Skip to main content
Top
Published in: Documenta Ophthalmologica 2/2010

01-10-2010 | Original research article

Inter-subject, inter-ocular and inter-session repeatability of the photopic negative response of the electroretinogram recorded using DTL and skin electrodes

Authors: Katharine E. Mortlock, Alison M. Binns, Yousef H. Aldebasi, Rachel V. North

Published in: Documenta Ophthalmologica | Issue 2/2010

Login to get access

Abstract

The photopic negative response (PhNR) has attracted interest as a flash ERG component reflecting inner retinal activity, with investigators adopting various approaches to analysing the response. This study has two principal aims: first to determine the most reliable technique for assessing the PhNR amplitude; secondly to compare the repeatability characteristics of the PhNR recorded using DTL and skin active electrodes. Electroretinograms were recorded in 31 subjects, using both electrode types, in response to a Ganzfeld red stimulus (Lee filter “bright red”; 1.76 log phot td.s; 4 Hz) presented over a steady blue background (Schott glass filter BG28; 3.9 log scot td). Sixteen subjects returned to assess repeatability. PhNR amplitude was measured from b-wave peak-to-PhNR trough, pre-stimulus baseline to trough, and from peak and baseline to a fixed time-point; a ratio of b-wave/PhNR amplitude was also calculated. Coefficients of variation (CoV), and inter-ocular and inter-session limits of agreement (LoA) were calculated for all measures. The ratio of b-wave/PhNR amplitude showed the lowest CoV (14.3% DTL; 23.2% skin), inter-ocular LoA (22.2% DTL; 25.0% skin), and inter-session LoA (22.8% DTL; 20.3% skin). The peak-to-trough and peak-to-fixed-time measurements were also consistently reliable. Least reliable measures were those measured from baseline. While skin electrode responses were significantly smaller than DTL responses (P < 0.0001), the variability was only slightly increased. This study suggests that peak-to-trough measurements are the most reliable means of measuring the PhNR and ratio calculation further improves repeatability. Skin electrodes provided a viable alternative to DTL electrodes for recording the PhNR.
Literature
1.
go back to reference Drasdo N, Aldebasi YH, Chiti Z, Mortlock KE, Morgan JE, North RV (2001) The S-cone PhNR and pattern ERG in primary open angle glaucoma. Invest Ophthalmol Vis Sci 42(6):1266–1272PubMed Drasdo N, Aldebasi YH, Chiti Z, Mortlock KE, Morgan JE, North RV (2001) The S-cone PhNR and pattern ERG in primary open angle glaucoma. Invest Ophthalmol Vis Sci 42(6):1266–1272PubMed
2.
go back to reference Fortune B, Bui BV, Cull G, Wang L, Cioffi GA (2004) Inter-ocular and inter-session reliability of the electroretinogram photopic negative response (PhNR) in non-human primates. Exp Eye Res 78(1):83–93CrossRefPubMed Fortune B, Bui BV, Cull G, Wang L, Cioffi GA (2004) Inter-ocular and inter-session reliability of the electroretinogram photopic negative response (PhNR) in non-human primates. Exp Eye Res 78(1):83–93CrossRefPubMed
3.
go back to reference Fortune B, Wang L, Bui BV, Cull G, Dong J, Cioffi GA (2003) Local ganglion cell contributions to the macaque electroretinogram revealed by experimental nerve fiber layer bundle defect. Invest Ophthalmol Vis Sci 44(10):4567–4579CrossRefPubMed Fortune B, Wang L, Bui BV, Cull G, Dong J, Cioffi GA (2003) Local ganglion cell contributions to the macaque electroretinogram revealed by experimental nerve fiber layer bundle defect. Invest Ophthalmol Vis Sci 44(10):4567–4579CrossRefPubMed
4.
