Autoregulation of Blood Flow in Human Retina, Optic Nerve, and Choroid Using Novel Vacuum Goggles

Identifier 20200310_nanos_posters_191
Title Autoregulation of Blood Flow in Human Retina, Optic Nerve, and Choroid Using Novel Vacuum Goggles
Creator Ryuya Hashimoto; Zaidoon Al-Share; Nitsan Dudevan-Strier; Jan Full; Julie Nellis; Randy Kardon
Affiliation (RH) (ZA) (NDS) Department of Ophthalmology, University of Iowa, Iowa City, IA; (JF) (JN) (RK) Department of Ophthalmology, University of Iowa and Iowa City VA Medical Center, Iowa City, IA
Subject Diagnostic Tests (ERG, VER, OCT, HRT, mfERG, etc), Eyelid & Adnexal Disease, Vascular Disorders, Neuroimaging
Description Autoregulation of human ocular vascular beds in response to ocular perfusion pressure change (OPP) is not fully understood in healthy and diseased eyes. The purpose of this study was to investigate the dynamics of blood flow in the retina, choroid and optic nerve vascular beds in normal and eyes with optic neuropathy using a novel vacuum goggle device (Equinox Ophthalmic, Newport Beach, CA) which can induce an abrupt lowering of intraocular pressure (IOP).
Date 2020-03
Language eng
Format application/pdf
Type Text
Source 2020 North American Neuro-Ophthalmology Society Annual Meeting
Relation is Part of NANOS Annual Meeting 2020: Poster Session II: Scientific Advancements
Collection Neuro-Ophthalmology Virtual Education Library: NANOS Annual Meeting Collection: https://novel.utah.edu/collection/nanos-annual-meeting-collection/
Publisher North American Neuro-Ophthalmology Society
Holding Institution Spencer S. Eccles Health Sciences Library, University of Utah
Rights Management Copyright 2020. For further information regarding the rights to this collection, please visit: https://NOVEL.utah.edu/about/copyright
ARK ark:/87278/s6rv5z7k
Setname ehsl_novel_nam
ID 1542060
Reference URL https://collections.lib.utah.edu/ark:/87278/s6rv5z7k
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