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Optical imaging of the retina in response to the electrical stimulation

机译:视网膜的光学成像响应电刺激

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Purposes: To determine if reflectance changes of the retina can be detected following electrical stimulation to the retina using a newly developed optical-imaging fundus camera. Methods : Eyes of cats were examined after pupil dilation. Retina was stimulated either focally by a ball-type electrode (BE) placed on the fenestrated sclera or diffusely using a ring -type electrode (RE) placed on the corneoscleral limbus. Electrical stimulation by biphasic pulse trains was applied for 4 seconds. Fundus images with near-infrared (800-880 nm) light were obtained between 2 seconds before and 20 seconds after the electrical stimulation (ES). A two-dimensional map of the reflectance changes (RCs) was constructed. The effect of Tetrodotoxin (TTX) was also investigated on RCs by ES using RE. Results: RCs were observed around the retinal locus where the stimulating electrodes were positioned (BE) or in the retina of the posterior pole (RE), in which the latency was about 0.5 to 1.0 sec and the peak time about 2 to 5 sec after the onset of ES. The intensity of the RCs increased with the increase of the stimulus current in both cases. RCs were completely suppressed after the injection of TTX. Conclusions : The functional changes of the retina either by focal or diffuse electrical stimulation were successfully detected by optical imaging of the retina. The contribution of retinal ganglion cells on RCs by ES was confirmed by TTX experiment. This method may be applied to the objective evaluation of the artificial retina.
机译:用途:为了确定视网膜的反射变化是否可以在使用新开发的光学成像眼底相机对视网膜进行电刺激后检测到视网膜。方法:在瞳孔扩张后检查猫的眼睛。通过将伴随在未封入的巩膜上的球型电极(BE)源于粘附的巩膜或使用放置在CorneoScleral Limbus上的环 - 型电极(RE)来刺激视网膜。通过双相脉冲列车电刺激施加4秒。在电刺激后2秒和20秒之间获得近红外(800-880nm)光的眼底图像在电刺激后20秒。构建了反射率变化(RCS)的二维图。通过ES使用RE在RCS上研究了四曲毒素(TTX)的作用。结果:围绕视网膜基因座观察RCS,其中刺激电极被定位(是)或在后极(RE)的视网膜中,其中潜伏期为约0.5至1.0秒,峰值时间约为2至5秒之后es的开始。随着两种情况下刺激电流的增加,RC的强度增加。在注射TTX后,RCS完全抑制。结论:通过视网膜的光学成像成功检测了通过焦点或弥漫性电刺激的视网膜的功能变化。通过TTX实验证实了视网膜神经节细胞对RCS上的贡献。该方法可以应用于人工视网膜的客观评估。

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