Skip to main content
Top
Published in: International Ophthalmology 1/2015

01-02-2015 | Original Paper

Evaluation of fixation stability using different targets with the MP1 microperimeter

Authors: M. Cesareo, D. Manca, E. Ciuffoletti, V. De Giovanni, F. Ricci, C. Nucci, L. Cerulli

Published in: International Ophthalmology | Issue 1/2015

Login to get access

Abstract

The aim of this study was to evaluate fixation stability using two different fixation targets with the Nidek MP1 microperimeter. Twenty-nine healthy subjects with a mean age of 26.53 ± 7.35 years and visual acuity ≥0.0 logMAR were enrolled in this study. Fifty-eight eyes of 29 patients without ophthalmic and/or systemic disease underwent a fixation test with the MP1 microperimeter. Fixation stability related to a red cross (central) and/or a red circle (pericentral) target was quantified using either Fujii classification or by calculating the bivariate contour ellipse area (BCEA). For statistical analysis, BCEA values were converted into their logarithms (logBCEA) and all data obtained were analyzed using paired Student’s t test. The inclination values of the axis of BCEA were analyzed with Chi squared test. The mean values of logBCEA and the mean values of the major and minor axis of the ellipses related to the cross and the circle fixation target were significantly different (68.2 %, p = 0.00; 95.4 %, p = 0.00; 99.6 %, p = 0.00, respectively) for each BCEA standard deviation. Fixation was significantly less stable for the pericentral fixation target in normal subjects, indicating an advantage for central fixation targets. These results are of particular interest when evaluation of changes in fixation is needed.
Literature
1.
go back to reference Kallmark FP, Ygge J (2008) Fixation pattern in healthy subjects during microperimetry with the scanning laser ophthalmoscope. Med Sci Monit 14:311–315 Kallmark FP, Ygge J (2008) Fixation pattern in healthy subjects during microperimetry with the scanning laser ophthalmoscope. Med Sci Monit 14:311–315
2.
go back to reference Fujii GY, De Juan E Jr, Sunness J, Humayun MS, Pieramici DJ et al (2002) Patient selection for macular translocation surgery using the scanning laser ophthalmoscope. Ophthalmology 109:1737–1744PubMedCrossRef Fujii GY, De Juan E Jr, Sunness J, Humayun MS, Pieramici DJ et al (2002) Patient selection for macular translocation surgery using the scanning laser ophthalmoscope. Ophthalmology 109:1737–1744PubMedCrossRef
3.
go back to reference Culham L, Fitzke FW, Timberlake GT et al (1993) Assessment of fixation stability in normal subjects and patients using a scanning laser ophthalmoscope. Clin Vis Sci 8:551–561 Culham L, Fitzke FW, Timberlake GT et al (1993) Assessment of fixation stability in normal subjects and patients using a scanning laser ophthalmoscope. Clin Vis Sci 8:551–561
4.
go back to reference Dunbar HM, Crossland MD, Rubin GS (2010) Fixation stability: a comparison between the nidek MP-1 and the rodenstock scanning laser ophthalmoscope in persons with and without diabetic maculopathy. Investig Ophthalmol Vis Sci 51:4346–4350CrossRef Dunbar HM, Crossland MD, Rubin GS (2010) Fixation stability: a comparison between the nidek MP-1 and the rodenstock scanning laser ophthalmoscope in persons with and without diabetic maculopathy. Investig Ophthalmol Vis Sci 51:4346–4350CrossRef
5.
go back to reference Bellmann C, Feely M, Crossland MD, Kabanarou SA, Rubin GS (2004) Fixation stability using central and pericentral fixation targets in patients with age-related macular degeneration. Ophthalmology 111:2265–2270PubMedCrossRef Bellmann C, Feely M, Crossland MD, Kabanarou SA, Rubin GS (2004) Fixation stability using central and pericentral fixation targets in patients with age-related macular degeneration. Ophthalmology 111:2265–2270PubMedCrossRef
6.
go back to reference Steinman RM (1965) Effect of target size, luminance, and color on monocular fixation. J Opt Soc Am 55:1158–1165CrossRef Steinman RM (1965) Effect of target size, luminance, and color on monocular fixation. J Opt Soc Am 55:1158–1165CrossRef
7.
go back to reference Crossland MD, Rubin GS (2002) The use of an infrared eyetracker to measure fixation stability. Optom Vis Sci 79:735–739PubMedCrossRef Crossland MD, Rubin GS (2002) The use of an infrared eyetracker to measure fixation stability. Optom Vis Sci 79:735–739PubMedCrossRef
