Skip to main content
Top
Published in: BMC Ophthalmology 1/2016

Open Access 01-12-2016 | Research article

Ocular pulse amplitude and retina nerve fiber layer thickness in migraine patients without aura

Authors: Semra Acer, Attila Oğuzhanoğlu, Ebru Nevin Çetin, Nedim Ongun, Gökhan Pekel, Alper Kaşıkçı, Ramazan Yağcı

Published in: BMC Ophthalmology | Issue 1/2016

Login to get access

Abstract

Background

To evaluate the ocular pulse amplitude (OPA), the posterior pole asymmetry analysis (PPAA), the peripapillary retinal nerve fiber layer (RNFL) thickness, the ganglion cell layer (GCL) thickness, macular thickness and visual field testing in migraine patients without aura.

Methods

In this prospective, cross-sectional and comparative study 38 migraine patients and 44 age and sex matched controls were included. OPA was measured by dynamic contour tonometry (DCT), PPAA, RNFL, GCL and macular thickness were measured by Heidelberg Spectral Domain Optical Coherence Tomography (SD-OCT) and standard perimetry was performed using the Humphrey automated field analyzer.

Results

The difference in OPA was not statistically significant between the two groups (p ≥ 0.05). In the PPAA there was no significant difference between two hemispheres in each eye (p ≥ 0.05). The RNFL thickness was significantly reduced in the temporal and nasal superior sectors in the migraine group (p ≤ 0.05). The GCL and macular thickness measurements were thinner in migraine patients but the difference between groups was not statistically significant (p ≥ 0.05). There was no correlation between RNFL, GCL, macular thickness measurements and OPA values. There was no significant difference in the mean deviation (MD) and pattern standard deviation (PSD) between the two groups (p ≥ 0.05).

