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首页> 外文期刊>Frontiers in Cellular Neuroscience >Spontaneous Oscillatory Rhythms in the Degenerating Mouse Retina Modulate Retinal Ganglion Cell Responses to Electrical Stimulation
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Spontaneous Oscillatory Rhythms in the Degenerating Mouse Retina Modulate Retinal Ganglion Cell Responses to Electrical Stimulation

机译:退化的小鼠视网膜中的自发振荡节律调节视网膜神经节细胞对电刺激的反应。

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Characterization of the electrical activity of the retina in the animal models of retinal degeneration has been carried out in part to understand the progression of retinal degenerative diseases like age-related macular degeneration (AMD) and retinitis pigmentosa (RP), but also to determine optimum stimulus paradigms for use with retinal prosthetic devices. The models most studied in this regard have been the two lines of mice deficient in the β-subunit of phosphodiesterase ( rd1 and rd10 mice), where the degenerating retinas exhibit characteristic spontaneous hyperactivity and oscillatory local field potentials (LFPs). Additionally, there is a robust ~10 Hz rhythmic burst of retinal ganglion cell (RGC) spikes on the trough of the oscillatory LFP. In rd1 mice, the rhythmic burst of RGC spikes is always phase-locked with the oscillatory LFP and this phase-locking property is preserved regardless of postnatal ages. However, in rd10 mice, the frequency of the oscillatory rhythm changes according to postnatal age, suggesting that this rhythm might be a marker of the stage of degeneration. Furthermore when a biphasic current stimulus is applied to rd10 mice degenerate retina, distinct RGC response patterns that correlate with the stage of degeneration emerge. This review also considers the significance of these response properties.
机译:在视网膜变性动物模型中对视网膜的电活动进行了表征,部分是为了了解与年龄相关性黄斑变性(AMD)和色素性视网膜炎(RP)一样的视网膜变性疾病的进展,而且还确定了最佳方法。与视网膜修复设备一起使用的刺激范例。在这方面研究最多的模型是两系磷酸二酯酶β亚基缺陷的小鼠(rd1和rd10小鼠),其中退化的视网膜表现出特征性的自发性过度活跃和振荡性局部场电位(LFP)。此外,在振荡型LFP的波谷上,视网膜神经节细胞(RGC)尖峰有强劲的〜10 Hz节奏性爆发。在rd1小鼠中,RGC尖峰的节律性爆发总是与振荡LFP锁相,并且无论出生后的年龄如何,该锁相特性都会保留。但是,在rd10小鼠中,振荡节律的频率根据出生后的年龄而变化,这表明该节律可能是变性阶段的标志。此外,当双相电流刺激应用于rd10小鼠视网膜退化时,与退化阶段相关的独特RGC响应模式就会出现。这篇综述还考虑了这些响应特性的重要性。

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