8.
go back to reference Chen FK, Patel PJ, Xing W, Crossland MD, Bunce C et al (2011) Intrasession repeatability of fixation stability assessment with the Nidek MP-1. Optom Vis Sci 88(6):742–750PubMedCrossRef Chen FK, Patel PJ, Xing W, Crossland MD, Bunce C et al (2011) Intrasession repeatability of fixation stability assessment with the Nidek MP-1. Optom Vis Sci 88(6):742–750PubMedCrossRef
9.
go back to reference Sawa M, Gomi F, Toyoda A, Ikuno Y, Fujikado T et al (2006) A microperimeter that provides fixation pattern and retinal sensitivity measurement. Jpn J Ophthalmol 50:111–115PubMedCrossRef Sawa M, Gomi F, Toyoda A, Ikuno Y, Fujikado T et al (2006) A microperimeter that provides fixation pattern and retinal sensitivity measurement. Jpn J Ophthalmol 50:111–115PubMedCrossRef
10.
go back to reference Crossland MD, Culham LE, Kabanarou SA et al (2005) Preferred retinal locus development in patients with macular disease. Ophthalmology 112:1579–1585PubMedCrossRef Crossland MD, Culham LE, Kabanarou SA et al (2005) Preferred retinal locus development in patients with macular disease. Ophthalmology 112:1579–1585PubMedCrossRef
11.
go back to reference Kosnik W, Fikre J, Sekuler R (1968) Visual fixation stability in older adults. Investig Ophthalmol Vis Sci 27:1720–1725 Kosnik W, Fikre J, Sekuler R (1968) Visual fixation stability in older adults. Investig Ophthalmol Vis Sci 27:1720–1725
12.
go back to reference Tarita-Nistor L, Gonzalez EG, Markowitz SN et al (2008) Fixation characteristics of patients with macular degeneration recorded with the mp-1 microperimeter. Retina 28:125–133PubMedCrossRef Tarita-Nistor L, Gonzalez EG, Markowitz SN et al (2008) Fixation characteristics of patients with macular degeneration recorded with the mp-1 microperimeter. Retina 28:125–133PubMedCrossRef
13.
go back to reference Sansbury RV, Skavenski AA, Haddad GM et al (1973) Normal fixation of eccentric targets. J Opt Soc Am 63:612–614PubMedCrossRef Sansbury RV, Skavenski AA, Haddad GM et al (1973) Normal fixation of eccentric targets. J Opt Soc Am 63:612–614PubMedCrossRef
14.
go back to reference Whittaker SG, Budd J, Cummings RW (1988) Eccentric fixation with macular scotoma. Investig Ophthalmol Vis Sci 29:268–278 Whittaker SG, Budd J, Cummings RW (1988) Eccentric fixation with macular scotoma. Investig Ophthalmol Vis Sci 29:268–278
15.
go back to reference Crossland MD, Dunbar HMP, Rubin GS (2009) Fixation stability measurement using the MP1 microperimeter. Retina 29:651–656PubMedCrossRef Crossland MD, Dunbar HMP, Rubin GS (2009) Fixation stability measurement using the MP1 microperimeter. Retina 29:651–656PubMedCrossRef
16.
go back to reference White JM, Bedell HE (1990) The oculomotor reference in humans with bilateral macular disease. Investig Ophthalmol Vis Sli 31:1149–1161 White JM, Bedell HE (1990) The oculomotor reference in humans with bilateral macular disease. Investig Ophthalmol Vis Sli 31:1149–1161
17.
go back to reference Schuchard RA, Raasch TW (1992) Retinal locus for fixation: pericentral fixation targets. Clin Vis Sci 7:511–520 Schuchard RA, Raasch TW (1992) Retinal locus for fixation: pericentral fixation targets. Clin Vis Sci 7:511–520
18.
go back to reference Timberlake GT, Mainster MA, Peli E, Augliere RA, Essock EA et al (1986) Reading with a macular scotoma. I. retinal location of scotoma and fixation area. Investig Ophthalmol Vis Sci 27:1137–1147 Timberlake GT, Mainster MA, Peli E, Augliere RA, Essock EA et al (1986) Reading with a macular scotoma. I. retinal location of scotoma and fixation area. Investig Ophthalmol Vis Sci 27:1137–1147
19.
go back to reference Rattle JD (1969) Effect of target size on monocular fixation. Opt Acta 16:183–190CrossRef Rattle JD (1969) Effect of target size on monocular fixation. Opt Acta 16:183–190CrossRef
Metadata
Title
Evaluation of fixation stability using different targets with the MP1 microperimeter
Authors
M. Cesareo
D. Manca
E. Ciuffoletti
V. De Giovanni
F. Ricci
C. Nucci
L. Cerulli
Publication date
01-02-2015
Publisher
Springer Netherlands
Published in
International Ophthalmology / Issue 1/2015
Print ISSN: 0165-5701
Electronic ISSN: 1573-2630
DOI
https://doi.org/10.1007/s10792-014-9924-x

Other articles of this Issue 1/2015

International Ophthalmology 1/2015 Go to the issue