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Femtosecond laser subsurface scleral treatment in cadaver human sclera and evaluation using two-photon and confocal microscopy

机译:Femtosecond激光地下巩膜治疗​​在尸体巩膜巩膜中,使用双光子和共聚焦显微镜评估

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Glaucoma is the second-leading cause of blindness worldwide and is often associated with elevated intraocular pressure (IOP). Partial-thickness drainage channels can be created with femtosecond laser in the translucent sclera for the potential treatment of glaucoma. We demonstrate the creation of partial-thickness subsurface drainage channels with the femtosecond laser in the cadaver human eyeballs and describe the application of two-photon microscopy and confocal microscopy for noninvasive imaging of the femtosecond laser created partial-thickness scleral channels in cadaver human eyes. A femtosecond laser operating at a wavelength of 1700 nm was scanned along a rectangular raster pattern to create the partial thickness subsurface drainage channels in the sclera of cadaver human eyes. Analysis of the dimensions and location of these channels is important in understanding their effects. We describe the application of two-photon microscopy and confocal microscopy for noninvasive imaging of the femtosecond laser created partial-thickness scleral channels in cadaver human eyes. High-resolution images, hundreds of microns deep in the sclera, were obtained to allow determination of the shape and dimension of such partial thickness subsurface scleral channels. Our studies suggest that the confocal and two-photon microscopy can be used to investigate femtosecond-laser created partial-thickness drainage channels in the sclera of cadaver human eyes.
机译:青光眼是全球失明的第二个主要原因,通常与眼压升高(IOP)有关。部分厚度排水通道可以在半透明巩膜中使用飞秒激光器产生用于潜在的青光眼的潜在治疗。我们展示了在尸体中的尸体激光器中的部分厚度地下排水通道的创建,并描述了两光子显微镜和共聚焦显微镜的应用,用于在尸体眼睛中产生部分厚度巩膜通道的非侵入性成像。沿着矩形光栅图案扫描在1700nm波长的飞秒激光器,以在尸体眼睛的巩膜中的巩膜中产生部分厚度地下排水通道。分析这些通道的尺寸和位置对于了解其效果很重要。我们描述了双光子显微镜和共聚焦显微镜的应用,以进行小飞秒激光的非侵入性成像在尸体眼中产生部分厚度巩膜通道。获得高分辨率图像,巩膜中的数百微米,得到施加的,以允许确定这种部分厚度地下巩膜通道的形状和尺寸。我们的研究表明,共聚焦和双光子显微镜可用于调查小飞秒激光在尸体眼中的巩膜中产生的部分厚度排水通道。

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