Retinal damage and laser-induced breakdown produced by ultrashort-pulse lasers.

IF 2.4 3区 医学 Q2 OPHTHALMOLOGY Graefe’s Archive for Clinical and Experimental Ophthalmology Pub Date : 1996-08-01 DOI:10.1007/BF02343045
C P Cain, C D DiCarlo, B A Rockwell, P K Kennedy, G D Noojin, D J Stolarski, D X Hammer, C A Toth, W P Roach
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引用次数: 33

Abstract

Background: In vivo retinal injury studies using ultra-short-pulse lasers at visible wavelengths for both rabbit and primate eyes have shown that the degree of injury to the retina is not proportional to the pulse energy, especially at suprathreshold levels. In this paper we present results of calculations and measurements for laser-induced breakdown (LIB), bubble generation, and self-focusing within the eye.

Methods: We recorded on video and measured the first in vivo LIB and bubble generation thresholds within the vitreous in rabbit and primate eyes, using external optics and femtosecond pulses. These thresholds were then compared with calculations from our LIB model, and calculations were made for self-focusing effects within the vitreous for the high peak power pulses.

Results: Results of our nonlinear modeling and calculations for self-focusing and LIB within the eye were compared with experimental results. The LIB ED50 bubble threshold for the monkey eye was measured and found to be 0.56 microJ at 120 fs, compared with the minimum visible lesion (MVL) threshold of 0.43 microJ at 90 fs. Self-focusing effects were found to be possible for pulsewidths below 1 ps and are probably a contributing factor in femtosecond-pulse LIB in the eye.

Conclusions: Based on our measurements for the MVL thresholds and LIB bubble generation thresholds in the monkey eye, we conclude that in the femtosecond pulsewidth regime for visible laser pulses, LIB and self-focusing are contributing factors in the lesion thresholds measured. Our results may also explain why it is so difficult to produce hemorrhagic lesions in either the rabbit or primate eye with visible 100-fs laser pulses even at 100 microJ of energy.

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超短脉冲激光引起的视网膜损伤和激光诱导击穿。
背景:使用可见波长超短脉冲激光对兔子和灵长类动物眼睛进行的体内视网膜损伤研究表明,对视网膜的损伤程度与脉冲能量不成比例,特别是在超阈值水平下。本文介绍了激光诱导击穿(LIB)、气泡产生和眼内自聚焦的计算和测量结果。方法:利用外光学技术和飞秒脉冲技术,对兔和灵长类动物眼玻璃体内的第一次体内LIB和气泡产生阈值进行视频记录和测量。然后将这些阈值与我们的LIB模型的计算结果进行比较,并计算了高峰值功率脉冲在玻璃体内的自聚焦效应。结果:我们对眼内自聚焦和LIB的非线性建模和计算结果与实验结果进行了比较。测量猴眼的LIB ED50气泡阈值,发现在120 fs时为0.56 microJ,而最小可见病变(MVL)阈值在90 fs时为0.43 microJ。自聚焦效应被发现在脉冲宽度低于1ps时是可能的,并且可能是眼睛飞秒脉冲LIB的一个促成因素。结论:基于我们对猴眼MVL阈值和LIB气泡产生阈值的测量,我们得出结论,在可见激光脉冲的飞秒脉宽范围内,LIB和自聚焦是测量到的病变阈值的影响因素。我们的研究结果也可以解释为什么即使在100微焦的能量下,100秒激光脉冲也很难在兔子或灵长类动物的眼睛中产生出血性病变。
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来源期刊
CiteScore
5.40
自引率
7.40%
发文量
398
审稿时长
3 months
期刊介绍: Graefe''s Archive for Clinical and Experimental Ophthalmology is a distinguished international journal that presents original clinical reports and clini-cally relevant experimental studies. Founded in 1854 by Albrecht von Graefe to serve as a source of useful clinical information and a stimulus for discussion, the journal has published articles by leading ophthalmologists and vision research scientists for more than a century. With peer review by an international Editorial Board and prompt English-language publication, Graefe''s Archive provides rapid dissemination of clinical and clinically related experimental information.
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