Glaucoma Research Center - Wills Eye Hospital
Philadelphia, Pennsylvania, 19107, United States
NCT Number: NCT03323164
This study evaluates the possible acute changes in peripapillary blood flow after instillation of antiglaucoma medications in patients with primary open angle glaucoma (POAG), normal tension glaucoma (NTG), or ocular hypertension (OHTN) using Optical Coherence Tomography (OCT) angiography.
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Notify Me18 year–90 year
All sexes
Interventional
Phase 4
Philadelphia, Pennsylvania, 19107, United States
Reduction of intraocular pressure (IOP) with topical antihypertensive medications is the mainstay of initial treatment in patients with OHTN, POAG, and NTG. Many patients, however, continue to experience disease progression despite IOP reduction. Alternative mechanisms of neurodegeneration, including vascular dysregulation and structural susceptibility of the lamina cribrosa, have been proposed as important mechanisms in progression, particularly in cases of NTG.
Prior studies have also found decreased calculated mean ocular perfusion with the use of timolol compared to other antiglaucoma medications in patients with normal tension glaucoma. Visual field deterioration has also been shown to be associated with systemic nocturnal arterial hypotension in patients with NTG, POAG, and after anterior ischemic optic neuropathy. The use of ophthalmic topical beta-blockers has been shown to lower nocturnal diastolic blood pressure and heart rate. Thus, topical beta blockers are often avoided in the treatment of NTG due to the potential risk of reduced optic nerve head perfusion
Studies evaluating optic nerve head (ONH) perfusion are limited. Earlier studies evaluated indirect measurements, such as calculated mean ocular perfusion pressure or systemic hypotension, as indications of optic nerve hypoperfusion. Direct measurements of ocular perfusion have been attempted using retrobulbar color Doppler imaging, which demonstrated decreased short posterior ciliary artery flow velocity in patients with glaucomatous visual field progression. This technique, however, has yielded inconsistent results in other studies, and is only capable of detecting gross changes to ocular blood flow.
Optical Coherence Tomography Angiography (OCTA) is a novel technique first introduced in 2014 using a custom swept-source OCT system.No studies currently exist to evaluate the effects of antiglaucoma medications on peripapillary blood flow using OCTA.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Instillation of one drop in each eye, one-time. Obtaining of OCT angiography scans after 2 hours of instillation.
Other names: Timolol
Instillation of one drop in each eye, one-time. Obtaining of OCT angiography scans after 2 hours of instillation.
Other names: Brimonidine
Time frame: 5.5 hours (3 separate 30 minute OCT Angiography scans with 2 hour post-intervention in between each scan)
Percent change in peripapillary vessel density detected by OCT (optical coherence tomography) Angiography using spectrum amplitude decorrelation angiography (SSADA) algorithm with the use of topical brimonidine or timolol eye drops to lower eye pressure.
Time frame: 5.5 hours (3 separate 30 minute OCT Angiography scans with 2 hour post-intervention in between each scan)
Percent change in peripapillary Flow Index detected by OCT (optical coherence tomography) Angiography using spectrum amplitude decorrelation angiography (SSADA) algorithm with the use of topical brimonidine or timolol eye drops to lower eye pressure.
Time frame: 5.5 hours (3 separate 30 minute OCT Angiography scans with 2 hour post-intervention in between each scan)
Comparison of the percent change in peripapillary vessel density detected by OCT (optical coherence tomography) Angiography using spectrum amplitude decorrelation angiography (SSADA) algorithm before and after the use of topical brimonidine or timolol eye drops to lower eye pressure. The Control groups represent the percent changes in vessel density after using artificial tears. The medicine groups (Brimonidine/Timolol) represents the percent changes in vessel density after using topical brimonidine or timolol drops to lower eye pressure.
Time frame: 5.5 hours (3 separate 30 minute OCT Angiography scans with 2 hour post-intervention in between each scan)
Comparison of the percent change in peripapillary flow index detected by OCT (optical coherence tomography) Angiography using spectrum amplitude decorrelation angiography (SSADA) algorithm before and after the use of topical brimonidine or timolol eye drops to lower eye pressure. The Control groups represent the percent changes in flow index after using artificial tears. The medicine groups (Brimonidine/Timolol) represents the percent changes in flow index after using topical brimonidine or timolol drops to lower eye pressure.
Time frame: 5.5 hours (3 separate 30 minute OCT Angiography scans with 2 hour post-intervention in between each scan)
Comparison of the percent change in optic nerve head vessel density detected by OCT (optical coherence tomography) Angiography using spectrum amplitude decorrelation angiography (SSADA) algorithm before and after the use of topical brimonidine or timolol eye drops to lower eye pressure. The Control groups represent the percent changes in vessel density after using artificial tears. The medicine groups (Brimonidine/Timolol) represents the percent changes in vessel density after using topical brimonidine or timolol drops to lower eye pressure.
Time frame: 5.5 hours (3 separate 30 minute OCT Angiography scans with 2 hour post-intervention in between each scan)
Comparison of the percent change in Optic Nerve Head Flow Index detected by OCT (optical coherence tomography) Angiography using spectrum amplitude decorrelation angiography (SSADA) algorithm before and after the use of topical brimonidine or timolol eye drops to lower eye pressure. The Control groups represent the percent changes in flow index after using artificial tears. The medicine groups (Brimonidine/Timolol) represents the percent changes in flow index after using topical brimonidine or timolol drops to lower eye pressure.
Wills Eye
Other
Changes in Peripapillary Blood Flow After Use of Anti-glaucoma Medications: A Prospective, Quantitative OCT Angiography Study
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View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
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