Literature DB >> 12187482

Influence of diffuse luminance flicker on choroidal and optic nerve head blood flow.

G Garhöfer1, K H Huemer, C Zawinka, L Schmetterer, G T Dorner.   

Abstract

PURPOSE: In the retina there is general agreement that blood flow adapts in response to different conditions of light and darkness including diffuse luminance flicker. By contrast, regulation of choroidal blood flow in response to different light conditions is still a matter of controversy. Thus, we investigated the effect of diffuse luminance flicker on choroidal and optic nerve head blood flow.
METHODS: In a group of 14 healthy volunteers, choroidal blood flow and ocular fundus pulsation amplitude were assessed with laser Doppler flowmetry and laser interferometry, respectively. Measurements were done before, during and after stimulation with diffuse luminance flicker. Furthermore, the response of optic nerve head blood flow (ONHBF) to flicker stimulation was measured. Flicker stimuli were generated by a Grass PS2 photostimulator, stimulating at a frequency of 8 Hz. Flicker light consisted of light flashes at a wavelength below 550 nm and produced a retinal irradiance of 140 microW/cm( 2). Blood pressure and pulse rate were measured non-invasively. Paired t-test was used for statistical analysis.
RESULTS: ONHBF increased immediately after onset of flicker stimulation. The maximum increase in ONHBF was 30% +/- 10% (mean +/- SEM, p < 0.008). Both choroidal perfusion parameters were only slightly increased during flicker stimulation, by 2 +/- 2% (laser Doppler flowmetry, p < 0.5) and by 4 +/- 1% (laser interferometry, p < 0.12). After the end of stimulation all values returned to baseline levels.
CONCLUSION: Our study clearly demonstrates that diffuse luminance flicker increases optic nerve head blood flow. In contrast, increased neural activity in the retina has no effect on choroidal blood flow. Thus, choroidal blood flow appears to be largely independent of alterations in retinal metabolism.

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Mesh:

Year:  2002        PMID: 12187482     DOI: 10.1076/ceyr.24.2.109.8164

Source DB:  PubMed          Journal:  Curr Eye Res        ISSN: 0271-3683            Impact factor:   2.424


  19 in total

Review 1.  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
Journal:  Prog Retin Eye Res       Date:  2012-05-03       Impact factor: 21.198

2.  Lamina-specific functional MRI of retinal and choroidal responses to visual stimuli.

Authors:  Yen-Yu I Shih; Bryan H De la Garza; Eric R Muir; William E Rogers; Joseph M Harrison; Jeffrey W Kiel; Timothy Q Duong
Journal:  Invest Ophthalmol Vis Sci       Date:  2011-07-15       Impact factor: 4.799

3.  The role of temporal contrast and blue light in emmetropization.

Authors:  Frances Rucker; Mark Henriksen; Tiffany Yanase; Christopher Taylor
Journal:  Vision Res       Date:  2017-08-01       Impact factor: 1.886

4.  Optical coherence tomography angiography of stimulus evoked hemodynamic responses in individual retinal layers.

Authors:  Taeyoon Son; Benquan Wang; Damber Thapa; Yiming Lu; Yanjun Chen; Dingcai Cao; Xincheng Yao
Journal:  Biomed Opt Express       Date:  2016-07-29       Impact factor: 3.732

5.  Chorioretinal vascular oxygen tension changes in response to light flicker.

Authors:  Akbar Shakoor; Norman P Blair; Marek Mori; Mahnaz Shahidi
Journal:  Invest Ophthalmol Vis Sci       Date:  2006-11       Impact factor: 4.799

6.  Postocclusive reactive hyperemia occurs in the rat retinal circulation but not in the choroid.

Authors:  Guang Li; Jeffrey W Kiel; Damon P Cardenas; Bryan H De La Garza; Timothy Q Duong
Journal:  Invest Ophthalmol Vis Sci       Date:  2013-07-30       Impact factor: 4.799

7.  Retinal Vascular and Oxygen Temporal Dynamic Responses to Light Flicker in Humans.

Authors:  Anthony E Felder; Justin Wanek; Norman P Blair; Mahnaz Shahidi
Journal:  Invest Ophthalmol Vis Sci       Date:  2017-11-01       Impact factor: 4.799

8.  Quantitative retinal and choroidal blood flow during light, dark adaptation and flicker light stimulation in rats using fluorescent microspheres.

Authors:  Yen-Yu I Shih; Lin Wang; Bryan H De La Garza; Guang Li; Grant Cull; Jeffery W Kiel; Timothy Q Duong
Journal:  Curr Eye Res       Date:  2013-01-14       Impact factor: 2.424

Review 9.  Functional hyperemia and mechanisms of neurovascular coupling in the retinal vasculature.

Authors:  Eric A Newman
Journal:  J Cereb Blood Flow Metab       Date:  2013-08-21       Impact factor: 6.200

Review 10.  MRI of rod cell compartment-specific function in disease and treatment in vivo.

Authors:  Bruce A Berkowitz; David Bissig; Robin Roberts
Journal:  Prog Retin Eye Res       Date:  2015-09-04       Impact factor: 21.198

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