首页> 外文期刊>Behavioural Brain Research: An International Journal >Retinal ganglion cells regenerating through the peripheral nerve graft retain their electroretinographic responses and mediate light-induced behavior.
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Retinal ganglion cells regenerating through the peripheral nerve graft retain their electroretinographic responses and mediate light-induced behavior.

机译:通过周围神经移植物再生的视网膜神经节细胞保留其视网膜电图反应并介导光诱导的行为。

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摘要

To assess the light-induced electrical activity of rodent retinal ganglion cells (RGCs) regenerating into a peripheral nerve (PN) graft we used non-invasive recording of electroretinographic responses to the contrast-reversal of sinusoidal gratings (p-ERG). On comparing the retinas that received a PN graft and retinas with only optic nerve (ON) transection, p-ERG responses were present in grafted retinas as late as 20 months after the surgery while they completely disappeared in non-transplanted controls within 4 months of ON transection. Next, the ability of regenerating RGCs to form functional connections with their targets in the superior colliculus (SC) was tested by a light-escape task. While the bilaterally blinded animals did not improve during the test, unilaterally grafted animals (with the contralateral eye blinded) reached 26% success in the last quartile of the light-escape task. This performance was significantly better than that of blind animals (ANOVA and Student-Newman-Keuls test; p<0.05), but did not reach the level of intact rats (87%). The transplanted rats, therefore, were capable of light perception, but at a sub-normal ability. In addition, we were also able to correlate the amplitude of the p-ERG response with the visual behavioral performance for each transplanted animal. This finding indicates that there is a direct link between the RGC electrophysiological activity and the functional capacity of the regenerated visual pathway. In conclusion, the above results indicate that (a) PN grafts help to preserve the normal electroretinographic activity of injured and regenerating RGCs (b) the regenerated visual pathway is functional and capable of mediating simple visual behavior and that (c) there is a correlation between the light-evoked RGC electrical activity and visual behavior and, finally, that (d) the effect of PN graft on the electrophysiological and functional restoration of the visual pathway is long-lasting or even permanent.
机译:为了评估啮齿动物视网膜神经节细胞(RGCs)再生为周围神经(PN)移植物的光诱导电活动,我们使用了无创记录的视网膜电图对正弦光栅(p-ERG)反转的反应。在比较接受PN移植的视网膜和仅有视神经(ON)横断的视网膜时,在术后20个月后的移植视网膜中均存在p-ERG反应,而在未移植的对照中,它们在4个月内完全消失。横切。接下来,通过避光任务测试了再生RGC与上丘(SC)中的靶标形成功能连接的能力。尽管双盲动物在测试过程中没有改善,但单侧移植的动物(对侧双眼视力不佳)在避光任务的最后四分之一中达到了26%的成功率。该性能明显优于盲人动物(ANOVA和Student-Newman-Keuls检验; p <0.05),但未达到完整大鼠的水平(87%)。因此,移植的大鼠能够感知光线,但能力低于正常水平。此外,我们还能够将p-ERG反应的幅度与每只移植动物的视觉行为表现相关联。这一发现表明,RGC电生理活性与再生视觉通路的功能能力之间存在直接联系。总之,以上结果表明:(a)PN移植物有助于保留受损和再生的RGC的正常视网膜电图活性(b)再生的视觉通路是功能性的并且能够介导简单的视觉行为,并且(c)存在相关性在光诱发的RGC电活动和视觉行为之间,最后,(d)PN移植物对视觉通路的电生理和功能恢复的影响是持久的,甚至是永久的。

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