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Pulsed infrared laser irradiation of biological tissue: effect of pulse duration and repetition rate

机译:脉冲红外激光辐照生物组织:脉冲持续时间和重复率的影响

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Abstract: Pulsed laser ablation is a trade off between minimizing thermal damage (for relatively long pulses) and mechanical damage (for relatively short pulses) to tissue adjacent to the ablation crater. Often it is not known what the optimal laser parameters are for a specific application, since clinically used parameters have at least partially been dictated by physical limitations of the laser devices. We recently obtained a novel type of cryogenic continuous wave holmium:YAG laser ($lambda $EQ 2.09 $mu@m) with a galvanometric drive outcouple mirror that acts as a Q-switch. This unique device provides pulse repetition rates from a few Hz up to kHz and the pulse length is variable from $mu@s to ms. The effect of pulse duration and repetition rate on the thermal response of chicken breast is documented using temperature measurements with a thermal camera. We varied the pulse width from 10 $mu@s to 5 ms and fond that these pulse durations can be considered impulses of thermalized optical energy. In this paper some theoretical considerations of the pulse length will be described that support the experimental data. It was also found that even at 1 pulse per second thermal superposition occurs, indicating a much longer thermal relaxation time than predicted by a simple time constant model.!18
机译:摘要:脉冲激光消融是在使对消融坑附近组织的热损伤(相对较长的脉冲)和机械损伤(相对较短的脉冲)之间达到最小的折衷方案。通常不知道对于特定应用而言最佳的激光参数是什么,因为临床上使用的参数至少部分是由激光设备的物理限制所决定的。我们最近获得了一种新型的低温连续波:YAG激光器(λ$ EQ 2.09 $ mu @ m),其振镜驱动耦合镜用作Q开关。这种独特的设备可提供几Hz至kHz的脉冲重复频率,脉冲长度可在$ mu @ s至ms之间变化。脉冲持续时间和重复频率对鸡胸热响应的影响已通过使用热像仪进行温度测量来记录。我们将脉冲宽度从10μs更改为5 ms,并希望将这些脉冲持续时间视为热光能的脉冲。在本文中,将对脉冲长度的一些理论考虑进行描述,以支持实验数据。还发现,即使以每秒1个脉冲的速度发生热叠加,也表明热弛豫时间比简单的时间常数模型预测的要长得多!18

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