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Age-Dependent Changes in Total and Free Water Content of In Vivo Human Lenses Measured by Magnetic Resonance Imaging

PURPOSE: To use magnetic resonance imaging (MRI) to measure age-dependent changes in total and free water in human lenses in vivo. METHODS: Sixty-four healthy adults aged 18 to 86 years were recruited, fitted with a 32-channel head receiver coil, and placed in a 3 Tesla clinical MR scanner. Scans of...

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Autores principales: Lie, Alyssa L., Pan, Xingzheng, White, Thomas W., Vaghefi, Ehsan, Donaldson, Paul J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Association for Research in Vision and Ophthalmology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8300047/
https://www.ncbi.nlm.nih.gov/pubmed/34293079
http://dx.doi.org/10.1167/iovs.62.9.33
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author Lie, Alyssa L.
Pan, Xingzheng
White, Thomas W.
Vaghefi, Ehsan
Donaldson, Paul J.
author_facet Lie, Alyssa L.
Pan, Xingzheng
White, Thomas W.
Vaghefi, Ehsan
Donaldson, Paul J.
author_sort Lie, Alyssa L.
collection PubMed
description PURPOSE: To use magnetic resonance imaging (MRI) to measure age-dependent changes in total and free water in human lenses in vivo. METHODS: Sixty-four healthy adults aged 18 to 86 years were recruited, fitted with a 32-channel head receiver coil, and placed in a 3 Tesla clinical MR scanner. Scans of the crystalline lens were obtained using a volumetric interpolated breath-hold examination sequence with dual flip angles, which were corrected for field inhomogeneity post-acquisition using a B1-map obtained using a turbo-FLASH sequence. The spatial distribution and content of corrected total (ρ(lens)) and free (T1) water along the lens optical axis were extracted using custom-written code. RESULTS: Lens total water distribution and content did not change with age (all P > 0.05). In contrast to total water, a gradient in free water content that was highest in the periphery relative to the center was present in lenses across all ages. However, this initially parabolic free water gradient gradually developed an enhanced central plateau, as indicated by increasing profile shape parameter values (anterior: 0.067/y, P = 0.004; posterior: 0.050/y, P = 0.020) and central free water content (1.932 ms/y, P = 0.022) with age. CONCLUSIONS: MRI can obtain repeatable total and free water measurements of in vivo human lenses. The observation that the lens steady-state free, but not total, water gradient is abolished with age raises the possibility that alterations in protein-water interactions are an underlying cause of the degradation in lens optics and overall vision observed with aging.
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spelling pubmed-83000472021-07-28 Age-Dependent Changes in Total and Free Water Content of In Vivo Human Lenses Measured by Magnetic Resonance Imaging Lie, Alyssa L. Pan, Xingzheng White, Thomas W. Vaghefi, Ehsan Donaldson, Paul J. Invest Ophthalmol Vis Sci Lens PURPOSE: To use magnetic resonance imaging (MRI) to measure age-dependent changes in total and free water in human lenses in vivo. METHODS: Sixty-four healthy adults aged 18 to 86 years were recruited, fitted with a 32-channel head receiver coil, and placed in a 3 Tesla clinical MR scanner. Scans of the crystalline lens were obtained using a volumetric interpolated breath-hold examination sequence with dual flip angles, which were corrected for field inhomogeneity post-acquisition using a B1-map obtained using a turbo-FLASH sequence. The spatial distribution and content of corrected total (ρ(lens)) and free (T1) water along the lens optical axis were extracted using custom-written code. RESULTS: Lens total water distribution and content did not change with age (all P > 0.05). In contrast to total water, a gradient in free water content that was highest in the periphery relative to the center was present in lenses across all ages. However, this initially parabolic free water gradient gradually developed an enhanced central plateau, as indicated by increasing profile shape parameter values (anterior: 0.067/y, P = 0.004; posterior: 0.050/y, P = 0.020) and central free water content (1.932 ms/y, P = 0.022) with age. CONCLUSIONS: MRI can obtain repeatable total and free water measurements of in vivo human lenses. The observation that the lens steady-state free, but not total, water gradient is abolished with age raises the possibility that alterations in protein-water interactions are an underlying cause of the degradation in lens optics and overall vision observed with aging. The Association for Research in Vision and Ophthalmology 2021-07-22 /pmc/articles/PMC8300047/ /pubmed/34293079 http://dx.doi.org/10.1167/iovs.62.9.33 Text en Copyright 2021 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.
spellingShingle Lens
Lie, Alyssa L.
Pan, Xingzheng
White, Thomas W.
Vaghefi, Ehsan
Donaldson, Paul J.
Age-Dependent Changes in Total and Free Water Content of In Vivo Human Lenses Measured by Magnetic Resonance Imaging
title Age-Dependent Changes in Total and Free Water Content of In Vivo Human Lenses Measured by Magnetic Resonance Imaging
title_full Age-Dependent Changes in Total and Free Water Content of In Vivo Human Lenses Measured by Magnetic Resonance Imaging
title_fullStr Age-Dependent Changes in Total and Free Water Content of In Vivo Human Lenses Measured by Magnetic Resonance Imaging
title_full_unstemmed Age-Dependent Changes in Total and Free Water Content of In Vivo Human Lenses Measured by Magnetic Resonance Imaging
title_short Age-Dependent Changes in Total and Free Water Content of In Vivo Human Lenses Measured by Magnetic Resonance Imaging
title_sort age-dependent changes in total and free water content of in vivo human lenses measured by magnetic resonance imaging
topic Lens
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8300047/
https://www.ncbi.nlm.nih.gov/pubmed/34293079
http://dx.doi.org/10.1167/iovs.62.9.33
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