go back to reference Viswanathan S, Frishman LJ, Harwerth RS, Smith EL, Robson JG (1998) Photopic negative responses in the flash ERG are greatly reduced in experimental glaucoma when visual sensitivity losses are mild. Invest Ophthalmol Vis Sci 39(4):S976 Viswanathan S, Frishman LJ, Harwerth RS, Smith EL, Robson JG (1998) Photopic negative responses in the flash ERG are greatly reduced in experimental glaucoma when visual sensitivity losses are mild. Invest Ophthalmol Vis Sci 39(4):S976
5.
go back to reference Viswanathan S, Frishman LJ, Robson JG, Harwerth RS, Smith EL (1999) The photopic negative response of the macaque electroretinogram: Reduction by experimental glaucoma. Invest Ophthalmol Vis Sci 40(6):1124–1136PubMed Viswanathan S, Frishman LJ, Robson JG, Harwerth RS, Smith EL (1999) The photopic negative response of the macaque electroretinogram: Reduction by experimental glaucoma. Invest Ophthalmol Vis Sci 40(6):1124–1136PubMed
6.
go back to reference Viswanathan S, Frishman LJ, Robson JG, Walters JW (2001) The photopic negative response of the flash electroretinogram in primary open angle glaucoma. Invest Ophthalmol Vis Sci 42(2):514–522PubMed Viswanathan S, Frishman LJ, Robson JG, Walters JW (2001) The photopic negative response of the flash electroretinogram in primary open angle glaucoma. Invest Ophthalmol Vis Sci 42(2):514–522PubMed
7.
go back to reference Chen HL, Wu DZ, Huang SZ, Yan H (2006) The photopic negative response of the flash electroretinogram in retinal vein occlusion. Doc Ophthalmol 113(1):53–59CrossRefPubMed Chen HL, Wu DZ, Huang SZ, Yan H (2006) The photopic negative response of the flash electroretinogram in retinal vein occlusion. Doc Ophthalmol 113(1):53–59CrossRefPubMed
8.
go back to reference Colotto A, Falsini B, Salgarello T, Iarossi G, Galan ME, Scullica L (2000) Photopic negative response of the human ERG: Losses associated with glaucomatous damage. Invest Ophthalmol Vis Sci 41(8):2205–2211PubMed Colotto A, Falsini B, Salgarello T, Iarossi G, Galan ME, Scullica L (2000) Photopic negative response of the human ERG: Losses associated with glaucomatous damage. Invest Ophthalmol Vis Sci 41(8):2205–2211PubMed
9.
go back to reference Machida S, Gotoh Y, Tanaka M, Tazawa Y (2004) Predominant loss of the photopic negative response in central retinal artery occlusion. Am J Ophthalmol 137(5):938–940CrossRefPubMed Machida S, Gotoh Y, Tanaka M, Tazawa Y (2004) Predominant loss of the photopic negative response in central retinal artery occlusion. Am J Ophthalmol 137(5):938–940CrossRefPubMed
10.
go back to reference Machida S, Gotoh Y, Toba Y, Ohtaki A, Kaneko M, Kurosaka D (2008) Correlation between photopic negative response and retinal nerve fiber layer thickness and optic disc topography in glaucomatous eyes. Invest Ophthalmol Vis Sci 49(5):2201–2207CrossRefPubMed Machida S, Gotoh Y, Toba Y, Ohtaki A, Kaneko M, Kurosaka D (2008) Correlation between photopic negative response and retinal nerve fiber layer thickness and optic disc topography in glaucomatous eyes. Invest Ophthalmol Vis Sci 49(5):2201–2207CrossRefPubMed
11.
go back to reference Machida S, Toba Y, Ohtaki A, Gotoh Y, Kaneko M, Kurosaka D (2008) Photopic negative response of focal electoretinograms in glaucomatous eyes. Invest Ophthalmol Vis Sci 49(12):5636–5644CrossRefPubMed Machida S, Toba Y, Ohtaki A, Gotoh Y, Kaneko M, Kurosaka D (2008) Photopic negative response of focal electoretinograms in glaucomatous eyes. Invest Ophthalmol Vis Sci 49(12):5636–5644CrossRefPubMed
12.
