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Damage mechanisms of pico- and femtosecond laser retinal lesions as viewed by electron microscopy

机译:电子显微镜观察皮秒和飞秒激光视网膜病变的损伤机制

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Abstract: Retinal lesions produced by ultrashort laser pulses in the pico- and femtosecond range were examined by electron microscopy. Retinal pigment epithelial (RPE) cells that contained fractured and striated melanosomes typically exhibited severe damage to the other components of the cell. However, having observed RPE cell damage without coincident fractured melanosomes, it is thought that melanosome fracture itself is not responsible for the damage that occurs within the RPE cell. Nevertheless, the percentage of melanosomes fractured per lesion seems to parallel the severity of damage within that lesion site. No trend existed between percentage of melanosomes fractured and the peak power of laser delivery. However, with decreasing laser pulsewidth, there was a decrease in the percentage of melanosomes showing fracture.!14
机译:摘要:通过电子显微镜检查了皮秒和飞秒范围内的超短激光脉冲产生的视网膜病变。视网膜色素上皮(RPE)的细胞包含破碎的和条纹的黑素体通常表现出严重损害细胞的其他组件。然而,已经观察到RPE细胞损伤而没有同时破裂的黑素体破裂,据认为,黑素体破裂本身不负责RPE细胞内发生的损伤。然而,每个病变处破裂的黑素体的百分比似乎与该病变部位内损伤的严重程度平行。黑色素体的断裂百分比与激光传输的峰值功率之间没有趋势。但是,随着激光脉冲宽度的减小,表现出破裂的黑素体的百分比也降低了!14

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