Assessment of the Optic Disc and Retinal Microvasculature by Optical Coherence Tomography Angiography in Patients With Pediatric Migraine

Update Item Information
Title Assessment of the Optic Disc and Retinal Microvasculature by Optical Coherence Tomography Angiography in Patients With Pediatric Migraine
Creator B. E. Kurtul; C. Sipal; Y. Akbas
Affiliation Tayfur Ata Sökmen Faculty of Medicine (BEK), Department of Ophthalmology, Hatay Mustafa Kemal University, Hatay, Turkey; Tayfur Ata Sökmen Faculty of Medicine (CS), Department of Ophthalmology, Mustafa Kemal University, Hatay, Turkey; and Tayfur Ata Sökmen Faculty of Medicine (YA), Department of Pediatric Neurology, Hatay Mustafa Kemal University, Hatay, Turkey
Abstract Migraine, as a chronic neurovascular disease, is known to be a risk factor for retinal and optic nerve head damage. Herein, we aimed to evaluate the optic disc and retinal microvasculature in pediatric migraine (PM) patients using optical coherence tomography angiography (OCTA).
Subject Headache; Pediatric Migraine; OCTA
OCR Text Show
Date 2023-06
Date Digital 2023-06
References 1. Wöber-Bingöl C. Epidemiology of migraine and headache in children and adolescents. Curr Pain Headache Rep. 2013;17:341. 2. Lewis DW. Pediatric migraine. Neurol Clin. 2009;27:481-501. 3. Eidlitz-Marcus T, Gorali O, Haimi-Cohen Y, Zeharia A. Symptoms of migraine in the pediatric population by age group. Cephalalgia. 2008;28:1259-1263. 4. Kara SA, Erdemoglu AK, Karadeniz MY, Altinok D. Colour Doppler sonography of orbital and vertebral arteries in migraineurs without aura. J Clin Ultrasound. 2003;31:308-314. 5. Lee AG, Brazis PW, Miller NR. Posterior ischemic optic neuropathy associated with migraine. Headache. 1996;36:506-510. 6. Arnold AC, Costa RM, Dumitrascu OM. The spectrum of optic disc ischemia in patients younger than 50 years (an Amercian Ophthalmological Society thesis). Trans Am Ophthalmol Soc. 2013;111:93-118. 7. Arnold AC. The 14th hoyt lecture: ischemic optic neuropathy: the evolving profile, 1966-2015. J Neuroophthalmol. 2016;36:208-215. 8. Gramer G, Weber BH, Gramer E. Migraine and vasospasm in glaucoma: age-related evaluation of 2027 patients with glaucoma or ocular hypertension. Invest Ophthalmol Vis Sci. 2015;56:7999-8007. 9. Koustenis A Jr, Harris A, Gross J, Januleviciene I, Shah A, Siesky B. Optical coherence tomography angiography: an overview of the technology and an assessment of applications for clinical research. Br J Ophthalmol. 2017;101:16-20. 10. Güler Ö, Güler M, Tugan Yıldız CB, Hakkoymaz H. Are retinal and peripapillary blood flows affected during migraine attack? Neuroophthalmology. 2020;44:299-306. 11. Chang MY, Phasukkijwatana N, Garrity S, Pineles SL, Rahimi M, Sarraf D, Johnston M, Charles A, Arnold AC. Foveal and peripapillary vascular decrement in migraine with aura demonstrated by optical coherence tomography angiography. Invest Ophthalmol Vis Sci. 2017;58:5477-5484. 12. Ulusoy MO, Horasanlı B, Kal A. Retinal vascular density evaluation of migraine patients with and without aura and association with white matter hyperintensities. Acta Neurol Belg. 2019;119:411-417. 13. Karahan M, Erdem S, Ava S, Kaya AA, Demirtas AA, Keklikci U. Evaluation of retinal and optic nerve vasculature by optic coherence tomography angiography in migraine with Aura. J Fr Ophtalmol. 2021;44:1396-1402. 14. Bingöl Kızıltunç P, Özcan G, Özer F, Togay Is¸ıkay C, Atilla H. Evaluation of retinal vessel density and choriocapillaris flow in migraine patients with and without aura. Graefes Arch Clin Exp Ophthalmol. 2020;258:2517-2521. 15. Hamurcu MS, Gultekin BP, Koca S, Ece SD. Evaluation of migraine patients with optical coherence tomography angiography. Int Ophthalmol. 2021;41:3929-3933. 16. Gürakar Özçift S, Aydın E, Eris¸ E. Assessment of the choroidal thickness, central macular vascular and optic disk perfusion in migraine patients with optical coherence tomography angiography. Photodiagnosis Photodyn Ther. 2021;35:102397. 17. Headache Classification Committee of the International Headache Society (IHS). The international classification of headache disorders: 3rd edition (beta version). Cephalalgia. 2013;33:629-808. 18. Nalcacioglu P, Taslipinar Uzel AG, Uzel MM, Cagil N, Citak Kurt AN. Are there any changes in posterior ocular structure parameters in pediatric migraine patients? Eur J Ophthalmol. 2017;27:495-501. 19. Yener AÜ, Yılmaz D. Topographic changes measured by the swept source optical coherence tomography in retinal nerve fiber layer, optic nerve head and macula in children with migraine. Acta Neurol Belg. 2020;120:661-668. 20. Muthu Krishnan V, Datta Gulnar P, Vasudev Anand R, Vijayakumar C, Balasubramaniyan G. Ocular and systemic risk factors and correlation with glaucomatous damage in normal tension glaucoma. Cureus. 2018;10:e2638.
Language eng
Format application/pdf
Type Text
Publication Type Journal Article
Source Journal of Neuro-Ophthalmology, June 2023, Volume 43, Issue 2
Collection NOVEL: The Journal of Neuro-Ophthalmology Archive: https://novel.utah.edu/collection/journal-of-neuro-ophthalmology-archive
Publisher Lippincott, Williams & Wilkins
Holding Institution Spencer S. Eccles Health Sciences Library, University of Utah, 10 N 1900 E SLC, UT 84112-5890
Rights Management © North American Neuro-Ophthalmology Society
ARK ark:/87278/s6c4j1c2
Setname ehsl_novel_jno
ID 2498901
Reference URL https://collections.lib.utah.edu/ark:/87278/s6c4j1c2
Back to Search Results