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Data · collection · 2022

Supplementary material from " In vivo biomechanical assessment of iridial deformations and muscle contractions in human eyes"

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The iris is a muscular organ whose deformations can cause primary angle-closure glaucoma (PACG), a leading cause of blindness.

Description

PACG risk assessment does not consider iridial biomechanical factors, despite their expected influence on iris deformations. Here, we exploited an existing biometric dataset consisting of near-infrared movies acquired during the pupillary light reflex (PLR) as a unique resource to study iris biomechanics.

The PLR caused significant (greater than 100%) and essentially spatially uniform radial strains in the iris in vivo , consistent with previous findings. Inverse finite-element modelling showed that sphincter muscle tractions were ca fivefold greater than iridial stroma stiffness (range 4- to 13-fold, depending on sphincter muscle size). This muscle traction is greater than has been previously estimated, which may be due to methodological differences and/or to different patient populations in our study (European descent) versus previous studies (Asian); the latter possibility is of particular interest due to differential incidence rates of PACG in these populations.

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Our methodology is fast and inexpensive and may be a useful tool in understanding biomechanical factors contributing to PACG.

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DataCite10.6084/m9.figshare.c.6032487.v17 d agoJSON v1
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