Conclusions

Migraine patients without aura have normal OPA values, no significant asymmetry of the posterior pole and decreased peripapillary RNFL thickness in the temporal and nasal superior sectors compared with controls. These findings suggest that there is sectorial RNFL thinning in migraine patients without aura and pulsative choroidal blood flow may not be affected during the chronic course of disease.
Literature
2.
go back to reference Lepore FE. Effects of visual pathway lesions on the visual aura of migraine. Cephalalgia. 2009;29:430–5.CrossRefPubMed Lepore FE. Effects of visual pathway lesions on the visual aura of migraine. Cephalalgia. 2009;29:430–5.CrossRefPubMed
3.
go back to reference Dersu II, Thostenson J, Durcan FJ, Hamilton SM, Digre KB. Optic disc and visual test findings in patients with migraine. J Clin Neurosci. 2013;20:72–4.CrossRefPubMed Dersu II, Thostenson J, Durcan FJ, Hamilton SM, Digre KB. Optic disc and visual test findings in patients with migraine. J Clin Neurosci. 2013;20:72–4.CrossRefPubMed
4.
go back to reference Gipponi S, Scaroni N, Venturelli E, Forbice E, Rao R, Liberini P, et al. Reduction in retinal nerve fiber layer thickness in migraine patients. Neurol Sci. 2013;34(6):841–5.CrossRefPubMed Gipponi S, Scaroni N, Venturelli E, Forbice E, Rao R, Liberini P, et al. Reduction in retinal nerve fiber layer thickness in migraine patients. Neurol Sci. 2013;34(6):841–5.CrossRefPubMed
5.
go back to reference Martinez A, Proupim N, Sanchez M. Retinal nerve fibre layer thickness measurements using optical coherence tomography in migraine patients. Br J Ophthalmol. 2008;92:1069–75.CrossRefPubMed Martinez A, Proupim N, Sanchez M. Retinal nerve fibre layer thickness measurements using optical coherence tomography in migraine patients. Br J Ophthalmol. 2008;92:1069–75.CrossRefPubMed
6.
go back to reference Phelps CD, Corbett JJ. Migraine and low-tension glaucoma. A case-control study. Invest Ophthalmol Vis Sci. 1985;26:1105–8.PubMed Phelps CD, Corbett JJ. Migraine and low-tension glaucoma. A case-control study. Invest Ophthalmol Vis Sci. 1985;26:1105–8.PubMed
7.
go back to reference Sacco S, Ricci S, Carolei A. Migraine and vascular diseases: a review of the evidence and potential implications for management. Cephalalgia. 2012;32:785–95.CrossRefPubMed Sacco S, Ricci S, Carolei A. Migraine and vascular diseases: a review of the evidence and potential implications for management. Cephalalgia. 2012;32:785–95.CrossRefPubMed
8.
go back to reference Tzourio C, Iglesias S, Hubert JB, Visy JM, Alpérovitch A, Tehindrazanarivelo A, et al. Migraine and risk of ischaemic stroke: a case-control study. BMJ. 1993;307(6899):289–92.CrossRefPubMedPubMedCentral Tzourio C, Iglesias S, Hubert JB, Visy JM, Alpérovitch A, Tehindrazanarivelo A, et al. Migraine and risk of ischaemic stroke: a case-control study. BMJ. 1993;307(6899):289–92.CrossRefPubMedPubMedCentral
9.
go back to reference Katz B. Migrainous central retinal artery occlusion. J Clin Neuroophthalmol. 1986;6:69–75.PubMed Katz B. Migrainous central retinal artery occlusion. J Clin Neuroophthalmol. 1986;6:69–75.PubMed
10.
go back to reference Schwenn O, Troost R, Vogel A, Grus F, Beck S, Pfeiffer N. Ocular pulse amplitude in patients with open angle glaucoma, normal tension glaucoma, and ocular hypertension. Br J Ophthalmol. 2002;86:981–4.CrossRefPubMedPubMedCentral Schwenn O, Troost R, Vogel A, Grus F, Beck S, Pfeiffer N. Ocular pulse amplitude in patients with open angle glaucoma, normal tension glaucoma, and ocular hypertension. Br J Ophthalmol. 2002;86:981–4.CrossRefPubMedPubMedCentral
11.
go back to reference Knecht PB, Menghini M, Bachmann LM, Baumgartner RW, Landau K. The ocular pulse amplitude as a noninvasive parameter for carotid artery stenosis screening: a test accuracy study. Ophthalmology. 2012;119(6):1244–9.CrossRefPubMed Knecht PB, Menghini M, Bachmann LM, Baumgartner RW, Landau K. The ocular pulse amplitude as a noninvasive parameter for carotid artery stenosis screening: a test accuracy study. Ophthalmology. 2012;119(6):1244–9.CrossRefPubMed
