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Preservation of visual cortical function following retinal pigment epithelium transplantation in the RCS rat using optical imaging techniques
Author(s) -
Gias Carlos,
Jones Myles,
Keegan David,
Adamson Peter,
Greenwood John,
Lund Ray,
Martindale John,
Johnston David,
Berwick Jason,
Mayhew John,
Coffey Peter
Publication year - 2007
Publication title -
european journal of neuroscience
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.346
H-Index - 206
eISSN - 1460-9568
pISSN - 0953-816X
DOI - 10.1111/j.1460-9568.2007.05459.x
Subject(s) - transplantation , retinal , retinal pigment epithelium , stimulation , photic stimulation , luminance , retina , neuroscience , biology , medicine , ophthalmology , visual perception , optics , physics , perception
The aim of this study was to determine the extent of cortical functional preservation following retinal pigment epithelium (RPE) transplantation in the Royal College of Surgeons (RCS) rat using single‐wavelength optical imaging and spectroscopy. The cortical responses to visual stimulation in transplanted rats at 6 months post‐transplantation were compared with those from age‐matched untreated dystrophic and non‐dystrophic rats. Our results show that cortical responses were evoked in non‐dystrophic rats to both luminance changes and pattern stimulation, whereas no response was found in untreated dystrophic animals to any of the visual stimuli tested. In contrast, a cortical response was elicited in most of the transplanted rats to luminance changes and in many of those a response was also evoked to pattern stimulation. Although the transplanted rats did not respond to high spatial frequency information we found evidence of preservation in the cortical processing of luminance changes and low spatial frequency stimulation. Anatomical sections of transplanted rat retinas confirmed the capacity of RPE transplantation to rescue photoreceptors. Good correlation was found between photoreceptor survival and the extent of cortical function preservation determined with optical imaging techniques. This study determined the efficacy of RPE transplantation to preserve visual cortical processing and established optical imaging as a powerful technique for its assessment.

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