Venkatesh S, Guthrie S, Cruickshank F R, Bailey R T, Foulds W S, Lee W R
Br J Ophthalmol. 1985 Feb;69(2):92-5. doi: 10.1136/bjo.69.2.92.
Q-switched pulses from a neodymium/YAG (yttrium-aluminium-garnet) laser were passed through corneal discs taken from the enucleated eyes of three baboons and four rabbits. The time course of heat dissipation following absorption of laser energy by the tissue was studied with the use of a second continuous wave laser beam acting as a probe. It was found that the absorption of each neodymium/YAG pulse created a transient divergent lens within the cornea as theoretical considerations predicted. The relaxation time that characterised the decay of this thermal lens for a 1/e laser beam diameter of 2.0 mm was found to be 2.3 +/- 0.1 s (mean +/- standard error for 12 separate groups of measurements). Our results show that Q-switched laser pulses passing through apparently unaffected transparent tissues can induce thermal lens effects which persist for several seconds. The optical transfer of each pulse in a stream will be identical only if enough time is left between pulses for the tissues to return to their initial state. Therefore, when such laser pulses sharply focused to perform high precision intraocular surgery are used, thermal lensing in the transparent ocular media must limit the rate at which pulses can be usefully delivered.
钕/钇铝石榴石(Nd/YAG)激光的调Q脉冲穿过取自三只狒狒和四只兔子摘除眼球的角膜切片。利用作为探测器的第二束连续波激光束,研究了组织吸收激光能量后热耗散的时间进程。结果发现,正如理论分析所预测的那样,每个钕/钇铝石榴石脉冲的吸收在角膜内产生了一个瞬态发散透镜。对于直径为2.0毫米的1/e激光束,表征该热透镜衰减的弛豫时间为2.3±0.1秒(12个独立测量组的平均值±标准误差)。我们的结果表明,调Q激光脉冲穿过看似未受影响的透明组织时,可诱导持续数秒的热透镜效应。仅当脉冲之间留有足够时间使组织恢复到初始状态时,一连串脉冲中的每个脉冲的光学传递才会相同。因此,当使用这种聚焦极细以进行高精度眼内手术的激光脉冲时,透明眼内介质中的热透镜效应必然会限制脉冲能够有效发射的速率。