go back to reference Rangaswamy NV, Frishman LJ, Dorotheo EU, Schiffman JS, Bahrani HM, Tang RA (2004) Photopic ERGs in patients with optic neuropathies: comparison with primate ERGs after pharmacologic blockade of inner retina. Invest Ophthalmol Vis Sci 45(10):3827–3837CrossRefPubMed Rangaswamy NV, Frishman LJ, Dorotheo EU, Schiffman JS, Bahrani HM, Tang RA (2004) Photopic ERGs in patients with optic neuropathies: comparison with primate ERGs after pharmacologic blockade of inner retina. Invest Ophthalmol Vis Sci 45(10):3827–3837CrossRefPubMed
13.
go back to reference Sustar M, Cvenkel B, Brecelj J (2009) The effect of broadband and monochromatic stimuli on the photopic negative response of the electroretinogram in normal subjects and in open-angle glaucoma patients. Doc Ophthalmol 118(3):167–177CrossRefPubMed Sustar M, Cvenkel B, Brecelj J (2009) The effect of broadband and monochromatic stimuli on the photopic negative response of the electroretinogram in normal subjects and in open-angle glaucoma patients. Doc Ophthalmol 118(3):167–177CrossRefPubMed
14.
go back to reference Bach M (2001) Electrophysiological approaches for early detection of glaucoma. Eur J Ophthalmol 11:S41–S49PubMed Bach M (2001) Electrophysiological approaches for early detection of glaucoma. Eur J Ophthalmol 11:S41–S49PubMed
15.
go back to reference Berninger T, Schuurmans RP (1985) Spatial tuning of the pattern ERG across temporal frequency. Doc Ophthalmol 61(1):17–25CrossRefPubMed Berninger T, Schuurmans RP (1985) Spatial tuning of the pattern ERG across temporal frequency. Doc Ophthalmol 61(1):17–25CrossRefPubMed
16.
go back to reference Drasdo N, Thompson DA, Thompson CM, Edwards L (1987) Complementary components and local variations of the pattern electroretinogram. Invest Ophthalmol Vis Sci 28(1):158–162PubMed Drasdo N, Thompson DA, Thompson CM, Edwards L (1987) Complementary components and local variations of the pattern electroretinogram. Invest Ophthalmol Vis Sci 28(1):158–162PubMed
17.
go back to reference Fiorentini A, Maffei L, Pirchio M, Spinelli D, Porciatti V (1981) The ERG in response to alternating gratings in patients with diseases of the peripheral visual pathway. Invest Ophthalmol Vis Sci 21(3):490–493PubMed Fiorentini A, Maffei L, Pirchio M, Spinelli D, Porciatti V (1981) The ERG in response to alternating gratings in patients with diseases of the peripheral visual pathway. Invest Ophthalmol Vis Sci 21(3):490–493PubMed
18.
go back to reference Thompson DA, Drasdo N (1994) The origins of luminance and pattern responses of the pattern electroretinogram. Int J Psychophysiol 16(2–3):219–227CrossRefPubMed Thompson DA, Drasdo N (1994) The origins of luminance and pattern responses of the pattern electroretinogram. Int J Psychophysiol 16(2–3):219–227CrossRefPubMed
19.
go back to reference Bach M, Mathieu M (2004) Different effect of dioptric defocus vs. light scatter on the pattern electroretinogram (PERG). Doc Ophthalmol 108(1):99–106CrossRefPubMed Bach M, Mathieu M (2004) Different effect of dioptric defocus vs. light scatter on the pattern electroretinogram (PERG). Doc Ophthalmol 108(1):99–106CrossRefPubMed
20.
go back to reference Viswanathan S, Frishman LJ, Robson JG (2000) The uniform field and pattern ERG in macaques with experimental glaucoma: removal of spiking activity. Invest Ophthalmol Vis Sci 41(9):2797–2810PubMed Viswanathan S, Frishman LJ, Robson JG (2000) The uniform field and pattern ERG in macaques with experimental glaucoma: removal of spiking activity. Invest Ophthalmol Vis Sci 41(9):2797–2810PubMed
21.
