» Articles » PMID: 25343761

Optimizing the Electrical Stimulation of Retinal Ganglion Cells

Overview
Publisher IEEE
Date 2014 Oct 25
PMID 25343761
Citations 20
Authors
Affiliations
Soon will be listed here.
Abstract

Epiretinal prostheses aim to restore visual perception in the blind through electrical stimulation of surviving retinal ganglion cells (RGCs). While the effects of several waveform parameters (e.g., phase duration) on stimulation efficacy have been described, their relative influence remains unclear. Further, morphological differences between RGC classes represent a key source of variability that has not been accounted for in previous studies. Here we investigate the effect of electrical stimulus waveform parameters on activation of an anatomically homogenous RGC population and describe a technique for identifying optimal stimulus parameters to minimize the required stimulus charge. Responses of rat A2-type RGCs to a broad array of biphasic stimulation parameters, delivered via an epiretinal stimulating electrode (200 × 200 μ m) were recorded using whole-cell current clamp techniques. The data demonstrate that for rectangular charge-balanced stimuli, phase duration and polarity have the largest effect on threshold current amplitude-cells were most responsive to cathodic-first pulses of short phase duration. Waveform asymmetry and increases in interphase interval further reduced thresholds. Using optimal waveform parameters, we observed a drop in stimulus efficacy with increasing stimulation frequency. This was more pronounced for large cells. Our results demonstrate that careful choice of electrical waveform parameters can significantly improve the efficacy of electrical stimulation and the efficacy of implantable neurostimulators for the retina.

Citing Articles

Electrical stimulation of neuroretinas with 3D pyrolytic carbon electrodes.

Kusumanchi P, Madsen J, Bek T, Sylvest Keller S, Davidsen R Biomed Microdevices. 2025; 27(1):7.

PMID: 39934449 PMC: 11813987. DOI: 10.1007/s10544-024-00729-8.


Noninvasive imaging-guided ultrasonic neurostimulation with arbitrary 2D patterns and its application for high-quality vision restoration.

Lu G, Gong C, Sun Y, Qian X, Rajendran Nair D, Li R Nat Commun. 2024; 15(1):4481.

PMID: 38802397 PMC: 11130148. DOI: 10.1038/s41467-024-48683-6.


Asymmetric charge balanced waveforms direct retinal ganglion cell axon growth.

Peng M, Iseri E, Simonyan A, Lam P, Kim T, Medvidovic S Sci Rep. 2023; 13(1):13233.

PMID: 37580344 PMC: 10425404. DOI: 10.1038/s41598-023-40097-6.


The Influence of Electrode Properties on Induced Voltage Gradient Along the Rat Optic Nerve.

Paknahad J, Machnoor M, Lazzi G, Gokoffski K IEEE J Electromagn RF Microw Med Biol. 2023; 6(3):321-330.

PMID: 36910030 PMC: 10004096. DOI: 10.1109/jerm.2022.3165171.


Morphological Factors that Underlie Neural Sensitivity to Stimulation in the Retina.

Raghuram V, Werginz P, Fried S, Timko B Adv Nanobiomed Res. 2022; 1(12).

PMID: 35399546 PMC: 8993153. DOI: 10.1002/anbr.202100069.