Short- and mid-term repeatability of macular pigment optical density measurements using spectral fundus reflectance
Background Several methods have been proposed for measuring macular pigment optical density (MPOD). To date, none of the realized techniques can be considered as “gold standard”. A key issue for the clinical applicability of a method is its repeatability. In this study, we investigated short- and mi...
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Published in | Graefe's archive for clinical and experimental ophthalmology Vol. 250; no. 9; pp. 1261 - 1266 |
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Main Authors | , , , , , , , , |
Format | Journal Article |
Language | English |
Published |
Berlin/Heidelberg
Springer-Verlag
01.09.2012
Springer Nature B.V |
Subjects | |
Online Access | Get full text |
ISSN | 0721-832X 1435-702X 1435-702X |
DOI | 10.1007/s00417-012-1946-3 |
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Abstract | Background
Several methods have been proposed for measuring macular pigment optical density (MPOD). To date, none of the realized techniques can be considered as “gold standard”. A key issue for the clinical applicability of a method is its repeatability. In this study, we investigated short- and mid-term repeatability of MPOD measurements using reflectometry.
Methods
A total of 12 healthy young subjects were measured 5 times on 5 consecutive days. Repeatability over 6 months was investigated in patients with AMD. The data in AMD patients were taken from a recently published placebo controlled study investigating the effect of lutein supplementation on MPOD (
n
= 37; [
1
]). Four measurements over 6 months were used to calculate repeatability. Spectral fundus reflectance of the fovea was measured in a 2.3° detection field with a custom-built fundus reflectometer. Calculation of MPOD was based on a previously published fundus reflectance model.
Results
The coefficients of variation were 6.2 ± 2.4% and 8.0 ± 5.5% in the healthy and AMD group, respectively. Bland–Altman plots indicate that the difference between measurements at day 1 and day 5 in healthy subjects and day 1 and month 6 in AMD patients was small. The maximum deviation in MPOD in a healthy subject was 0.07 (22.6%), and 0.17 (51.5%) in a patient with AMD.
Conclusions
Reflectometry provides adequate short-term and mid-term repeatability for measuring MPOD. Accordingly, the technique makes it possible to monitor MPOD in patients with AMD and to study the influence of supplementation in these subjects. In addition, the variability of the technique is small enough to allow for clinical trials with reasonable sample size. |
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AbstractList | Background
Several methods have been proposed for measuring macular pigment optical density (MPOD). To date, none of the realized techniques can be considered as “gold standard”. A key issue for the clinical applicability of a method is its repeatability. In this study, we investigated short- and mid-term repeatability of MPOD measurements using reflectometry.
Methods
A total of 12 healthy young subjects were measured 5 times on 5 consecutive days. Repeatability over 6 months was investigated in patients with AMD. The data in AMD patients were taken from a recently published placebo controlled study investigating the effect of lutein supplementation on MPOD (
n
= 37; [
1
]). Four measurements over 6 months were used to calculate repeatability. Spectral fundus reflectance of the fovea was measured in a 2.3° detection field with a custom-built fundus reflectometer. Calculation of MPOD was based on a previously published fundus reflectance model.
Results
The coefficients of variation were 6.2 ± 2.4% and 8.0 ± 5.5% in the healthy and AMD group, respectively. Bland–Altman plots indicate that the difference between measurements at day 1 and day 5 in healthy subjects and day 1 and month 6 in AMD patients was small. The maximum deviation in MPOD in a healthy subject was 0.07 (22.6%), and 0.17 (51.5%) in a patient with AMD.
