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Helium-neon laser irradiation attenuates anoxia-induced degeneration of rabbit retinal ganglion cells

机译:氦氖激光照射减轻缺氧诱导的兔视网膜神经节细胞变性

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Abstract: The effect of low-energy laser irradiation, known to delay axonal degeneration in mechanically traumatized nerves, was investigated in rabbit retinal ganglion cells damaged by temporary anoxia. Complete retinal vascular occlusion was induced in 39 rabbits by application of pressure to the cornea, with continuous monitoring under an operating microscope. The duration of occlusion was 15, 30 or 60 minutes. Starting immediately after the cessation of vascular occlusion, half of the rabbits in each group received transcorneal irradiation with a 35-mW helium-neon laser for 5 minutes daily on 10 consecutive days. The nonirradiated rabbits served as controls. Retinal ganglion cell viability was demonstrated by retrograde labeling of their axons with horseradish peroxidase, introduced subdurally into the optic nerve at a distance of 2 mm distal to the globe, 48 hours prior to sacrifice. For labeling intensity controls we used normal, not occluded, animals labeled with horseradish peroxidase by the same method. The animals were sacrificed 2, 4 or 8 weeks after occlusion. Labeling of retinal ganglion cells and their axons was observed in 100% of the normal control animals and in 85% of the irradiated rabbits. The results suggest that low-energy helium-neon laser irradiation attenuates the damage inflicted on the retinal ganglion cells as a result of anoxia. !20
机译:摘要:研究了低能激光辐照对延缓缺氧性损伤的兔视网膜神经节细胞的影响,该辐照可延缓机械创伤神经的轴突变性。通过在角膜上施加压力并在手术显微镜下连续监测,对39只兔诱导了完全的视网膜血管阻塞。阻塞的持续时间为15、30或60分钟。在停止血管闭塞后立即开始,每组中的一半兔子连续35天每天接受35mW氦氖激光经角膜照射,持续5分钟。未辐照的兔子用作对照。通过用辣根过氧化物酶逆行标记它们的轴突来证明视网膜神经节细胞的活力,在处死前48小时将其硬脑膜以远距地球2 mm的距离硬膜下引入视神经。对于标记强度对照,我们使用通过相同方法标记有辣根过氧化物酶的正常动物(未封闭)。闭塞后2、4或8周处死动物。在100%的正常对照动物和85%的经辐照的兔子中观察到了视网膜神经节细胞及其轴突的标记。结果表明,低能氦氖激光照射可减轻缺氧对视网膜神经节细胞造成的损害。 !20

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