12.
go back to reference Um TW, Sung KR, Wollstein G, Yun SC, Na JH, Schuman JS. Asymmetry in hemifield macular thickness as an early indicator of glaucomatous change. Invest Ophthalmol Vis Sci. 2012;53:1139–44.CrossRefPubMedPubMedCentral Um TW, Sung KR, Wollstein G, Yun SC, Na JH, Schuman JS. Asymmetry in hemifield macular thickness as an early indicator of glaucomatous change. Invest Ophthalmol Vis Sci. 2012;53:1139–44.CrossRefPubMedPubMedCentral
13.
go back to reference Asghar MS, Hansen AE, Amin FM, van der Geest RJ, Koning P, Larsson HB, et al. Evidence for a vascular factor in migraine. Ann Neurol. 2011;69:635–45.CrossRefPubMed Asghar MS, Hansen AE, Amin FM, van der Geest RJ, Koning P, Larsson HB, et al. Evidence for a vascular factor in migraine. Ann Neurol. 2011;69:635–45.CrossRefPubMed
14.
go back to reference Olesen J. The international classification of headache disorders. 2nd edition (ICHD-II). Rev Neurol (Paris). 2005;161:689–91.CrossRef Olesen J. The international classification of headache disorders. 2nd edition (ICHD-II). Rev Neurol (Paris). 2005;161:689–91.CrossRef
15.
go back to reference Ekinci M, Ceylan E, Cağatay HH, Keleş S, Hüseyinoğlu N, Tanyildiz B, et al. Retinal nerve fibre layer, ganglion cell layer and choroid thinning in migraine with aura. BMC Ophthalmol. 2014;14:75.CrossRefPubMedPubMedCentral Ekinci M, Ceylan E, Cağatay HH, Keleş S, Hüseyinoğlu N, Tanyildiz B, et al. Retinal nerve fibre layer, ganglion cell layer and choroid thinning in migraine with aura. BMC Ophthalmol. 2014;14:75.CrossRefPubMedPubMedCentral
16.
go back to reference Kara SA, Erdemoğlu AK, Karadeniz MY, Altinok D. Color Doppler sonography of orbital and vertebral arteries in migraineurs without aura. J Clin Ultrasound. 2003;31(6):308–14.CrossRefPubMed Kara SA, Erdemoğlu AK, Karadeniz MY, Altinok D. Color Doppler sonography of orbital and vertebral arteries in migraineurs without aura. J Clin Ultrasound. 2003;31(6):308–14.CrossRefPubMed
17.
go back to reference Ruskell GL. Facial parasympathetic innervation of the choroidal blood vessels in monkeys. Exp Eye Res. 1971;12:166–72.CrossRefPubMed Ruskell GL. Facial parasympathetic innervation of the choroidal blood vessels in monkeys. Exp Eye Res. 1971;12:166–72.CrossRefPubMed
18.
go back to reference Bill A. Blood circulation and fluid dynamics in the eye. Physiol Rev. 1975;55:383–417.PubMed Bill A. Blood circulation and fluid dynamics in the eye. Physiol Rev. 1975;55:383–417.PubMed
20.
go back to reference Connor RC. Complicated migraine. A study of permanent neurological and visual defects caused by migraine. Lancet. 1962;2:1072–5.CrossRefPubMed Connor RC. Complicated migraine. A study of permanent neurological and visual defects caused by migraine. Lancet. 1962;2:1072–5.CrossRefPubMed
21.
go back to reference McKee HD, Saldana M, Ahad MA. Increased ocular pulse amplitude revealing aortic regurgitation. Am J Ophthalmol. 2004;138:503.CrossRefPubMed McKee HD, Saldana M, Ahad MA. Increased ocular pulse amplitude revealing aortic regurgitation. Am J Ophthalmol. 2004;138:503.CrossRefPubMed
22.
go back to reference Golnik KC, Miller NR. Diagnosis of cavernous sinus arteriovenous fistula by measurement of ocular pulse amplitude. Ophthalmology. 1992;99:1146–52.CrossRefPubMed Golnik KC, Miller NR. Diagnosis of cavernous sinus arteriovenous fistula by measurement of ocular pulse amplitude. Ophthalmology. 1992;99:1146–52.CrossRefPubMed
23.
go back to reference Cetin EN, Bulgu Y, Taslı L, Cobankara V, Yildirım C. Ocular pulse amplitude in Behçet disease. Ocul Immunol Inflamm. 2011;19:376–8.CrossRefPubMed Cetin EN, Bulgu Y, Taslı L, Cobankara V, Yildirım C. Ocular pulse amplitude in Behçet disease. Ocul Immunol Inflamm. 2011;19:376–8.CrossRefPubMed
24.
