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Scattering properties and femtosecond laser ablation thresholds of human and canine vocal folds at 776-nm wavelength

机译:人和犬的声带在776 nm波长处的散射特性和飞秒激光消融阈值

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摘要

Ultrafast laser ablation may provide a treatment for vocal fold (VF) scarring. Optical properties of VFs must be known prior to clinical implementation to select appropriate laser surgery conditions. We present scattering lengths of epithelium , superficial lamina propria , and ablation thresholds of human and canine VF tissues. Our experimental approach involves an image-guided, laser-ablation-based method that allows for simultaneous determination of and in these multilayered tissues. Studying eight canine samples, we found , , , and . Studying five human samples, we found and . We studied the effects of cumulative pulse overlap on ablation threshold and found no significant variations beyond 12 overlapping pulses. Interestingly, our studies about the effect of sample storage on the scattering properties of porcine VF show a 60% increase in for fresh porcine VF when compared to the same sample stored in isotonic solution. These results provide guidelines for clinical implementation by enabling selection of optimal laser surgery parameters for subsurface ablation of VF tissues.
机译:超快激光消融可为声带(VF)结疤提供治疗。 VF的光学特性必须在临床实施之前已知,以选择合适的激光手术条件。我们提出了人类和犬VF组织的上皮,浅表固有层以及消融阈值的散射长度。我们的实验方法涉及一种基于图像引导,基于激光烧蚀的方法,该方法可以同时确定这些多层组织并在其中进行检测。通过研究八个犬类样本,我们发现,和。研究五个人体样本,我们发现和。我们研究了累积脉冲重叠对消融阈值的影响,未发现超过12个重叠脉冲的显着变化。有趣的是,我们对样品存储对猪VF散射特性的影响的研究表明,与存储在等渗溶液中的相同样品相比,新鲜猪VF的含量增加了60%。这些结果通过为VF组织的地下消融选择最佳激光手术参数,为临床实施提供了指导。

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