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Stimulation strategies for selective activation of retinal ganglion cells

机译:选择性激活视网膜神经节细胞的刺激策略

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Retinal prosthetic implants have shown potential to restore partial vision to patients blinded by retinitis pigmentosa or dry age-related macular degeneration, via a camera-driven multielectrode array that electrically stimulates surviving retinal neurons. Commercial epi-retinal prostheses mostly use charge-balanced symmetric cathodic-first biphasic pulses to depolarize retinal ganglion cells (RGCs) and bipolar cells (BCs), resulting in the perception of light in blind patients. However, previous clinical study for patients with Argus II epiretinal implants reported most percepts evoked by single electrode stimulation were elongated and aligned with estimated axon path of retinal ganglion cells, suggesting the activation of axon bundles. In this project, using an established genetically encoded calcium indicator (GECI), we performed in vitro calcium imaging for different stimulation paradigms, focusing primarily on short duration pulse that can avoid axonal stimulation and selective activate targeted RGC soma. The findings support the possibility to manipulate the responses of RGCs through varying the stimulation waveform, thus potentially forming more ideal shape perception with higher spatial resolution in future retinal prosthesis design.
机译:视网膜假体植入物已显示出潜力,可以通过摄像机驱动的多电极阵列来电刺激存活的视网膜神经元,从而使因色素性视网膜炎或与年龄相关的黄斑变性干燥而失明的患者恢复部分视力。商业化的视网膜假体大多使用电荷平衡的对称阴极优先双相脉冲使视网膜神经节细胞(RGCs)和双极细胞(BCs)去极化,从而导致盲人患者感觉到光。然而,先前针对Argus II前视网膜植入物的患者的临床研究报告称,单电极刺激引起的大多数感觉都被拉长,并与视网膜神经节细胞的轴突路径一致,提示轴突束被激活。在该项目中,我们使用已建立的遗传钙指示剂(GECI),针对不同的刺激范例进行了体外钙成像,主要关注可避免轴突刺激的短时脉冲,并选择性激活了靶向RGC体细胞。这些发现支持通过改变刺激波形来操纵RGC的反应的可能性,从而有可能在未来的视网膜假体设计中以更高的空间分辨率形成更理想的形状感知。

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