go back to reference Tan O, Chopra V, Lu AT, Schuman JS, Ishikawa H, Wollstein G, et al. Detection of macular ganglion cell loss in glaucoma by Fourier-domain opticalcoherence tomography. Ophthalmology. 2009;116(12):2305-14. Tan O, Chopra V, Lu AT, Schuman JS, Ishikawa H, Wollstein G, et al. Detection of macular ganglion cell loss in glaucoma by Fourier-domain opticalcoherence tomography. Ophthalmology. 2009;116(12):2305-14.
25.
go back to reference Sung KR, Kim JS, Wollstein G, Folio L, Kook MS, Schuman JS. Imaging of the retinal nerve fibre layer with spectral domain optical coherence tomography for glaucoma diagnosis. Br J Ophthalmol. 2011;95:909–14.CrossRefPubMed Sung KR, Kim JS, Wollstein G, Folio L, Kook MS, Schuman JS. Imaging of the retinal nerve fibre layer with spectral domain optical coherence tomography for glaucoma diagnosis. Br J Ophthalmol. 2011;95:909–14.CrossRefPubMed
26.
go back to reference Seo JH, Kim TW, Weinreb RN, Park KH, Kim SH, Kim DM. Detection of localized retinal nerve fiber layer defects with posterior pole asymmetry analysis of spectral domain optical coherence tomography. Invest Ophthalmol Vis Sci. 2012;53:4347–53.CrossRefPubMed Seo JH, Kim TW, Weinreb RN, Park KH, Kim SH, Kim DM. Detection of localized retinal nerve fiber layer defects with posterior pole asymmetry analysis of spectral domain optical coherence tomography. Invest Ophthalmol Vis Sci. 2012;53:4347–53.CrossRefPubMed
27.
go back to reference Cunha LP, Vessani RM, Monteiro ML. Localized neural loss detected by macular thickness reduction using optical coherence tomography: case report. Arq Bras Oftalmol. 2008;71:743–6.CrossRefPubMed Cunha LP, Vessani RM, Monteiro ML. Localized neural loss detected by macular thickness reduction using optical coherence tomography: case report. Arq Bras Oftalmol. 2008;71:743–6.CrossRefPubMed
28.
go back to reference Linsenmeier RA, Braun RD. Oxygen distribution and consumption in the cat retina during normoxia and hypoxemia. J Gen Physiol. 1992;99(2):177–97.CrossRefPubMed Linsenmeier RA, Braun RD. Oxygen distribution and consumption in the cat retina during normoxia and hypoxemia. J Gen Physiol. 1992;99(2):177–97.CrossRefPubMed
29.
go back to reference Riva CE, Grunwald JE, Petrig BL. Retinal vessels lack a functional sympathetic innervation. “Autoregulation of human retinal blood flow. An investigation with laser Doppler velocimetry”. Invest Ophthalmol Vis Sci. 1986;27:1706–12.PubMed Riva CE, Grunwald JE, Petrig BL. Retinal vessels lack a functional sympathetic innervation. “Autoregulation of human retinal blood flow. An investigation with laser Doppler velocimetry”. Invest Ophthalmol Vis Sci. 1986;27:1706–12.PubMed
30.
go back to reference McKendrick AM, Vingrys AJ, Badcock DR, Heywood JT. Visual field losses in subjects with migraine headaches. Invest Ophthalmol Vis Sci. 2000;41:1239–47.PubMed McKendrick AM, Vingrys AJ, Badcock DR, Heywood JT. Visual field losses in subjects with migraine headaches. Invest Ophthalmol Vis Sci. 2000;41:1239–47.PubMed
31.
go back to reference Lewis RA, Vijayan N, Watson C, Keltner J, Johnson CA. Visual field loss in migraine. Ophthalmology. 1989;96:321–6.CrossRefPubMed Lewis RA, Vijayan N, Watson C, Keltner J, Johnson CA. Visual field loss in migraine. Ophthalmology. 1989;96:321–6.CrossRefPubMed
32.
go back to reference Wakakura M, Ichibe Y. Permanent homonymous hemianopias following migraine. J Clin Neuro-ophthalmol. 1992;12:198–202. Wakakura M, Ichibe Y. Permanent homonymous hemianopias following migraine. J Clin Neuro-ophthalmol. 1992;12:198–202.
Metadata
Title
Ocular pulse amplitude and retina nerve fiber layer thickness in migraine patients without aura
Authors
Semra Acer
Attila Oğuzhanoğlu
Ebru Nevin Çetin
Nedim Ongun
Gökhan Pekel
Alper Kaşıkçı
Ramazan Yağcı
Publication date
01-12-2016
Publisher
BioMed Central
Published in
BMC Ophthalmology / Issue 1/2016
Electronic ISSN: 1471-2415
DOI
https://doi.org/10.1186/s12886-015-0180-2

Other articles of this Issue 1/2016

BMC Ophthalmology 1/2016 Go to the issue