Literature DB >> 23821190

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

Guang Li1, Jeffrey W Kiel, Damon P Cardenas, Bryan H De La Garza, Timothy Q Duong.   

Abstract

PURPOSE: We tested the hypothesis that retinal blood flow has a postocclusive reactive hyperemia response modulated by occlusion duration and metabolic activity, and that choroidal blood flow does not.
METHODS: Anesthetized and paralyzed rats (n = 34) were studied. Retinal and choroidal blood flow was measured by laser speckle imaging and laser Doppler flowmetry, respectively. Blood oxygenation level-dependent functional magnetic resonance imaging (BOLD fMRI) was used to measure changes in relative blood oxygenation of the retinal and choroidal circulations. Transient carotid occlusion was elicited with a hydraulic occluder on the common carotid artery. Several occlusion durations were tested during dark, constant light, and flicker light conditions to modulate metabolic demand. The hyperemia response magnitude was quantified by integrating the area above the blood flow baseline for the 3 minutes after release of the occlusion.
RESULTS: Systemic arterial pressure (108.2 ± 1.4 mm Hg) was unaffected by the carotid occlusions, and was similar among animals and conditions. Retinal blood flow had a reactive hyperemia, but choroidal blood flow did not (e.g., 14 ± 2%.sec versus 0.5 ± 4%. sec after 60-second occlusion). The hyperemia magnitude increased as a nonlinear function of occlusion duration and reached a plateau at occlusion durations < 60 second. The hyperemia magnitude was not altered by different lighting conditions at occlusion durations of 15 and 60 seconds. BOLD fMRI results were similar to the laser-based blood flow measurements.
CONCLUSIONS: The results indicate that metabolic local control has a negligible role in choroidal blood flow regulation and only partially accounts for the blood flow behavior in the retinal circulation.

Entities:  

Keywords:  BOLD; MRI; choroidal blood flow; laser Doppler flowmetry; laser speckle imaging; reactive hyperemia; retinal blood flow

Mesh:

Year:  2013        PMID: 23821190      PMCID: PMC3729240          DOI: 10.1167/iovs.13-12404

Source DB:  PubMed          Journal:  Invest Ophthalmol Vis Sci        ISSN: 0146-0404            Impact factor:   4.799


  35 in total

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Authors:  Timothy Q Duong; Shing-Chung Ngan; Kamil Ugurbil; Seong-Gi Kim
Journal:  Invest Ophthalmol Vis Sci       Date:  2002-04       Impact factor: 4.799

2.  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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3.  Simplified laser-speckle-imaging analysis method and its application to retinal blood flow imaging.

Authors:  Haiying Cheng; Timothy Q Duong
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4.  Chorioretinal vascular oxygen tension changes in response to light flicker.

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Journal:  Invest Ophthalmol Vis Sci       Date:  2006-11       Impact factor: 4.799

5.  Intrinsic microvascular control of tissue oxygen delivery.

Authors:  H J Granger; A P Shepherd
Journal:  Microvasc Res       Date:  1973-01       Impact factor: 3.514

6.  Central retinal artery innervation. Absence of adrenergic innervation to the intraocular branches.

Authors:  A M Laties
Journal:  Arch Ophthalmol       Date:  1967-03

7.  Autoregulation of choroidal blood flow in the rabbit.

Authors:  J W Kiel; A P Shepherd
Journal:  Invest Ophthalmol Vis Sci       Date:  1992-07       Impact factor: 4.799

8.  Local control of canine gastric mucosal blood flow.

Authors:  J W Kiel; G L Riedel; A P Shepherd
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Review 9.  Layer-specific anatomical, physiological and functional MRI of the retina.

Authors:  Timothy Q Duong; Machelle T Pardue; Peter M Thulé; Darin E Olson; Haiying Cheng; Govind Nair; Yingxia Li; Moon Kim; Xiaodong Zhang; Qiang Shen
Journal:  NMR Biomed       Date:  2008-11       Impact factor: 4.044

10.  Differences in reactive hyperemia between the intestinal mucosa and muscularis.

Authors:  A P Shepherd; G L Riedel
Journal:  Am J Physiol       Date:  1984-12
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3.  Retinal Oxygen Delivery, Metabolism and Extraction Fraction and Retinal Thickness Immediately Following an Interval of Ophthalmic Vessel Occlusion in Rats.

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