Please use this identifier to cite or link to this item: https://doi.org/10.1167/iovs.64.13.11
Title: The Structural Layers of the Porcine Iris Exhibit Inherently Different Biomechanical Properties
Authors: Tan, RKY 
Panda, SK 
Braeu, FA 
Muralidharan, AR 
Nongpiur, ME 
Chan, ASY 
Aung, T 
Najjar, RP 
Girard, MJA 
Keywords: Swine
Animals
Iris
Glaucoma, Angle-Closure
Biomechanical Phenomena
Tomography, Optical Coherence
Issue Date: 1-Oct-2023
Publisher: Association for Research in Vision and Ophthalmology (ARVO)
Citation: Tan, RKY, Panda, SK, Braeu, FA, Muralidharan, AR, Nongpiur, ME, Chan, ASY, Aung, T, Najjar, RP, Girard, MJA (2023-10-01). The Structural Layers of the Porcine Iris Exhibit Inherently Different Biomechanical Properties. Investigative Ophthalmology and Visual Science 64 (13) : 11-. ScholarBank@NUS Repository. https://doi.org/10.1167/iovs.64.13.11
Abstract: PURPOSE. The purpose of this study was to isolate the structural components of the ex vivo porcine iris tissue and to determine their biomechanical properties. METHODS. The porcine stroma and dilator tissues were separated, and their dimensions were assessed using optical coherence tomography (OCT). The stroma underwent flow test (n = 32) to evaluate for permeability using Darcy’s Law (∆P = 2000 Pa, A = 0.0391 mm2), and both tissues underwent stress relaxation experiments (ε = 0.5 with initial ramp of δε = 0.1) to evaluate for their viscoelastic behaviours (n = 28). Viscoelasticity was characterized by the parameters β (half width of the Gaussian distribution), τm (mean relaxation time constant), E0 (instantaneous modulus), and E∞ (equilibrium modulus). RESULTS. For the stroma, the hydraulic permeability was 9.49 ± 3.05 × 10−6 mm2/Pa · s, and the viscoelastic parameters were β = 2.50 ± 1.40, and τm = 7.43 ± 4.96 s, with the 2 moduli calculated to be E0 = 14.14 ± 6.44 kPa and E∞ = 6.08 ± 2.74 kPa. For the dilator tissue, the viscoelastic parameters were β = 2.06 ± 1.33 and τm = 1.28 ± 1.27 seconds, with the 2 moduli calculated to be E0 = 9.16 ± 3.03 kPa and E∞ = 5.54 ± 1.98 kPa. CONCLUSIONS. We have established a new protocol to evaluate the biomechanical properties of the structural layers of the iris. Overall, the stroma was permeable and exhibited smaller moduli than those of the dilator muscle. An improved characterization of iris biomechanics may form the basis to further our understanding of angle closure glaucoma.
Source Title: Investigative Ophthalmology and Visual Science
URI: https://scholarbank.nus.edu.sg/handle/10635/245741
ISSN: 0146-0404
1552-5783
DOI: 10.1167/iovs.64.13.11
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