Intraocular Pressure Spikes Following iStent Inject and the Relationship to Aqueous Outflow in Open Angle Glaucoma

Author:

Lusthaus Jed A.12,McCluskey Peter J.12,Martin Keith R.23456

Affiliation:

1. Department of Ophthalmology, Sydney Eye Hospital, Sydney

2. Discipline of Ophthalmology, The University of Sydney

3. Department of Surgery, Ophthalmology, University of Melbourne

4. Centre for Eye Research Australia, The Royal Victorian Eye and Ear Hospital, Melbourne, Australia

5. John van Geest Centre for Brain Repair, University of Cambridge

6. Wellcome Trust—MRC Cambridge Stem Cell Institute, University of Cambridge, Cambridge, UK

Abstract

Précis: Adding trabecular bypass surgery (TBS) to phacoemulsification creates unpredictable short-term intraocular pressure (IOP) control that may be undesirable for patients with advanced glaucoma. Aqueous outflow (AO) responses after TBS are complex and probably multifactorial. Purpose: To assess IOP spikes in patients with open angle glaucoma up to 1 month after iStent inject and their relationship to AO patterns measured by hemoglobin video imaging (HVI). Participants and Methods: We studied IOP for 4 weeks after TBS with iStent inject in 105 consecutive eyes with open angle glaucoma (6 TBS only and 99 combined with phacoemulsification). The change in IOP after surgery at each time point was compared with baseline measurements and the prior postoperative visit. IOP-lowering medications were stopped on the day of surgery in all patients. A smaller pilot study of 20 eyes (TBS only = 6 and combined = 14) underwent concurrent HVI to observe and quantify perioperative AO. Aqueous column cross-sectional area (AqCA) of one nasal and one temporal aqueous vein was calculated at each time point, and qualitative observations were documented. An additional 5 eyes were studied after phacoemulsification only. Results: Mean IOP for the entire cohort (preoperative 17.3 ± 5.6 mm Hg) was lowest the day after TBS (13.1 ± 5.0 mm Hg) and peaked at 1 week (17.2 ± 8.0 mm Hg), before stabilizing by 4 weeks (15.2 ± 5.2 mm Hg; P < 0.00001). The same IOP pattern was seen when separating the group into a larger cohort without HVI (respectively 15.9 ± 3.2 mm Hg, 12.8 ± 4.9 mm Hg, 16.4 ± 7.4 mm Hg, and 14.1 ± 4.1 mm Hg; N = 85, P < 0.00001) and the smaller HVI pilot study (respectively 21.4 ± 9.9 mm Hg, 14.2 ± 4.9 mm Hg, 20.2 ± 9.7 mm Hg, and 18.9 ± 7.6 mm Hg; N = 20, P < 0.001). More than 30% IOP elevation above baseline occurred in 13.3% of the entire cohort at 1 week after surgery. This increased to 46.7% when IOP was compared with 1 day after surgery. Inconsistent AqCA values and patterns of aqueous flow were demonstrated after TBS. AqCA after phacoemulsification alone was maintained or increased within 1 week in all 5 eyes. Conclusion: After iStent inject surgery in patients with open angle glaucoma, intraocular spikes were most commonly seen at 1 week. AO patterns were variable and additional studies are needed to understand the pathophysiology underlying IOP responses after this procedure.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Ophthalmology

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