The prevalence and characteristics of visceral autonomic symptoms among migraineurs: A population-based study

1. Goadsby, PJ, Lipton, RB, Ferrari, MD. Migraine—current understanding and treatment. NEJM 2002; 346: 257–270.
Google Scholar | Crossref | Medline | ISI2. Vos T, Abajobir AA, Abate KH, et al. Global, regional, and national incidence, prevalence, and years lived with disability for 328 diseases and injuries for 195 countries, 1990–2016: a systematic analysis for the Global Burden of Disease Study 2016. Lancet 2017; 390: 1211–12159.
Google Scholar | Crossref | Medline3. Lipton, RB, Stewart, WF, Diamond, S, et al. Prevalence and burden of migraine in the United States: data from the American Migraine Study II. Headache 2001; 41: 646–657.
Google Scholar | Crossref | Medline | ISI4. Steiner, TJ, Stovner, LJ, Vos, T, et al. Migraine is first cause of disability in under 50s: will health politicians now take notice? J Headache Pain 2018; 19: 17.
Google Scholar5. Lipton, RB, Bigal, ME, Diamond, M, et al. Migraine prevalence, disease burden, and the need for preventive therapy. Neurology 2007; 68: 343–349.
Google Scholar | Crossref | Medline | ISI6. Blumenfeld, A, Varon, S, Wilcox, T, et al. Disability, HRQoL and resource use among chronic and episodic migraineurs: results from the International Burden of Migraine Study (IBMS). Cephalalgia 2011; 31: 301–315.
Google Scholar | SAGE Journals | ISI7. Messlinger, K. Migraine: where and how does the pain originate? Exp Brain Res 2009; 196: 179–193.
Google Scholar | Crossref | Medline | ISI8. Buzzi, MG, Moskowitz, MA. The pathophysiology of migraine: year 2005. J Headache Pain 2005; 6: 105.
Google Scholar | Crossref | Medline9. Bernstein, C, Burstein, R. Sensitization of the trigeminovascular pathway: perspective and implications to migraine pathophysiology. J Clinical Neurology 2012; 8: 89–99.
Google Scholar | Crossref | Medline | ISI10. Shechter, A, Stewart, WF, Silberstein, SD, et al. Migraine and autonomic nervous system function: a population-based, case-control study. Neurology 2002; 58: 422–427.
Google Scholar | Crossref | Medline | ISI11. Obermann, M, Yoon, M, Dommes, P, et al. Prevalence of trigeminal autonomic symptoms in migraine: a population-based study. Cephalalgia 2007; 27: 504–509.
Google Scholar | SAGE Journals | ISI12. Barbanti, P, Aurilia, C, Dall’Armi, V, et al. The phenotype of migraine with unilateral cranial autonomic symptoms documents increased peripheral and central trigeminal sensitization. A case series of 757 patients. Cephalalgia 2016; 36: 1334–1340.
Google Scholar | SAGE Journals | ISI13. Riesco, N, Pérez-Alvarez, AI, Verano, L, et al. Prevalence of cranial autonomic parasympathetic symptoms in chronic migraine: usefulness of a new scale. Cephalalgia 2016; 36: 346–350.
Google Scholar | SAGE Journals | ISI14. Barbanti, P, Fabbrini, G, Pesare, M, et al. Unilateral cranial autonomic symptoms in migraine. Cephalalgia 2002; 22: 256–259.
Google Scholar | SAGE Journals | ISI15. Gupta, R, Bhatia, M. A report of cranial autonomic symptoms in migraineurs. Cephalalgia 2007; 27: 22–28.
Google Scholar | SAGE Journals | ISI16. Noseda, R, Burstein, R. Migraine pathophysiology: anatomy of the trigeminovascular pathway and associated neurological symptoms, cortical spreading depression, sensitization, and modulation of pain. PAIN 2013; 154: S44–S53.
Google Scholar | Crossref | Medline | ISI17. Miglis, MG. Migraine and autonomic dysfunction: which is the horse and which is the jockey? Curr Pain Headache Rep 2018; 22: 19.
Google Scholar | Crossref | Medline18. Lai, T-H, Fuh, J-L, Wang, S-J. Cranial autonomic symptoms in migraine: characteristics and comparison with cluster headache. J Neurol Neurosurg Psychiatry 2009; 80: 1116–1119.
Google Scholar | Crossref | Medline | ISI19. Aamodt, AH, Stovner, LJ, Hagen, K, et al. Comorbidity of headache and gastrointestinal complaints. The Head-HUNT Study. Cephalalgia 2008; 28: 144–151.
Google Scholar | Abstract | ISI20. Park, JW, Cho, YS, Lee, SY, et al. Concomitant functional gastrointestinal symptoms influence psychological status in Korean migraine patients. Gut Liver 2013; 7: 668–674.
Google Scholar | Crossref | Medline21. Centonze, V, Polito, BM, Cassiano, MA, et al. The dyspeptic syndrome in migraine: morphofunctional evaluation on 53 patients. Headache 1996; 36: 442–445.
Google Scholar | Crossref | Medline | ISI22. Kurth, T, Holtmann, G, Neufang-Hüber, J, et al. Prevalence of unexplained upper abdominal symptoms in patients with migraine. Cephalalgia 2006; 26: 506–510.
Google Scholar | SAGE Journals | ISI23. Shin, YW, Park, HJ, Shim, JY, et al. Seasonal variation, cranial autonomic symptoms, and functional disability in migraine: A questionnaire‐based study in tertiary care. Headache 2015; 55: 1112–1123.
Google Scholar | Crossref | Medline24. Nachit-Ouinekh, F, Chrysostome, V, Henry, P, et al. Variability of reported headache symptoms and diagnosis of migraine at 12 months. Cephalalgia 2005; 25: 117–123.
