Guys and St Thomas NHS Foundation Trust
London, SE1 7EH, United Kingdom
NCT Number: NCT02765308
Uveitis is a disease that affects over 2 million people around the globe, and can ultimately lead to blindness. The proportion of patients with uveitis who become blind has not been reduced over the past 30 years, and this is therefore an area that demands further research. One of the major causes of blindness in uveitic patients is the development of uveitic glaucoma, which occurs in 10-20% of uveitic eyes. This is likely to occur for reasons related to the uveitis itself, but can also be caused as a side effect of the corticosteroids used to treat uveitis. The raised IOP in uveitis is more difficult to treat than other types of glaucoma.
To enable more effective treatment of uveitic glaucoma, the investigators need to understand more clearly the mechanisms which underlie this process. The investigators therefore propose a study to examine the contribution of altered aqueous dynamics to the development of raised IOP in uveitis.
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Notify Me18 year–90 year
All sexes
Observational
London, SE1 7EH, United Kingdom
The investigators propose to undertake a cross-sectional observational study of patients with recurrent idiopathic acute anterior uveitis, to determine the relative contributions of altered aqueous production and drainage to the development of raised IOP in these patients.
Methods
Study Design A cross sectional observational study
Patient Selection All subjects attending the uveitis and glaucoma clinics at St Thomas' Hospital will be eligible to be included in the study if they fulfil the inclusion/exclusion criteria as below.
30 patients will be included from each of these three group of patients: 1) recurrent (> 5 attacks) idiopathic acute anterior uveitic with raised intraocular pressure; 2) recurrent (> 5 attacks) idiopathic acute anterior uveitic without raised intraocular pressure; 3) healthy age matched volunteers as controls. Patients on glaucoma treatment will be washed out for one month before measurement.
Examination Schedule and Methods
Visual acuity is measured before pupil dilation, tonometry, gonioscopy, or any other technique that could affect vision. Two different techniques are used to measure visual acuity, including Snellen and ETDRS visual acuity testing. Refraction is performed prior to formal measurement of visual acuity by either technique.
Subjective Refraction:
It is permissible to use a phoropter or trial frame to determine best-corrected Snellen visual acuity. The left eye is occluded first. An approximate beginning refraction may be determined by retinoscopy, automated refraction, or a subjective refraction from a prior visit. The sphere is refined first. The cylinder is then refined, first the axis followed by the power. Finally, the sphere is rechecked. The right eye is then occluded, and the procedure is repeated for the left eye.
If the patient wears contact lenses and has glasses also, he or she is instructed not to wear the contact lenses on the day of the assessment. Patients unwilling to discontinue contact lens use after surgery will be excluded from the study. In the event that the patient either has no glasses or has forgotten the instructions and reported for the assessment wearing contact lenses, the contact lenses are removed and at least thirty minutes allowed to elapse before subjective refraction and visual acuity testing is performed.
ETDRS Visual Acuity:
The logmar visual acuity testing for the Uveitic Glaucoma study has been adapted from the Early Treatment of Diabetic Retinopathy (ETDRS) at 4 metres. The logmar visual acuity scale facilitates statistical analysis and simplifies quantification of acuity at various distances. The right eye is tested with ETDRS logmar chart 1, then the left eye is tested with ETDRS logmar chart 2. Each chart is hidden from view until the eye being examined is ready for testing.
Snellen Visual Acuity:
Snellen visual acuity may be measured using any standard visual acuity chart. The same type of chart must be used throughout the duration of the study. Standardized refraction is performed prior to Snellen visual acuity testing.
Uveoscleral outflow will be calculated using the Goldmann's equation with an assumed episcleral venous of 8, 9, 10 or 11 mmHg. Ft is the rate of aqueous humor formation, C is the tonographic facility of outflow, IOP is the intraocular pressure, Pv is the episcleral venous pressure and Fu is the uveoscleral outflow.
Ft = C (IOP-Pv) +Fu Fu = Ft-C (IOP-Pv)
Only one randomly (Excel random number generator) chosen eye per participant will be included in the data analysis when both eyes fulfilled the inclusion criteria.
A 24-2 threshold test is performed in all patients using a size III white stimulus. Visual field testing may be performed with the Swedish Interactive Thresholding Algorithm (SITA) or full threshold strategy, but the same testing strategy must be used throughout the duration of the study. The pupil diameter should be 3 mm or greater before visual field testing is undertaken, and this may require pharmacologic dilation. Standardized refraction is performed to determine the patient's distance refraction and best-corrected visual acuity prior to visual field testing. The age appropriate plus lens is added to the distance refraction. Patient education is provided, and the instrument is set up for the test. The technician should monitor the patient during testing. Visual fields are performed preoperatively (within one month of enrollment in the study) and annually thereafter. Copies of all visual fields are faxed to the Statistical Coordinating Center for evaluation.
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Time frame: day 1 only (study completion)
Tonographic outflow facility (C) will be performed using an electronic Schiøtz tonographer (Model 720, Berkeley Bioengineering Inc, USA) at 10AM
Time frame: Four times during the morning through day 1 only (study completion)
Fluorophotometry will be performed in both eyes using a scanning ocular fluorophotometer from 9AM to 12PM (FM-2, Fluorotron Master Ocular Fluorophotometer; OcuMetrics, Mountain View, California). The aqueous turnover protocol will be used to calculate the aqueous flow rate. Duplicate or triplicate scans will be collected and repeated at 1 hour intervals for 4 measurements to determine the aqueous flow rate (Ft).
Guy's and St Thomas' NHS Foundation Trust
Other
The Contribution of Altered Aqueous Dynamics in the Development of Raised Intraocular Pressure in Patients With Uveitis
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