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首页> 外文期刊>Vision Research: An International Journal in Visual Science >Retinal ganglion cell response properties in the transcorneal electrically evoked response of the visual system.
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Retinal ganglion cell response properties in the transcorneal electrically evoked response of the visual system.

机译:视神经系统经角膜电诱发的反应中的视网膜神经节细胞反应特性。

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摘要

To identify the retinal origin of a cortical evoked potential elicited by transcorneal electrical stimulation of the visual system (EER), the response properties of retinal ganglion cells (RGCs) of cats to transcorneal electrical stimuli were studied. The discharge latency of RGCs to transcorneal stimulation had two peaks with a high temporal resolution. The latency of early components of the EER is associated with the discharge latency of RGCs. Some RGCs showed prominent oscillatory discharges after transcorneal stimulation. Discharges of ON-bipolar cells responding to transcorneal stimulation were significantly inhibited by intravitreal injection of DL-2-amino-4-phosphonobutyrate (APB), which blocks the ON-pathway. These findings indicate that the EER has far-field potentials that might relate to oscillatory discharges of RGCs, and that ON bipolar cells and their related synaptic sites are involved in transcorneal electrical stimuli. The far-field potentials of the EER may have clinical applications, similar to those of somatosensoric evoked potentials and auditory brain stem potentials.
机译:为了确定通过视觉系统的经角膜电刺激诱发的皮层诱发电位的视网膜起源,研究了猫的视网膜神经节细胞(RGC)对经角膜电刺激的响应特性。 RGC对角膜刺激的放电潜伏期有两个峰,具有较高的时间分辨率。 EER早期成分的潜伏期与RGC的放电潜伏期相关。一些RGC在经角膜刺激后显示出明显的振荡放电。玻璃体腔注射DL-2-氨基-4-膦酸丁酸酯(APB)可以显着抑制响应角膜刺激的ON双极细胞的放电,这会阻断ON通路。这些发现表明,EER具有可能与RGC的振荡放电有关的远场电势,并且ON双极细胞及其相关的突触位点参与了跨角膜电刺激。 EER的远场电势可能具有临床应用,类似于体感诱发电位和听觉脑干电势。

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