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Optical coherence tomography monitoring of vocal fold femtosecond laser microsurgery

机译:声带飞折射率激光显微外科光学相干断层扫描监测

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Surgery of benign pathological alterations of the vocal folds results in permanent disphonia if the bounderies of the vocal fold layers are disregarded. Precise cutting with a femtosecond laser (fs-laser) combined with simultanous imaging of the layered structure enables accurate resections with respect to the layer boundaries. Earlier works demonstrated the capability of optical coherence tomography (OCT) for utilization on vocal folds. The layered structure can be imaged with a spatial resolution of 10 - 20 μm up to a depth of 1.5mm. The performance of fs-laser cutting was analyzed on extracted porcine vocal folds with OCT monitoring. Histopathological sections of the same processed samples could be well correlated with the OCT images. With adequate laser parameters thermal effects induced only negligable damage to the processed tissue. The dimensions of the thermal necrosis were determined to be smaller than 1μm. OCT contolled fs-laser cutting of porcine vocal fold tissue in the μm range with minimal tissue damage is presented.
机译:如果声乐折叠层的边界被忽略,声带的良性病理改变的手术会导致永久性的无与伦比。精确切割与飞秒激光器(FS-激光)结合分层结构的同系成像使得能够对层边界进行精确切除。早期的作品展示了光学相干断层扫描(OCT)的能力,以利用声带对声带的利用。层状结构可以以10-20μm的空间分辨率成像,高度为1.5mm。分析了FS-激光切割的性能,对oct监测提取的猪声带进行了分析。相同加工样品的组织病理学部分可以与OCT图像相同。具有足够的激光参数,热效应仅诱导加工组织的可忽略损坏。测定热坏死的尺寸小于1μm。介绍了OCT调味的FS-激光切割μm范围内的猪声带组织,提出了最小的组织损伤。

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