go back to reference Kizawa J, Machida S, Kobayashi T, Gotoh Y, Kurosaka D (2006) Changes of oscillatory potentials and photopic negative response in patients with early diabetic retinopathy. Jpn J Ophthalmol 50(4):367–373CrossRefPubMed Kizawa J, Machida S, Kobayashi T, Gotoh Y, Kurosaka D (2006) Changes of oscillatory potentials and photopic negative response in patients with early diabetic retinopathy. Jpn J Ophthalmol 50(4):367–373CrossRefPubMed
22.
go back to reference Rangaswamy NV, Shirato S, Kaneko M, Digby BI, Robson JG, Frishman LJ (2007) Effects of spectral characteristics of ganzfeld stimuli on the photopic negative response (PhNR) of the ERG. Invest Ophthalmol Vis Sci 48:4818–4828CrossRefPubMed Rangaswamy NV, Shirato S, Kaneko M, Digby BI, Robson JG, Frishman LJ (2007) Effects of spectral characteristics of ganzfeld stimuli on the photopic negative response (PhNR) of the ERG. Invest Ophthalmol Vis Sci 48:4818–4828CrossRefPubMed
23.
go back to reference Viswanathan S, Frishman LJ, Robson JG, Walters JW (2000) The photopic negative response of the flash electroretinogram (ERG) in primary open angle glaucoma. Invest Ophthalmol Vis Sci 41(4): 1533 S291 Viswanathan S, Frishman LJ, Robson JG, Walters JW (2000) The photopic negative response of the flash electroretinogram (ERG) in primary open angle glaucoma. Invest Ophthalmol Vis Sci 41(4): 1533 S291
24.
go back to reference Kurimoto Y, Kondo M, Ueno S, Sakai T, Machida S, Terasaki H (2009) Asymmetry of focal macular photopic negative responses (PhNRs) in monkeys. Exp Eye Res 88(1):92–98CrossRefPubMed Kurimoto Y, Kondo M, Ueno S, Sakai T, Machida S, Terasaki H (2009) Asymmetry of focal macular photopic negative responses (PhNRs) in monkeys. Exp Eye Res 88(1):92–98CrossRefPubMed
25.
go back to reference Beeler P, Barthelmes D, Sutter FK, Helbig H, Helbig H, Fleischhauer JC (2007) Comparison of performance and patient satisfaction of two types of ERG electrodes. Klin Monatsbl Augenh 224(4):265–268CrossRef Beeler P, Barthelmes D, Sutter FK, Helbig H, Helbig H, Fleischhauer JC (2007) Comparison of performance and patient satisfaction of two types of ERG electrodes. Klin Monatsbl Augenh 224(4):265–268CrossRef
26.
go back to reference Yin H, Pardue MT (2004) Performance of the DTL electrode compared to the jet contact lens electrode in clinical testing. Doc Ophthalmol 108(1):77–86CrossRefPubMed Yin H, Pardue MT (2004) Performance of the DTL electrode compared to the jet contact lens electrode in clinical testing. Doc Ophthalmol 108(1):77–86CrossRefPubMed
27.
go back to reference Barber C (1994) Electrodes and the recording of the human electroretinogram (ERG). Int J Psychophysiol 16(2–3):131–136CrossRefPubMed Barber C (1994) Electrodes and the recording of the human electroretinogram (ERG). Int J Psychophysiol 16(2–3):131–136CrossRefPubMed
28.
go back to reference Coupland SG, Janaky M (1989) ERG electrode in pediatric patients—comparison of DTL Fiber, PVA-Gel, and non-corneal skin electrodes. Doc Ophthalmol 71(4):427–433CrossRefPubMed Coupland SG, Janaky M (1989) ERG electrode in pediatric patients—comparison of DTL Fiber, PVA-Gel, and non-corneal skin electrodes. Doc Ophthalmol 71(4):427–433CrossRefPubMed
29.
