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Neuroprotective effect of transcorneal electrical stimulation on the acute phase of optic nerve injury.

机译:经角膜电刺激对视神经损伤急性期的神经保护作用。

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PURPOSE: Traumatic optic neuropathy often induces a loss of vision that proceeds rapidly within several hours, together with retinal ganglion cell death, in a much slower time course. Electrical stimulation has previously been shown to rescue injured retinal ganglion cells from cell death. The present study tests whether transcorneal electrical stimulation could preserve visual function after an optic nerve crush. METHODS: Transcorneal electrical stimulation was given immediately after a calibrated optic nerve crush. We measured visually evoked potentials (VEPs) in the visual cortex of rats before and immediately after the optic nerve crush and after the transcorneal stimulation to estimate an extent of damage and effects of stimulation in individual animals. In addition, the retinal axons were labeled with a fluorescent anterograde tracer to determine whether the transcorneal electrical stimulation can protect the retinal axons from degeneration. RESULTS: The optic nerve crush was made at an intensitythat does not allow a spontaneous recovery of VEP for 1 week. The transcorneal stimulation immediately increased VEP amplitude impaired by the optic nerve crush, and this augmentation was often preserved after 1 week. In the stimulated animals, a larger amount of retinal axons projected centrally beyond the crushed region in comparison to the unstimulated animals. CONCLUSIONS: Transcorneal electrical stimulation would restore the functional impairment of optic nerve by traumatic injury at a very early stage and protect retinal axons from the ensuing degeneration.
机译:目的:外伤性视神经病变通常会导致视力丧失,这种视力丧失会在数小时内迅速发展,同时视网膜神经节细胞死亡的时间也要慢得多。先前已显示电刺激可从细胞死亡中拯救受损的视网膜神经节细胞。本研究测试经角膜电刺激是否可以保留视神经挤压后的视觉功能。方法:经校准的视神经挤压后立即给予经角膜电刺激。我们在视神经挤压之前和之后以及经角膜刺激之后,在大鼠的视觉皮层中测量了视觉诱发电位(VEP),以估计单个动物的损伤程度和刺激效果。另外,用荧光顺行示踪剂标记视网膜轴突,以确定经角膜电刺激是否可以保护视网膜轴突免于变性。结果:视神经压迫强度不能在1周内自发恢复VEP。经角膜刺激会立即增加视神经挤压损害的VEP幅度,这种增加通常在1周后得以保留。在受刺激的动物中,与未受刺激的动物相比,大量的视网膜轴突突出到压碎区域的中央。结论:经角膜电刺激将在很早的时候就通过外伤性损伤恢复视神经的功能,并保护视网膜轴突免于随后的变性。

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