Skip to main content
Top
Published in: The Journal of Headache and Pain 1/2019

Open Access 01-12-2019 | Migraine | Review article

Mechanisms of migraine as a chronic evolutive condition

Authors: Anna P. Andreou, Lars Edvinsson

Published in: The Journal of Headache and Pain | Issue 1/2019

Login to get access

Abstract

Understanding the mechanisms of migraine remains challenging as migraine is not a static disorder, and even in its episodic form migraine remains an “evolutive” chronic condition. Considerable progress has been made in elucidating the pathophysiological mechanisms of migraine, associated genetic factors that may influence susceptibility to the disease, and functional and anatomical changes during the progression of a migraine attack or the transformation of episodic to chronic migraine. Migraine is a life span neurological disorder that follows an evolutive age-dependent change in its prevalence and even clinical presentations. As a disorder, migraine involves recurrent intense head pain and associated unpleasant symptoms. Migraine attacks evolve over different phases with specific neural mechanisms and symptoms being involved during each phase. In some patients, migraine can be transformed into a chronic form with daily or almost daily headaches. The mechanisms behind this evolutive process remain unknown, but genetic and epigenetic factors, inflammatory processes and central sensitization may play an important role.
Literature
1.
go back to reference Steiner TJ, Scher AI, Stewart WF, Kolodner K, Liberman J, Lipton RB (2003) The prevalence and disability burden of adult migraine in England and their relationships to age, gender and ethnicity. Cephalalgia. 23(7):519–527PubMedCrossRef Steiner TJ, Scher AI, Stewart WF, Kolodner K, Liberman J, Lipton RB (2003) The prevalence and disability burden of adult migraine in England and their relationships to age, gender and ethnicity. Cephalalgia. 23(7):519–527PubMedCrossRef
2.
go back to reference Srikiatkhachorn A, Phanthumchinda K (1997) Prevalence and clinical features of chronic daily headache in a headache clinic. Headache. 37(5):277–280PubMedCrossRef Srikiatkhachorn A, Phanthumchinda K (1997) Prevalence and clinical features of chronic daily headache in a headache clinic. Headache. 37(5):277–280PubMedCrossRef
3.
go back to reference Karbowniczek A, Domitrz I (2011) Frequency and clinical characteristics of chronic daily headache in an outpatient clinic setting. Neurol Neurochir Pol 45(1):11–17PubMedCrossRef Karbowniczek A, Domitrz I (2011) Frequency and clinical characteristics of chronic daily headache in an outpatient clinic setting. Neurol Neurochir Pol 45(1):11–17PubMedCrossRef
4.
go back to reference Lipton RB, Bigal ME, Diamond M, Freitag F, Reed ML, Stewart WF et al (2007) Migraine prevalence, disease burden, and the need for preventive therapy. Neurology. 68(5):343–349PubMedCrossRef Lipton RB, Bigal ME, Diamond M, Freitag F, Reed ML, Stewart WF et al (2007) Migraine prevalence, disease burden, and the need for preventive therapy. Neurology. 68(5):343–349PubMedCrossRef
5.
go back to reference WHO (2004) The global burden of disease. World Health Organization, Geneva WHO Library Cataloguing-in-Publication Data:ISBN 978 92 4 156371 0 WHO (2004) The global burden of disease. World Health Organization, Geneva WHO Library Cataloguing-in-Publication Data:ISBN 978 92 4 156371 0
6.
go back to reference Ozge A, Abu-Arafeh I, Gelfand AA, Goadsby PJ, Cuvellier JC, Valeriani M et al (2017) Experts’ opinion about the pediatric secondary headaches diagnostic criteria of the ICHD-3 beta. J Headache Pain 18(1):113PubMedPubMedCentralCrossRef Ozge A, Abu-Arafeh I, Gelfand AA, Goadsby PJ, Cuvellier JC, Valeriani M et al (2017) Experts’ opinion about the pediatric secondary headaches diagnostic criteria of the ICHD-3 beta. J Headache Pain 18(1):113PubMedPubMedCentralCrossRef
7.
go back to reference Annequin D, Tourniaire B, Massiou H (2000) Migraine and headache in childhood and adolescence. Pediatr Clin N Am 47(3):617–631CrossRef Annequin D, Tourniaire B, Massiou H (2000) Migraine and headache in childhood and adolescence. Pediatr Clin N Am 47(3):617–631CrossRef
8.
go back to reference Peres FM (2005) Epidemiology of migraine. In: Silberstein SD, Stiles MA, Young WB (eds) Atlas of migraine and other headaches, 2nd edn. Taylor & Francis, London and New York, pp 41–49 Peres FM (2005) Epidemiology of migraine. In: Silberstein SD, Stiles MA, Young WB (eds) Atlas of migraine and other headaches, 2nd edn. Taylor & Francis, London and New York, pp 41–49
