DocumentCode :
3684416
Title :
A 3D-continuum bidomain model of retinal electrical stimulation using an anatomically detailed mesh
Author :
Farzaneh Shalbaf;Peng Du;Nigel H. Lovell;Socrates Dokos;Ehsan Vaghefi
Author_Institution :
Auckland Bioengineering Institute, the University of Auckland, 1010, New Zealand
fYear :
2015
Firstpage :
2291
Lastpage :
2294
Abstract :
A continuum bidomain model of sub-retinal electrical stimulation on an anatomically detailed mesh of retina is presented. The underlying geometry is made up of 256 B-scans of optical coherence tomography (OCT) images of a healthy human retina, covering approximately 6×2 mm2 centered on the macula. The OCT images are initially segmented and digitized into five major retinal layers comprising passive and active retinal cell types. This computational mesh is then used to model a subretinal hexapolar biphasic electrical stimulation. Our results indicate that the ultra-structure of the retina results in an asymmetric spatial extracellular potential distribution, leading to an irregular pattern of retinal ganglion cell activation. This finding is in contrast to focal circular activation previously reported in retinal electrical stimulation modeling with a uniform mesh.
Keywords :
"Retina","Mathematical model","Electrodes","Computational modeling","Extracellular","Electrical stimulation","Electric potential"
Publisher :
ieee
Conference_Titel :
Engineering in Medicine and Biology Society (EMBC), 2015 37th Annual International Conference of the IEEE
ISSN :
1094-687X
Electronic_ISBN :
1558-4615
Type :
conf
DOI :
10.1109/EMBC.2015.7318850
Filename :
7318850
Link To Document :
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