Literature DB >> 10230129

A computational model of electrical stimulation of the retinal ganglion cell.

R J Greenberg1, T J Velte, M S Humayun, G N Scarlatis, E de Juan.   

Abstract

Localized retinal electrical stimulation in blind volunteers results in discrete round visual percepts corresponding to the location of the stimulating electrode. The success of such an approach to provide useful vision depends on elucidating the neuronal target of surface electrical stimulation. To determine if electrodes preferentially stimulate ganglion cells directly below them or passing fibers from distant ganglion cells, we developed a compartmental model for electric field stimulation of the retinal ganglion cell (RGC). In this model a RGC is stimulated by extracellular electrical fields with active channels and realistic cell morphology derived directly from a neuronal tracing. Three membrane models were applied: a linear passive model, a Hodgkin-Huxley model with passive dendrites (HH), and a model composed of all active compartments (FCM) with five nonlinear ion channels. Idealized monopolar point and disk stimulating electrodes were positioned above the cell. For the HH and FCM models, the position of lowest cathodal threshold to propagate an action potential was over the soma. Brief (100 microseconds) cathodic stimuli were 20% (HH with disk electrode) to 73% (FCM with point-source) more effective over the soma than over the axon. In the passive model, the axon is preferentially stimulated versus the soma. Although it may be possible to electrically stimulate RGC's near their cell body at lower thresholds than at their axon, these differences are relatively small. Alternative explanations should be sought to explain the focal perceptions observed in previously reported patient trials.

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Year:  1999        PMID: 10230129     DOI: 10.1109/10.759051

Source DB:  PubMed          Journal:  IEEE Trans Biomed Eng        ISSN: 0018-9294            Impact factor:   4.538


  36 in total

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2.  In vivo microstimulation with cathodic and anodic asymmetric waveforms modulates spatiotemporal calcium dynamics in cortical neuropil and pyramidal neurons of male mice.

Authors:  Kevin C Stieger; James R Eles; Kip A Ludwig; Takashi D Y Kozai
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4.  Asymptotic model of electrical stimulation of nerve fibers.

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Journal:  Med Biol Eng Comput       Date:  2012-02-21       Impact factor: 2.602

5.  Strength-duration relationship for extracellular neural stimulation: numerical and analytical models.

Authors:  David Boinagrov; Jim Loudin; Daniel Palanker
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6.  Axonal sodium-channel bands shape the response to electric stimulation in retinal ganglion cells.

Authors:  Shelley I Fried; Aaron C W Lasker; Neal J Desai; Donald K Eddington; Joseph F Rizzo
Journal:  J Neurophysiol       Date:  2009-02-04       Impact factor: 2.714

7.  Activating function of needle electrodes in anisotropic tissue.

Authors:  Liheng Guo; Jonathan P Cranford; John C Neu; Wanda Krassowska Neu
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8.  Influence of the sodium channel band on retinal ganglion cell excitation during electric stimulation--a modeling study.

Authors:  P Werginz; S I Fried; F Rattay
Journal:  Neuroscience       Date:  2014-02-19       Impact factor: 3.590

9.  Stimulation strategies for selective activation of retinal ganglion cell soma and threshold reduction.

Authors:  Yao-Chuan Chang; Dorsa Haji Ghaffari; Robert H Chow; James D Weiland
Journal:  J Neural Eng       Date:  2018-12-18       Impact factor: 5.379

10.  Neural responses elicited by electrical stimulation of the retina.

Authors:  Shih-Jen Chen; Manjunatha Mahadevappa; Roberto Roizenblatt; James Weiland; Mark Humayun
Journal:  Trans Am Ophthalmol Soc       Date:  2006
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