Literature DB >> 17088544

Structural and functional MRI reveals multiple retinal layers.

Haiying Cheng1, Govind Nair, Tiffany A Walker, Moon K Kim, Machelle T Pardue, Peter M Thulé, Darin E Olson, Timothy Q Duong.   

Abstract

MRI is a noninvasive diagnostic modality that reveals anatomy, physiology, and function in vivo without depth limitation or optical interference. MRI application to the retina, however, remains challenging. We improved spatial resolution to resolve layer-specific structure and functional responses in the retina and confirmed the laminar resolution in an established animal model of retinal degeneration. Structural MRI of normal rat retinas revealed three bands corresponding histologically to (i) the combined ganglion cell layer/inner nuclear layer plus the embedded retinal vessels, (ii) the avascular outer nuclear (photoreceptor) layer and its photoreceptor segments, and (iii) the choroidal vascular layer. Imaging with an intravascular contrast agent (gadolinium-diethylene-tri-amine-pentaacetic acid) enhanced the retinal and choroidal vascular layers bounding the retina, but not the avascular outer nuclear layer and the vitreous. Similarly, blood-oxygen-level-dependent (BOLD) functional MRI revealed layer-specific responses to hyperoxia and hypercapnia. Importantly, layer-specific BOLD responses in the two vascular layers were divergent, suggesting the two vasculatures are differentially regulated. To corroborate sensitivity and specificity, we applied layer-specific MRI to document photoreceptor degeneration in Royal College of Surgeons rats. Consistent with histology, layer-specific MRI detected degeneration of the outer nuclear layer. Surprisingly, MRI revealed increased thickness in the choroidal vascular layer and diminished BOLD responses to hyperoxia and hypercapnia in the Royal College of Surgeons rat retinas, suggesting perturbation of vascular reactivity secondary to photoreceptor loss. We conclude that MRI is a powerful investigative tool capable of resolving lamina-specific structures and functional responses in the retina as well as probing lamina-specific changes in retinal diseases.

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Year:  2006        PMID: 17088544      PMCID: PMC1859962          DOI: 10.1073/pnas.0605790103

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  32 in total

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6.  Magnetic resonance imaging of tissue and vascular layers in the cat retina.

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  91 in total

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4.  Layer-specific blood-flow MRI of retinitis pigmentosa in RCS rats.

Authors:  Guang Li; Bryan De La Garza; Yen-Yu I Shih; Eric R Muir; Timothy Q Duong
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5.  3D magnetic resonance microscopy of the ex vivo retina.

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6.  High-resolution fMRI maps of cortical activation in nonhuman primates: correlation with intrinsic signal optical images.

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Journal:  ILAR J       Date:  2008

Review 7.  Cellular and physiological mechanisms underlying blood flow regulation in the retina and choroid in health and disease.

Authors:  Joanna Kur; Eric A Newman; Tailoi Chan-Ling
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8.  Retinal ion regulation in a mouse model of diabetic retinopathy: natural history and the effect of Cu/Zn superoxide dismutase overexpression.

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9.  Blood flow magnetic resonance imaging of retinal degeneration.

Authors:  Yingxia Li; Haiying Cheng; Qiang Shen; Moon Kim; Peter M Thule; Darin E Olson; Machelle T Pardue; Timothy Q Duong
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Review 10.  Clinical application of MRI in ophthalmology.

Authors:  Kelly A Townsend; Gadi Wollstein; Joel S Schuman
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