Conclusions
Reflectometry provides adequate short-term and mid-term repeatability for measuring MPOD. Accordingly, the technique makes it possible to monitor MPOD in patients with AMD and to study the influence of supplementation in these subjects. In addition, the variability of the technique is small enough to allow for clinical trials with reasonable sample size. Several methods have been proposed for measuring macular pigment optical density (MPOD). To date, none of the realized techniques can be considered as "gold standard". A key issue for the clinical applicability of a method is its repeatability. In this study, we investigated short- and mid-term repeatability of MPOD measurements using reflectometry.BACKGROUNDSeveral methods have been proposed for measuring macular pigment optical density (MPOD). To date, none of the realized techniques can be considered as "gold standard". A key issue for the clinical applicability of a method is its repeatability. In this study, we investigated short- and mid-term repeatability of MPOD measurements using reflectometry.A total of 12 healthy young subjects were measured 5 times on 5 consecutive days. Repeatability over 6 months was investigated in patients with AMD. The data in AMD patients were taken from a recently published placebo controlled study investigating the effect of lutein supplementation on MPOD (n = 37; [1]). Four measurements over 6 months were used to calculate repeatability. Spectral fundus reflectance of the fovea was measured in a 2.3° detection field with a custom-built fundus reflectometer. Calculation of MPOD was based on a previously published fundus reflectance model.METHODSA total of 12 healthy young subjects were measured 5 times on 5 consecutive days. Repeatability over 6 months was investigated in patients with AMD. The data in AMD patients were taken from a recently published placebo controlled study investigating the effect of lutein supplementation on MPOD (n = 37; [1]). Four measurements over 6 months were used to calculate repeatability. Spectral fundus reflectance of the fovea was measured in a 2.3° detection field with a custom-built fundus reflectometer. Calculation of MPOD was based on a previously published fundus reflectance model.The coefficients of variation were 6.2 ± 2.4% and 8.0 ± 5.5% in the healthy and AMD group, respectively. Bland-Altman plots indicate that the difference between measurements at day 1 and day 5 in healthy subjects and day 1 and month 6 in AMD patients was small. The maximum deviation in MPOD in a healthy subject was 0.07 (22.6%), and 0.17 (51.5%) in a patient with AMD.RESULTSThe coefficients of variation were 6.2 ± 2.4% and 8.0 ± 5.5% in the healthy and AMD group, respectively. Bland-Altman plots indicate that the difference between measurements at day 1 and day 5 in healthy subjects and day 1 and month 6 in AMD patients was small. The maximum deviation in MPOD in a healthy subject was 0.07 (22.6%), and 0.17 (51.5%) in a patient with AMD.Reflectometry provides adequate short-term and mid-term repeatability for measuring MPOD. Accordingly, the technique makes it possible to monitor MPOD in patients with AMD and to study the influence of supplementation in these subjects. In addition, the variability of the technique is small enough to allow for clinical trials with reasonable sample size.CONCLUSIONSReflectometry provides adequate short-term and mid-term repeatability for measuring MPOD. Accordingly, the technique makes it possible to monitor MPOD in patients with AMD and to study the influence of supplementation in these subjects. In addition, the variability of the technique is small enough to allow for clinical trials with reasonable sample size. Several methods have been proposed for measuring macular pigment optical density (MPOD). To date, none of the realized techniques can be considered as "gold standard". A key issue for the clinical applicability of a method is its repeatability. In this study, we investigated short- and mid-term repeatability of MPOD measurements using reflectometry. A total of 12 healthy young subjects were measured 5 times on 5 consecutive days. Repeatability over 6 months was investigated in patients with AMD. The data in AMD patients were taken from a recently published placebo controlled study investigating the effect of lutein supplementation on MPOD (n=37; [1]). Four measurements over 6 months were used to calculate repeatability. Spectral fundus reflectance of the fovea was measured in a 2.3° detection field with a custom-built fundus reflectometer. Calculation of MPOD was based on a previously published fundus reflectance model. The coefficients of variation were 6.2±2.4% and 8.0±5.5% in the healthy and AMD group, respectively. Bland-Altman plots indicate that the difference between measurements at day 1 and day 5 in healthy subjects and day 1 and month 6 in AMD patients was small. The maximum deviation in MPOD in a healthy subject was 0.07 (22.6%), and 0.17 (51.5%) in a patient with AMD. Reflectometry provides adequate short-term and mid-term repeatability for measuring MPOD. Accordingly, the technique makes it possible to monitor MPOD in patients with AMD and to study the influence of supplementation in these subjects. In addition, the variability of the technique is small enough to allow for clinical trials with reasonable sample size.