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Improving the spatial resolution of epiretinal implants by increasing stimulus pulse duration

机译:通过增加刺激脉冲持续时间来提高前视网膜植入物的空间分辨率

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摘要

Retinal prosthetic implants are the only approved treatment for retinitis pigmentosa, a disease of the eye that causes blindness through gradual degeneration of photoreceptors. An array of microelectrodes triggered by input from a camera stimulates surviving retinal neurons, each electrode acting as a pixel. Unintended stimulation of retinal ganglion cell axons causes patients to see large, oblong shapes of light, rather than focal spots, making it difficult for them to perceive forms. To address this problem, we performed calcium imaging in isolated retinas and mapped the patterns of cells activated by different electrical stimulation protocols. We found that pulse durations two orders of magnitude longer than those typically used in existing implants stimulate inner retinal neurons while avoiding activation of ganglion cell axons, thus confining retinal responses to the site of the electrode. We show that multielectrode stimulation with 25-ms pulses can pattern letters on the retina corresponding to a Snellen acuity of 20/312. We validated our findings in a patient with an implanted epiretinal prosthesis by demonstrating that 25-ms pulses evoke focal spots of light.
机译:视网膜假体植入物是唯一批准的色素性视网膜炎的治疗方法,色素性视网膜炎是一种通过逐渐使感光细胞退化而导致失明的眼病。由摄像头输入触发的微电极阵列刺激存活的视网膜神经元,每个电极都充当像素。视网膜神经节细胞轴突的意外刺激会导致患者看到大而长的椭圆形光,而不是焦点,从而使他们难以感知形态。为了解决这个问题,我们在孤立的视网膜中进行了钙成像,并绘制了由不同电刺激方案激活的细胞的模式。我们发现,脉冲持续时间比现有植入物中通常使用的脉冲持续时间长两个数量级,从而刺激了视网膜内神经元,同时避免了神经节细胞轴突的激活,从而限制了视网膜对电极部位的反应。我们显示,用25毫秒脉冲的多电极刺激可以在视网膜上图案化字母,对应于20/312的Snellen视力。我们通过证实25毫秒的脉冲会引起光的焦点来验证我们在植入视网膜前假体的患者中的发现。

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