首页> 外文会议>Conference on Optical Biopsy and Tissue Optics 5-6 July 2000 Amsterdam, the Netherlands >Plasma-mediated tissue ablation with nanosecond laser pulses in the spectral region from ultraviolet to near-infrared: In-vitro study with porcine myocardium tissue
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Plasma-mediated tissue ablation with nanosecond laser pulses in the spectral region from ultraviolet to near-infrared: In-vitro study with porcine myocardium tissue

机译:等离子体介导的组织消融,在从紫外线到近红外的光谱范围内用纳秒激光脉冲:猪心肌组织的体外研究

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With a Q-switched Nd:YAG laser (the fundamental band and its harmonics), ablation characteristics have been investigated in vitro for porcine myocardium tissue. At a constant laser intensity of approx 2.0 GW/cm~2, the laser pulses irradiated the tissue and the depth of the ablation hole formed was measured. After the laser irradiation, the tissue was histologically analyzed with an optical microscope and a polarization optical microscope to evaluate the laser-induced damage in the tissue. It was found that the ablation rate for a 1064-nm laser irradiation was comparably high to that for a 355-nm laser irradiation, and the ablation efficiency was lower for a 266-nm laser irradiation than for a 355-nm laser irradiation. During the ablation, strong plasma formation was observed for 266 nm and 1064 nm, while the laser-induced optical emission was dominated by fluorescence for 355 nm. The histology showed that the thermal damage thickness decreased with decreasing the wavelength for 266, 355 and 532 nm, but for 1064 nm thermal damage was very limited although a certain extent of mechanical damage was observed. Based on these experimental results, the ablation mechanism for each laser wavelength and the optimum laser wavelength for the TMLR (transmyocardial laser revascularization) are discussed.
机译:使用调Q的Nd:YAG激光(基带及其谐波),已在体外研究了猪心肌组织的消融特性。在约2.0 GW / cm〜2的恒定激光强度下,激光脉冲照射到组织,并测量形成的消融孔的深度。激光照射后,用光学显微镜和偏振光学显微镜对组织进行组织学分析,以评估激光诱导的组织损伤。发现1064nm激光辐照的烧蚀速率与355nm激光辐照的烧蚀速率相当高,并且266nm激光辐照的烧蚀效率低于355nm激光辐照的烧蚀效率。在消融期间,在266 nm和1064 nm处观察到强烈的等离子体形成,而355 nm的荧光主导了激光诱导的光发射。组织学表明,对于266、355和532 nm,热损伤厚度随着波长的减小而减小,但是对于1064 nm,虽然观察到一定程度的机械损伤,但热损伤非常有限。基于这些实验结果,讨论了每种激光波长的消融机理和TMLR(心肌心肌激光血管重建术)的最佳激光波长。

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