go back to reference Fulton AB, Brecelj J, Lorenz B, Moskowitz A, Thompson D, Westall CA (2006) Pediatric clinical visual electrophysiology: a survey of actual practice. Doc Ophthalmol 113(3):193–204CrossRefPubMed Fulton AB, Brecelj J, Lorenz B, Moskowitz A, Thompson D, Westall CA (2006) Pediatric clinical visual electrophysiology: a survey of actual practice. Doc Ophthalmol 113(3):193–204CrossRefPubMed
30.
go back to reference Kriss A (1994) Skin ERGs—their effectiveness in pediatric visual assessment, confounding factors, and comparison with ERGs recorded using various types of corneal electrode. Int J Psychophysiol 16(2–3):137–146CrossRefPubMed Kriss A (1994) Skin ERGs—their effectiveness in pediatric visual assessment, confounding factors, and comparison with ERGs recorded using various types of corneal electrode. Int J Psychophysiol 16(2–3):137–146CrossRefPubMed
31.
go back to reference Meredith SP, Reddy MA, Allen LE, Moore AT, Bradshaw K (2004) Full-field ERG responses recorded with skin electrodes in paediatric patients with retinal dystrophy. Doc Ophthalmol 109(1):57–66CrossRefPubMed Meredith SP, Reddy MA, Allen LE, Moore AT, Bradshaw K (2004) Full-field ERG responses recorded with skin electrodes in paediatric patients with retinal dystrophy. Doc Ophthalmol 109(1):57–66CrossRefPubMed
32.
go back to reference Papathanasiou ES, Papacostas SS (2008) Flash electroretinography: normative values with surface skin electrodes and no pupil dilation using a standard stimulation protocol. Doc Ophthalmol 116(1):61–73CrossRefPubMed Papathanasiou ES, Papacostas SS (2008) Flash electroretinography: normative values with surface skin electrodes and no pupil dilation using a standard stimulation protocol. Doc Ophthalmol 116(1):61–73CrossRefPubMed
33.
go back to reference Porciatti V, Ventura LM (2009) Physiologic significance of steady-state pattern electroretinogram losses in glaucoma: clues from simulation of abnormalities in normal subjects. J Glaucoma 18(7):535–542CrossRefPubMed Porciatti V, Ventura LM (2009) Physiologic significance of steady-state pattern electroretinogram losses in glaucoma: clues from simulation of abnormalities in normal subjects. J Glaucoma 18(7):535–542CrossRefPubMed
34.
go back to reference Bland JM, Altman DG (1986) Statistical methods for assessing agreement between two methods of clinical measurement. Lancet 1(8476):307–310PubMed Bland JM, Altman DG (1986) Statistical methods for assessing agreement between two methods of clinical measurement. Lancet 1(8476):307–310PubMed
35.
go back to reference Aguilar M, Stiles W (1954) Saturation of the rod mechanism of the retina at high levels of stimulation. Opt Acta 1:59–66 Aguilar M, Stiles W (1954) Saturation of the rod mechanism of the retina at high levels of stimulation. Opt Acta 1:59–66
36.
go back to reference Marmor MF, Fulton AB, Holder GE, Miyake Y, Brigell M, Bach M (2009) ISCEV Standard for full-field clinical electroretinography (2008 update). Doc Ophthalmol 118(1):69–77CrossRefPubMed Marmor MF, Fulton AB, Holder GE, Miyake Y, Brigell M, Bach M (2009) ISCEV Standard for full-field clinical electroretinography (2008 update). Doc Ophthalmol 118(1):69–77CrossRefPubMed
37.
go back to reference Bland JM, Altman DG (1995) Multiple significance tests: the Bonferroni method. Brit Med J 310(6973):170PubMed Bland JM, Altman DG (1995) Multiple significance tests: the Bonferroni method. Brit Med J 310(6973):170PubMed
38.
