Literature DB >> 11059586

Senescence of foveal and parafoveal cone sensitivities and their relations to macular pigment density.

J S Werner1, M L Bieber, B E Schefrin.   

Abstract

Foveal and parafoveal increment thresholds were measured for 50 observers (12-88 years of age) under conditions that isolated retinal mechanisms dominated by short- (S-), middle- (M-), or long- (L-) wave-sensitive cones. Thresholds were obtained on the plateau of the threshold-versus-intensity function of each isolated mechanism and were referred to the retina by using individual measurements of ocular media and macular pigment density. Age-related increases in foveal thresholds, specified at the retina, were found for all three cone mechanisms. Parallel sensitivity losses for each cone mechanism were also observed at 4 degrees and 8 degrees in the temporal retina. A significant positive correlation was found between foveal macular pigment density and the S-cone, but not the M- and L-cone, log sensitivity difference (0 degrees-8 degrees) specified at the retina. This relation is expected from the hypothesis that the macular pigment protects the photoreceptors from senescent losses in sensitivity. However, because this result is independent of age, it is interpreted as being due to local gain changes resulting from differential filtering of incident light by the macular pigment between the fovea and the parafovea.

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Year:  2000        PMID: 11059586      PMCID: PMC2560986          DOI: 10.1364/josaa.17.001918

Source DB:  PubMed          Journal:  J Opt Soc Am A Opt Image Sci Vis        ISSN: 1084-7529            Impact factor:   2.129


  55 in total

1.  Macular pigment optical density measurement: a novel compact instrument.

Authors:  S Beatty; H H Koh; D Carden; I J Murray
Journal:  Ophthalmic Physiol Opt       Date:  2000-03       Impact factor: 3.117

2.  Spectral sensitivity of the foveal cone photopigments between 400 and 500 nm.

Authors:  V C Smith; J Pokorny
Journal:  Vision Res       Date:  1975-02       Impact factor: 1.886

3.  Optical density spectra of the macular pigment in vivo and in vitro.

Authors:  R A Bone; J T Landrum; A Cains
Journal:  Vision Res       Date:  1992-01       Impact factor: 1.886

4.  Aging of the human lens.

Authors:  J Pokorny; V C Smith; M Lutze
Journal:  Appl Opt       Date:  1987-04-15       Impact factor: 1.980

5.  Foveal cone photopigment distribution: small alterations associated with macular pigment distribution.

Authors:  A E Elsner; S A Burns; E Beausencourt; J J Weiter
Journal:  Invest Ophthalmol Vis Sci       Date:  1998-11       Impact factor: 4.799

6.  Age-related changes in the color-match-area effect.

Authors:  W H Swanson; G E Fish
Journal:  Vision Res       Date:  1996-07       Impact factor: 1.886

7.  Spectral transmission of the human ocular media.

Authors:  D V Norren; J J Vos
Journal:  Vision Res       Date:  1974-11       Impact factor: 1.886

8.  Aging and human macular pigment density. Appended with translations from the work of Max Schultze and Ewald Hering.

Authors:  J S Werner; S K Donnelly; R Kliegl
Journal:  Vision Res       Date:  1987       Impact factor: 1.886

9.  The flicker fusion frequency of the blue-sensitive mechanism of colour vision.

Authors:  G S Brindley; J J Du Croz; W A Rushton
Journal:  J Physiol       Date:  1966-03       Impact factor: 5.182

10.  Dietary modification of human macular pigment density.

Authors:  B R Hammond; E J Johnson; R M Russell; N I Krinsky; K J Yeum; R B Edwards; D M Snodderly
Journal:  Invest Ophthalmol Vis Sci       Date:  1997-08       Impact factor: 4.799

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  26 in total

1.  Multifocal electroretinogram: age-related changes for different luminance levels.

Authors:  Christina Gerth; Susan M Garcia; Lei Ma; John L Keltner; John S Werner
Journal:  Graefes Arch Clin Exp Ophthalmol       Date:  2002-02-19       Impact factor: 3.117

2.  Macular pigment Raman detector for clinical applications.

Authors:  Igor Ermakov; Maia Ermakova; Werner Gellermann; Paul S Bernstein
Journal:  J Biomed Opt       Date:  2004 Jan-Feb       Impact factor: 3.170

3.  Senescent changes in photopic spatial summation.

Authors:  Maka Malania; Frédéric Devinck; Kenneth Knoblauch; Peter B Delahunt; Joseph L Hardy; John S Werner
Journal:  J Vis       Date:  2011-09-22       Impact factor: 2.240

4.  Senescence of spatial chromatic contrast sensitivity. I. Detection under conditions controlling for optical factors.

Authors:  Joseph L Hardy; Peter B Delahunt; Katsunori Okajima; John S Werner
Journal:  J Opt Soc Am A Opt Image Sci Vis       Date:  2005-01       Impact factor: 2.129

5.  Senescence of spatial chromatic contrast sensitivity. II. Matching under natural viewing conditions.

Authors:  Peter B Delahunt; Joseph L Hardy; Katsunori Okajima; John S Werner
Journal:  J Opt Soc Am A Opt Image Sci Vis       Date:  2005-01       Impact factor: 2.129

6.  Impulse response of an S-cone pathway in the aging visual system.

Authors:  Keizo Shinomori; John S Werner
Journal:  J Opt Soc Am A Opt Image Sci Vis       Date:  2006-07       Impact factor: 2.129

7.  Staging of macular telangiectasia: power-Doppler optical coherence tomography and macular pigment optical density.

Authors:  Eric K Chin; Dae Yu Kim; Allan A Hunter; Suman Pilli; Machelle Wilson; Robert J Zawadzki; John S Werner; Susanna S Park
Journal:  Invest Ophthalmol Vis Sci       Date:  2013-07-02       Impact factor: 4.799

8.  Ricco's Areas for S- and L-Cone Mechanisms Across the Retina.

Authors:  Vicki J Volbrecht; Erin E Shrago; Brooke E Schefrin; John S Werner
Journal:  Color Res Appl       Date:  2000-12-27       Impact factor: 1.300

9.  Age-Related Increases in Photopic Increment Thresholds Are Not Due to an Elevation in Intrinsic Noise.

Authors:  John S Werner; Kathy A Schelble; Michelle L Bieber
Journal:  Color Res Appl       Date:  2000-12-27       Impact factor: 1.300

10.  Individual and age-related variation in chromatic contrast adaptation.

Authors:  Sarah L Elliott; John S Werner; Michael A Webster
Journal:  J Vis       Date:  2012-08-17       Impact factor: 2.240

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