Optical Coherence Elastography Measures Mechanical Tension in the Lens and Capsule

Fuente: arXiv
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Main Authors: Feng, Xu, Li, Guo-yang, Jiang, Yuxuan, Shortt-Nguyen, Owen, Yun, Seok-Hyun
Format: Preprint
Published: 2024
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author Feng, Xu
Li, Guo-yang
Jiang, Yuxuan
Shortt-Nguyen, Owen
Yun, Seok-Hyun
author_facet Feng, Xu
Li, Guo-yang
Jiang, Yuxuan
Shortt-Nguyen, Owen
Yun, Seok-Hyun
contents Lens tension is essential for accommodative vision but remains difficult to measure with precision. Here, we present an optical coherence elastography (OCE) technique that quantifies both tension and elastic modulus in the lens capsule and underlying tissue. This method derives mechanical parameters from surface wave dispersion across a critical frequency range of 1-30 kHz. Using isolated lenses from six-month-old pigs, we measured intrinsic anterior capsular tensions of 0-20 kPa and posterior capsular tensions of 40-50 kPa, induced by intra-lenticular pressure at the cortical surface. The mean shear moduli of anterior and posterior capsules were 630 kPa and 400 kPa, respectively, nearly 100-fold greater than that of the cortical tissues, where tensions were below 1 kPa. Biaxial zonular stretching (~4% strain) increased anterior capsular tension by 67 kPa, with a low uncertainty of only 2 kPa. This optical method holds significant promise for diagnosing and managing accommodative dysfunctions through lens mechanics assessment in clinical settings.
format Preprint
id arxiv_https___arxiv_org_abs_2412_13262
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Optical Coherence Elastography Measures Mechanical Tension in the Lens and Capsule
Feng, Xu
Li, Guo-yang
Jiang, Yuxuan
Shortt-Nguyen, Owen
Yun, Seok-Hyun
Applied Physics
Medical Physics
Optics
Lens tension is essential for accommodative vision but remains difficult to measure with precision. Here, we present an optical coherence elastography (OCE) technique that quantifies both tension and elastic modulus in the lens capsule and underlying tissue. This method derives mechanical parameters from surface wave dispersion across a critical frequency range of 1-30 kHz. Using isolated lenses from six-month-old pigs, we measured intrinsic anterior capsular tensions of 0-20 kPa and posterior capsular tensions of 40-50 kPa, induced by intra-lenticular pressure at the cortical surface. The mean shear moduli of anterior and posterior capsules were 630 kPa and 400 kPa, respectively, nearly 100-fold greater than that of the cortical tissues, where tensions were below 1 kPa. Biaxial zonular stretching (~4% strain) increased anterior capsular tension by 67 kPa, with a low uncertainty of only 2 kPa. This optical method holds significant promise for diagnosing and managing accommodative dysfunctions through lens mechanics assessment in clinical settings.
title Optical Coherence Elastography Measures Mechanical Tension in the Lens and Capsule
topic Applied Physics
Medical Physics
Optics
url https://arxiv.org/abs/2412.13262