[PUBLICATION ABSTRACT] Several methods have been proposed for measuring macular pigment optical density (MPOD). To date, none of the realized techniques can be considered as "gold standard". A key issue for the clinical applicability of a method is its repeatability. In this study, we investigated short- and mid-term repeatability of MPOD measurements using reflectometry. A total of 12 healthy young subjects were measured 5 times on 5 consecutive days. Repeatability over 6 months was investigated in patients with AMD. The data in AMD patients were taken from a recently published placebo controlled study investigating the effect of lutein supplementation on MPOD (n = 37; [1]). Four measurements over 6 months were used to calculate repeatability. Spectral fundus reflectance of the fovea was measured in a 2.3° detection field with a custom-built fundus reflectometer. Calculation of MPOD was based on a previously published fundus reflectance model. The coefficients of variation were 6.2 ± 2.4% and 8.0 ± 5.5% in the healthy and AMD group, respectively. Bland-Altman plots indicate that the difference between measurements at day 1 and day 5 in healthy subjects and day 1 and month 6 in AMD patients was small. The maximum deviation in MPOD in a healthy subject was 0.07 (22.6%), and 0.17 (51.5%) in a patient with AMD. Reflectometry provides adequate short-term and mid-term repeatability for measuring MPOD. Accordingly, the technique makes it possible to monitor MPOD in patients with AMD and to study the influence of supplementation in these subjects. In addition, the variability of the technique is small enough to allow for clinical trials with reasonable sample size. |
Author | Schmidt-Erfurth, Ursula Kaya, Semira Schmetterer, Leopold Werkmeister, René Marcel Dragostinoff, Nikolaus Garhöfer, Gerhard Pemp, Berthold Sacu, Stefan Weigert, Günther |
Author_xml | – sequence: 1 givenname: Nikolaus surname: Dragostinoff fullname: Dragostinoff, Nikolaus organization: Center for Medical Physics and Biomedical Engineering, Medical University of Vienna – sequence: 2 givenname: René Marcel surname: Werkmeister fullname: Werkmeister, René Marcel organization: Center for Medical Physics and Biomedical Engineering, Medical University of Vienna – sequence: 3 givenname: Semira surname: Kaya fullname: Kaya, Semira organization: Department of Clinical Pharmacology, Medical University of Vienna – sequence: 4 givenname: Günther surname: Weigert fullname: Weigert, Günther organization: Department of Ophthalmology, Medical University of Vienna – sequence: 5 givenname: Berthold surname: Pemp fullname: Pemp, Berthold organization: Department of Clinical Pharmacology, Medical University of Vienna, Department of Ophthalmology, Medical University of Vienna – sequence: 6 givenname: Stefan surname: Sacu fullname: Sacu, Stefan organization: Department of Ophthalmology, Medical University of Vienna – sequence: 7 givenname: Gerhard surname: Garhöfer fullname: Garhöfer, Gerhard organization: Department of Clinical Pharmacology, Medical University of Vienna – sequence: 8 givenname: Ursula surname: Schmidt-Erfurth fullname: Schmidt-Erfurth, Ursula organization: Department of Ophthalmology, Medical University of Vienna – sequence: 9 givenname: Leopold surname: Schmetterer fullname: Schmetterer, Leopold email: leopold.schmetterer@meduniwien.ac.at organization: Center for Medical Physics and Biomedical Engineering, Medical University of Vienna, Department of Clinical Pharmacology, Medical University of Vienna |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/22362012$$D View this record in MEDLINE/PubMed |
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CitedBy_id | crossref_primary_10_1111_aos_12645 crossref_primary_10_1177_1120672119870362 crossref_primary_10_1080_02713683_2016_1221976 crossref_primary_10_3109_19390211_2014_988577 |
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Keywords | Macular pigment optical density Age-related macular degeneration Variability |
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Several methods have been proposed for measuring macular pigment optical density (MPOD). To date, none of the realized techniques can be considered... Several methods have been proposed for measuring macular pigment optical density (MPOD). To date, none of the realized techniques can be considered as "gold... |
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SubjectTerms | Adult Aged Aged, 80 and over Densitometry - instrumentation Diagnostic Techniques, Ophthalmological Double-Blind Method Female Humans Lutein - metabolism Macula Lutea - metabolism Macular Degeneration - metabolism Male Medicine Medicine & Public Health Middle Aged Ophthalmology Reference Values Reproducibility of Results Retinal Disorders Retinal Pigments - metabolism Xanthophylls - metabolism Young Adult Zeaxanthins |
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Title | Short- and mid-term repeatability of macular pigment optical density measurements using spectral fundus reflectance |
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