Received Date: 1996-06-24
    Accepted Date: 1997-03-25
  • A comparison of acute ocular damages of rabbit eyes induced by the coupling cavity injection mode-locked Nd:YAG laser picosecond pulse train and its doubled frequency 0.53μm pulse train and nanosecond pulse train using solid color centre crystal mode-locked was reported.The result showed that the ocular damages(ED50) was 83.5μJ at 1.06μm for mode-locked picosecond laser pulse train;the energy required to produce lesions in 40% events was 62.2μJ at 1.06μm and 6.1μJ at 0.53μm,ratio 10:1,and the dose required in 83.3% events,for nanosecond and picosecond laser pulse train,was 1190μJ and 260μJ at 1.06μm,ratio 5:1 approximately.
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  • [1] 赵国衡.耦合腔注入锁模-理论和实验研究(申请工学博士学位论文),北京:北京理工大学1991.4

    [2] 徐碣敏,胡富根,曹维群.军事医学科学院院刊,1985;3:315

    [3] 史宏敏.激光医学基础.广州:华南理工大学出版社,1990:80,117

    [4]

    Ham W J,Mueller H A,Goldman A I et al.Science,1974;185:362
    [5]

    Taboada J,Ebbers R W.A ppl O pt,1978;17:2871
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    沈阳化工大学材料科学与工程学院 沈阳 110142

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Study of damage effects of rabbit eyes induced by coupling cavity injection mode-locked Nd:YAG laser pulse train

  • 1. Institute of Radiation Medicine, Academy of Military Medical Sciences, Beijing, 100850;
  • 2. Beijing Institute of Technology, Beijing, 100081

Abstract: A comparison of acute ocular damages of rabbit eyes induced by the coupling cavity injection mode-locked Nd:YAG laser picosecond pulse train and its doubled frequency 0.53μm pulse train and nanosecond pulse train using solid color centre crystal mode-locked was reported.The result showed that the ocular damages(ED50) was 83.5μJ at 1.06μm for mode-locked picosecond laser pulse train;the energy required to produce lesions in 40% events was 62.2μJ at 1.06μm and 6.1μJ at 0.53μm,ratio 10:1,and the dose required in 83.3% events,for nanosecond and picosecond laser pulse train,was 1190μJ and 260μJ at 1.06μm,ratio 5:1 approximately.

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