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Imaging Subsurface Photodisruption in Human Sclera with FD-OCT

机译:用FD-OCT成像人巩膜下的光破坏

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摘要

Photodisruption of femtosecond laser at 1700nm wavelength has been demonstrated as a potential subsurface surgical method that can be used in trabeculectomy for glaucoma treatment without causing failure due to scarring at the level of conjunctiva and underlying tissue . In this study, Fourier domain optical coherence tomography (FD-OCT) technology is used to demonstrate high speed non-invasive imaging of high precision photodisruption in human sclera. Photodisruption cavities of different size in human sclera can reveal itself in its 3D FDOCT image. Transclera channel cut from back to surface and partial transclera channel are easily identified in 3D OCT image. The whole 3D data set acquired with high speed frequency domain OCT system permits further quantitative analysis of subsurface phtodisruption incisions. The preliminary results indicate that high speed frequency domain OCT system is a good candidate for imaging subsurface photodisruption with femtosecond laser and its 3D image may provide good guidance during surgical procedures when it is integrated with laser ablation system.
机译:飞秒激光在1700nm波长上的光破坏被证明是一种潜在的地下手术方法,可用于小梁切除术中的青光眼治疗,而不会由于结膜和底层组织的瘢痕形成而导致失败。在这项研究中,傅里叶域光学相干断层扫描(FD-OCT)技术用于演示人巩膜中高精度光致破裂的高速无创成像。人类巩膜中不同大小的光破裂腔可以在其3D FDOCT图像中显示出来。从3D OCT图像中可以轻松识别从背面切开的跨膜通道和部分跨膜通道。利用高速频域OCT系统获取的整个3D数据集可以进一步定量分析地下光破坏切口。初步结果表明,高速频域OCT系统是飞秒激光对地下光破坏进行成像的良好候选者,当其与激光消融系统集成在一起时,其3D图像可在外科手术过程中提供良好的指导。

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