Google Scholar | SAGE Journals | ISI25. Gil-Gouveia, R, Martins, IP. Clinical description of attack-related cognitive symptoms in migraine: A systematic review. Cephalalgia 2017; 38: 1335–1350.
Google Scholar | SAGE Journals26. Viana, M, Sances, G, Ghiotto, N, et al. Variability of the characteristics of a migraine attack within patients. Cephalalgia 2016; 36: 825–830.
Google Scholar | SAGE Journals | ISI27. Charles, A. The evolution of a migraine attack–a review of recent evidence. Headache 2013; 53: 413–419.
Google Scholar | Crossref | Medline | ISI28. Giffin, NJ, Ruggiero, L, Lipton, RB, et al. Premonitory symptoms in migraine: an electronic diary study. Neurology 2003; 60: 935–940.
Google Scholar | Crossref | Medline | ISI29. Kelman, L. The postdrome of the acute migraine attack. Cephalalgia 2006; 26: 214–220.
Google Scholar | SAGE Journals | ISI30. Barbanti, P, Aurilia, C, Egeo, G, et al. Dopaminergic symptoms in migraine: A cross-sectional study on 1148 consecutive headache center-based patients. Cephalalgia 2020; 40: 1168–1176. DOI: 10.1177/0333102420929023.
Google Scholar | SAGE Journals | ISI31. Quintela, E, Castillo, J, Muñoz, P, et al. Premonitory and resolution symptoms in migraine: a prospective study in 100 unselected patients. Cephalalgia 2006; 26: 1051–1060.
Google Scholar | SAGE Journals | ISI32. Giffin, N, Ruggiero, L, Lipton, RB, et al. Premonitory symptoms in migraine: an electronic diary study. Neurology 2003; 60: 935–940.
Google Scholar | Crossref | Medline | ISI33. Buse, DC, Loder, EW, Gorman, JA, et al. Sex differences in the prevalence, symptoms, and associated features of migraine, probable migraine and other severe headache: Results of the American Migraine Prevalence and Prevention (AMPP) Study. Headache 2013; 53: 1278–1299.
Google Scholar | Crossref | Medline | ISI34. Markush, RE, Karp, HR, Heyman, A, et al. Epidemiologic study of migraine symptoms in young women. Neurology 1975; 25: 430–436.
Google Scholar | Crossref | Medline35. Lipton, RB, Munjal, S, Buse, DC, et al. Predicting inadequate response to acute migraine medication: results from the American Migraine Prevalence and Prevention (AMPP) Study. Headache 2016; 56: 1635–1648.
Google Scholar | Crossref | Medline36. Reed, ML, Fanning, KM, Serrano, D, et al. Persistent frequent nausea is associated with progression to chronic migraine: AMPP study results. Headache 2015; 55: 76–87.
Google Scholar | Crossref | Medline37. Becker, WJ. The premonitory phase of migraine and migraine management. Cephalalgia 2013; 33: 1117–1121.
Google Scholar | SAGE Journals | ISI38. Buzzi, MG, Cologno, D, Formisano, R, et al. Prodromes and the early phase of the migraine attack: therapeutic relevance. Functional Neurol 2005; 20: 179–183.
Google Scholar | Medline | ISI39. Kelman, L. The premonitory symptoms (prodrome): a tertiary care study of 893 migraineurs. Headache 2004; 44: 865–872.
Google Scholar | Crossref | Medline | ISI40. Kelman, L, Tanis, D. The relationship between migraine pain and other associated symptoms. Cephalalgia 2006; 26: 548–553.
Google Scholar | SAGE Journals | ISI41. Aamodt, A, Stovner, L, Hagen, K, et al. Comorbidity of headache and gastrointestinal complaints. The Head-HUNT Study. Cephalalgia 2008; 28: 144–151.
Google Scholar | Abstract | ISI42. Miglis, MG. Migraine and autonomic dysfunction: which is the horse and which is the jockey? Curr Pain Headache Rep 2018; 22: 1–7.
Google Scholar | Crossref | Medline43. Dodick, DW. A phase‐by‐phase review of migraine pathophysiology. Headache 2018; 58: 4–16.
Google Scholar | Crossref | Medline44. Buzzi, M, Tassorelli, C, Nappi, G. Peripheral and central activation of trigeminal pain pathways in migraine: data from experimental animal models. Cephalalgia 2003; 23: 1–4.
Google Scholar | SAGE Journals | ISI45. Burstein, R, Jakubowski, M. Unitary hypothesis for multiple triggers of the pain and strain of migraine. J Comp Neurol 2005; 493: 9–14.
Google Scholar | Crossref | Medline | ISI46. Peroutka, SJ. Migraine: a chronic sympathetic nervous system disorder. Headache 2004; 44: 53–64.
Google Scholar | Crossref | Medline | ISI47. Danno, D, Wolf, J, Ishizaki, K, et al. Cranial autonomic symptoms of migraine in Japan: prospective study of 373 migraine patients at a Tertiary Headache Center. Headache 2020; 60: 1592–1600.
Google Scholar | Crossref | Medline48. Avnon, Y, Nitzan, M, Sprecher, E, et al. Different patterns of parasympathetic activation in uni‐and bilateral migraineurs. Brain 2003; 126: 1660–1670.
Google Scholar | Crossref | Medline | ISI49. Goadsby, P. Trigeminal autonomic cephalalgias. Pathophysiology and classification. Revue Neurologique 2005; 161: 692–695.
Google Scholar | Crossref | Medline | ISI50. Martin, VT, Behbehani, M. Ovarian hormones and migraine headache: understanding mechanisms and pathogenesis—part I. Headache 2006; 46: 3–23.
Google Scholar

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