University of Texas at Austin, Department of Mechanical Engineering, Austin, Texas 78712.
J Biomed Opt. 2013 Nov;18(11):118001. doi: 10.1117/1.JBO.18.11.118001.
Toward developing a new method for restoring tissue viscoelasticity in scarred vocal folds, we previously proposed a method to localize biomaterials within subepithelial voids ablated using ultrafast laser pulses. The clinical implementation of this method necessitates the quantification of the laser parameters for ablating scarred tissue. Here, we present a comprehensive study of these parameters including ablation threshold and bubble lifetime in healthy and scarred tissues. We also present a new method for extracting tissue-specific ablation threshold and scattering lengths of different tissue layers. This method involves finding the ablation threshold at multiple depths and solving the equations based on Beer's law of light attenuation for each depth to estimate the unknown parameters. Measured threshold fluences were 1.75 J/cm2 for vocal folds and 0.5 J/cm2 for cheek pouches for 3-ps, 776-nm laser pulses. Scarred pouches exhibited 30% lower threshold than healthy pouches, possibly due to the degraded mechanical properties of scarred collagen during wound healing. The analysis of tissue architecture indicated a direct correlation between the ablation threshold and tissue tensile strength and that the bubble lifetime is inversely related to tissue stiffness. Overall, this study sheds light on the required laser parameters for successful implementation of ultrafast laser ablation for phonosurgery.
为了开发一种新的方法来恢复瘢痕性声带组织的粘弹性,我们之前提出了一种方法,即在使用超快激光脉冲消融的黏膜下空隙中定位生物材料。该方法的临床实施需要定量确定用于消融瘢痕组织的激光参数。在这里,我们对这些参数进行了全面研究,包括健康组织和瘢痕组织中的消融阈值和气泡寿命。我们还提出了一种新的方法来提取特定于组织的消融阈值和不同组织层的散射长度。该方法包括在多个深度找到消融阈值,并根据每个深度的光衰减 Beer 定律求解方程,以估计未知参数。对于 3-ps、776nm 激光脉冲,测量的阈值通量分别为 1.75 J/cm2 用于声带和 0.5 J/cm2 用于颊囊。瘢痕囊比健康囊的阈值低 30%,这可能是由于在伤口愈合过程中瘢痕胶原的机械性能下降所致。组织结构的分析表明,消融阈值与组织拉伸强度之间存在直接相关性,而气泡寿命与组织刚度呈反比关系。总的来说,这项研究阐明了成功实施超声速激光消融在嗓音手术中的所需激光参数。