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Basson N, Peng CHS, Geoghegan P, van der Lecq T, Steven D, Williams S, Lim AE, Ho WH. A computational fluid dynamics investigation of endothelial cell damage from glaucoma drainage devices. Sci Rep 2024; 14:3777. [PMID: 38355702 PMCID: PMC10866882 DOI: 10.1038/s41598-023-50491-9] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/22/2023] [Accepted: 12/20/2023] [Indexed: 02/16/2024] Open
Abstract
Glaucoma drainage devices (GDDs) are prosthetic-treatment devices for treating primary open-angle glaucoma. Despite their effectiveness in reducing intraocular pressures (IOP), endothelial cell damage (ECD) is a commonly known side-effect. There have been different hypotheses regarding the reasons for ECD with one being an induced increase in shear on the corneal wall. A computational fluid dynamics (CFD) model was used to investigate this hypothesis in silico. The Ahmed Glaucoma Valve (AGV) was selected as the subject of this study using an idealised 3D model of the anterior chamber with insertion angles and positions that are commonly used in clinical practice. It was found that a tube-cornea distance of 1.27 mm or greater does not result in a wall shear stress (WSS) above the limit where ECD could occur. Similarly, a tube-cornea angle of 45° or more was shown to be preferable. It was also found that the ECD region has an irregular shape, and the aqueous humour flow fluctuates at certain insertion angles and positions. This study shows that pathological amounts of WSS may occur as a result of certain GDD placements. Hence, it is imperative to consider the associated fluid force interactions when performing the GDD insertion procedure.
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Affiliation(s)
- Nicol Basson
- Department of Thermal & Fluid Engineering, Faculty of Engineering Technology, University of Twente, Enschede, 7522 NB, The Netherlands.
- Mechanical, Industrial & Aeronautical Engineering, Faculty of Engineering & the Built Environment, University of Witwatersrand, Johannesburg, Private Bag 3, Johannesburg, Wits, 2050, South Africa.
| | - Chao-Hong Surachai Peng
- Mechanical, Industrial & Aeronautical Engineering, Faculty of Engineering & the Built Environment, University of Witwatersrand, Johannesburg, Private Bag 3, Johannesburg, Wits, 2050, South Africa
| | - Patrick Geoghegan
- Department of Mechanical, Biomedical and Design Engineering, School of Engineering & Technology, College of Engineering and Physical Sciences, Aston University, Birmingham, B4 7ET, UK
| | - Tshilidzi van der Lecq
- Division of Ophthalmology, Faculty of Health Sciences, University of Cape Town, Cape Town, South Africa
| | - David Steven
- Division of Ophthalmology, Faculty of Health Sciences, University of Cape Town, Cape Town, South Africa
| | - Susan Williams
- Division of Ophthalmology, School of Clinical Medicine, Faculty of Health Sciences, University of the Witwatersrand, Johannesburg, South Africa
| | - An Eng Lim
- Bioprocessing Technology Institute, Agency for Science, Technology and Research, 20 Biopolis Way, #06-01 Centros, Singapore, 138668, Singapore
- School of Mechanical and Aerospace Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore, 639798, Singapore
| | - Wei Hua Ho
- Mechanical, Industrial & Aeronautical Engineering, Faculty of Engineering & the Built Environment, University of Witwatersrand, Johannesburg, Private Bag 3, Johannesburg, Wits, 2050, South Africa.
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