go back to reference Ueno S, Kondo M, Niwa Y, Terasaki H, Miyake Y (2004) Luminance dependence of neural components that underlies the primate photopic electroretinogram. Invest Ophthalmol Vis Sci 45(3):1033–1040CrossRefPubMed Ueno S, Kondo M, Niwa Y, Terasaki H, Miyake Y (2004) Luminance dependence of neural components that underlies the primate photopic electroretinogram. Invest Ophthalmol Vis Sci 45(3):1033–1040CrossRefPubMed
39.
go back to reference Wali N, Leguire LE (1992) Fundus pigmentation and the dark-adapted electroretinogram. Doc Ophthalmol 80(1):1–11CrossRefPubMed Wali N, Leguire LE (1992) Fundus pigmentation and the dark-adapted electroretinogram. Doc Ophthalmol 80(1):1–11CrossRefPubMed
40.
go back to reference Westall CA, Dhaliwal HS, Panton CM, Sigesmun D, Levin AV, Nischal KK, Heon E (2001) Values of electroretinogram responses according to axial length. Doc Ophthalmol 102(2):115–130CrossRefPubMed Westall CA, Dhaliwal HS, Panton CM, Sigesmun D, Levin AV, Nischal KK, Heon E (2001) Values of electroretinogram responses according to axial length. Doc Ophthalmol 102(2):115–130CrossRefPubMed
41.
go back to reference Hebert M, Vaegan, Lachapelle P (1999) Reproducibility of ERG responses obtained with the DTL electrode. Vis Res 39(6):1069–1070CrossRefPubMed Hebert M, Vaegan, Lachapelle P (1999) Reproducibility of ERG responses obtained with the DTL electrode. Vis Res 39(6):1069–1070CrossRefPubMed
42.
go back to reference Aldebasi YH, Drasdo N, Morgan JE, North RV (2003) Cortical OFF-potentials from the S-cone pathway reveal neural damage in early glaucoma. Vision Res 43(2):221–226CrossRefPubMed Aldebasi YH, Drasdo N, Morgan JE, North RV (2003) Cortical OFF-potentials from the S-cone pathway reveal neural damage in early glaucoma. Vision Res 43(2):221–226CrossRefPubMed
43.
go back to reference Wali N, Leguire LE (1991) Dark-adapted luminance-response functions with skin and corneal electrodes. Doc Ophthalmol 76(4):367–375CrossRefPubMed Wali N, Leguire LE (1991) Dark-adapted luminance-response functions with skin and corneal electrodes. Doc Ophthalmol 76(4):367–375CrossRefPubMed
44.
go back to reference Esakowitz L, Kriss A, Shawkat F (1993) A comparison of flash electroretinograms recorded from Burian Allen, jet, C-glide, gold foil, DTL and skin electrodes. Eye 7:169–171PubMed Esakowitz L, Kriss A, Shawkat F (1993) A comparison of flash electroretinograms recorded from Burian Allen, jet, C-glide, gold foil, DTL and skin electrodes. Eye 7:169–171PubMed
45.
go back to reference McCulloch DL, Van Boemel GB, Borchert MS (1997) Comparisons of contact lens, foil, fiber and skin electrodes for patterns electroretinograms. Doc Ophthalmol 94(4):327–340CrossRefPubMed McCulloch DL, Van Boemel GB, Borchert MS (1997) Comparisons of contact lens, foil, fiber and skin electrodes for patterns electroretinograms. Doc Ophthalmol 94(4):327–340CrossRefPubMed
Metadata
Title
Inter-subject, inter-ocular and inter-session repeatability of the photopic negative response of the electroretinogram recorded using DTL and skin electrodes
Authors
Katharine E. Mortlock
Alison M. Binns
Yousef H. Aldebasi
Rachel V. North
Publication date
01-10-2010
Publisher
Springer-Verlag
Published in
Documenta Ophthalmologica / Issue 2/2010
Print ISSN: 0012-4486
Electronic ISSN: 1573-2622
DOI
https://doi.org/10.1007/s10633-010-9239-9

Other articles of this Issue 2/2010

Documenta Ophthalmologica 2/2010 Go to the issue