Skip to main content
Erschienen in: Documenta Ophthalmologica 3/2011

01.06.2011 | Original Research Article

Comparison of pattern VEP results acquired using CRT and TFT stimulators in the clinical practice

verfasst von: Balázs Vince Nagy, Szabolcs Gémesi, Dávid Heller, András Magyar, Ágnes Farkas, György Ábrahám, Balázs Varsányi

Erschienen in: Documenta Ophthalmologica | Ausgabe 3/2011

Einloggen, um Zugang zu erhalten

Abstract

There are several electrophysiological systems available commercially. Usually, control groups are required to compare their results, due to the differences between display types. Our aim was to examine the differences between CRT and LCD/TFT stimulators used in pattern VEP responses performed according to the ISCEV standards. We also aimed to check different contrast values toward thresholds. In order to obtain more precise results, we intended to measure the intensity and temporal response characteristics of the monitors with photometric methods. To record VEP signals, a Roland RetiPort electrophysiological system was used. The pattern VEP tests were carried out according to ISCEV protocols on a CRT and a TFT monitor consecutively. Achromatic checkerboard pattern was used at three different contrast levels (maximal, 75, 25%) using 1° and 15′ check sizes. Both CRT and TFT displays were luminance and contrast matched, according to the gamma functions based on measurements at several DAC values. Monitor-specific luminance parameters were measured by means of spectroradiometric instruments. Temporal differences between the displays’ electronic and radiometric signals were measured with a device specifically built for the purpose. We tested six healthy control subjects with visual acuity of at least 20/20. The tests were performed on each subject three times on different days. We found significant temporal differences between the CRT and the LCD monitors at all contrast levels and spatial frequencies. In average, the latency times were 9.0 ms (±3.3 ms) longer with the TFT stimulator. This value is in accordance with the average of the measured TFT input–output temporal difference values (10.1 ± 2.2 ms). According to our findings, measuring the temporal parameters of the TFT monitor with an adequately calibrated measurement setup and correcting the VEP data with the resulting values, the VEP signals obtained with different display types can be transformed to be comparable.
Literatur
1.
Zurück zum Zitat Odom JV, Bach M, Brigell M, Holder GE, McCulloch DL, Tormene AP, Vaegan (2010) ISCEV standard for clinical visual evoked potentials (2009 update). Doc Ophthalmol 120:111–119PubMedCrossRef Odom JV, Bach M, Brigell M, Holder GE, McCulloch DL, Tormene AP, Vaegan (2010) ISCEV standard for clinical visual evoked potentials (2009 update). Doc Ophthalmol 120:111–119PubMedCrossRef
2.
Zurück zum Zitat Husain AM, Hayes S, Young M, Shah D (2009) Visual evoked potentials with CRT and LCD monitors. Neurology 72:162–164PubMedCrossRef Husain AM, Hayes S, Young M, Shah D (2009) Visual evoked potentials with CRT and LCD monitors. Neurology 72:162–164PubMedCrossRef
3.
Zurück zum Zitat Karanjia R, Brunet DG, ten Hove MW (2009) Optimization of visual evoked potential (VEP) recording systems. Can J Neurol Sci 36:89–92PubMed Karanjia R, Brunet DG, ten Hove MW (2009) Optimization of visual evoked potential (VEP) recording systems. Can J Neurol Sci 36:89–92PubMed
4.
Zurück zum Zitat Varsanyi B, Nagy BV, Heller D, Farkas A (2009) Comparison of VEP results performed on CRT and LCD displays and evaluation of photometric calibration of the devices. Doc Ophthalmol 119(Suppl.1):3–16 Varsanyi B, Nagy BV, Heller D, Farkas A (2009) Comparison of VEP results performed on CRT and LCD displays and evaluation of photometric calibration of the devices. Doc Ophthalmol 119(Suppl.1):3–16
5.
Zurück zum Zitat Michelson A (1927) Studies in optics. University of Chicago Press, Chicago Michelson A (1927) Studies in optics. University of Chicago Press, Chicago
6.
Zurück zum Zitat Brainard DH, Pelli DG, Robson T (2002) Display characterization. In the Encylopedia of imaging science and technology. Wiley, Oxford, pp 172–188 Brainard DH, Pelli DG, Robson T (2002) Display characterization. In the Encylopedia of imaging science and technology. Wiley, Oxford, pp 172–188
7.
Zurück zum Zitat den Boer W (2005) Active matrix liquid crystal displays: fundamentals and applications. Newnes den Boer W (2005) Active matrix liquid crystal displays: fundamentals and applications. Newnes
9.
Zurück zum Zitat Heckenlively JR, Arden GB (2006) Principles and practice of clinical electrophysiology of vision. The MIT Press, Cambidge Heckenlively JR, Arden GB (2006) Principles and practice of clinical electrophysiology of vision. The MIT Press, Cambidge
10.
Zurück zum Zitat Elze T (2010) Achieving precise display timing in visual neuroscience experiments. J Neurosci Methods 191:171–179 Elze T (2010) Achieving precise display timing in visual neuroscience experiments. J Neurosci Methods 191:171–179
Metadaten
Titel
Comparison of pattern VEP results acquired using CRT and TFT stimulators in the clinical practice
verfasst von
Balázs Vince Nagy
Szabolcs Gémesi
Dávid Heller
András Magyar
Ágnes Farkas
György Ábrahám
Balázs Varsányi
Publikationsdatum
01.06.2011
Verlag
Springer-Verlag
Erschienen in
Documenta Ophthalmologica / Ausgabe 3/2011
Print ISSN: 0012-4486
Elektronische ISSN: 1573-2622
DOI
https://doi.org/10.1007/s10633-011-9270-5

Weitere Artikel der Ausgabe 3/2011

Documenta Ophthalmologica 3/2011 Zur Ausgabe

Neu im Fachgebiet Augenheilkunde

Update Augenheilkunde

Bestellen Sie unseren Fach-Newsletter und bleiben Sie gut informiert.