9.
go back to reference Russell MB, Rasmussen BK, Thorvaldsen P, Olesen J (1995) Prevalence and sex-ratio of the subtypes of migraine. Int J Epidemiol 24(3):612–618PubMedCrossRef Russell MB, Rasmussen BK, Thorvaldsen P, Olesen J (1995) Prevalence and sex-ratio of the subtypes of migraine. Int J Epidemiol 24(3):612–618PubMedCrossRef
10.
11.
go back to reference Neri I, Granella F, Nappi R, Manzoni GC, Facchinetti F, Genazzani AR (1993) Characteristics of headache at menopause: a clinico-epidemiologic study. Maturitas. 17(1):31–37PubMedCrossRef Neri I, Granella F, Nappi R, Manzoni GC, Facchinetti F, Genazzani AR (1993) Characteristics of headache at menopause: a clinico-epidemiologic study. Maturitas. 17(1):31–37PubMedCrossRef
12.
go back to reference Fettes I (1999) Migraine in the menopause. Neurology. 53(4 Suppl 1):S29–S33PubMed Fettes I (1999) Migraine in the menopause. Neurology. 53(4 Suppl 1):S29–S33PubMed
13.
go back to reference Pfaffenrath V, Fendrich K, Vennemann M, Meisinger C, Ladwig KH, Evers S et al (2009) Regional variations in the prevalence of migraine and tension-type headache applying the new IHS criteria: the German DMKG headache study. Cephalalgia. 29(1):48–57PubMedCrossRef Pfaffenrath V, Fendrich K, Vennemann M, Meisinger C, Ladwig KH, Evers S et al (2009) Regional variations in the prevalence of migraine and tension-type headache applying the new IHS criteria: the German DMKG headache study. Cephalalgia. 29(1):48–57PubMedCrossRef
14.
go back to reference Schwaiger J, Kiechl S, Seppi K, Sawires M, Stockner H, Erlacher T et al (2009) Prevalence of primary headaches and cranial neuralgias in men and women aged 55-94 years (Bruneck study). Cephalalgia. 29(2):179–187PubMedCrossRef Schwaiger J, Kiechl S, Seppi K, Sawires M, Stockner H, Erlacher T et al (2009) Prevalence of primary headaches and cranial neuralgias in men and women aged 55-94 years (Bruneck study). Cephalalgia. 29(2):179–187PubMedCrossRef
15.
go back to reference Maytal J, Young M, Shechter A, Lipton RB (1997) Pediatric migraine and the international headache society (IHS) criteria. Neurology. 48(3):602–607PubMedCrossRef Maytal J, Young M, Shechter A, Lipton RB (1997) Pediatric migraine and the international headache society (IHS) criteria. Neurology. 48(3):602–607PubMedCrossRef
16.
go back to reference Eidlitz-Markus T, Gorali O, Haimi-Cohen Y, Zeharia A (2008) Symptoms of migraine in the paediatric population by age group. Cephalalgia. 28(12):1259–1263PubMedCrossRef Eidlitz-Markus T, Gorali O, Haimi-Cohen Y, Zeharia A (2008) Symptoms of migraine in the paediatric population by age group. Cephalalgia. 28(12):1259–1263PubMedCrossRef
17.
19.
go back to reference Mulder EJ, Van Baal C, Gaist D, Kallela M, Kaprio J, Svensson DA et al (2003) Genetic and environmental influences on migraine: a twin study across six countries. Twin Res 6(5):422–431PubMedCrossRef Mulder EJ, Van Baal C, Gaist D, Kallela M, Kaprio J, Svensson DA et al (2003) Genetic and environmental influences on migraine: a twin study across six countries. Twin Res 6(5):422–431PubMedCrossRef
21.
go back to reference Zhu Z, Anttila V, Smoller JW, Lee PH (2018) Statistical power and utility of meta-analysis methods for cross-phenotype genome-wide association studies. PLoS One 13(3):e0193256PubMedPubMedCentralCrossRef Zhu Z, Anttila V, Smoller JW, Lee PH (2018) Statistical power and utility of meta-analysis methods for cross-phenotype genome-wide association studies. PLoS One 13(3):e0193256PubMedPubMedCentralCrossRef
22.
go back to reference Visscher PM, Wray NR, Zhang Q, Sklar P, McCarthy MI, Brown MA et al (2017) 10 years of GWAS discovery: biology, function, and translation. Am J Hum Genet 101(1):5–22PubMedPubMedCentralCrossRef Visscher PM, Wray NR, Zhang Q, Sklar P, McCarthy MI, Brown MA et al (2017) 10 years of GWAS discovery: biology, function, and translation. Am J Hum Genet 101(1):5–22PubMedPubMedCentralCrossRef
23.
go back to reference Gormley P, Anttila V, Winsvold BS, Palta P, Esko T, Pers TH et al (2016) Meta-analysis of 375,000 individuals identifies 38 susceptibility loci for migraine. Nat Genet 48(8):856–866PubMedPubMedCentralCrossRef Gormley P, Anttila V, Winsvold BS, Palta P, Esko T, Pers TH et al (2016) Meta-analysis of 375,000 individuals identifies 38 susceptibility loci for migraine. Nat Genet 48(8):856–866PubMedPubMedCentralCrossRef
24.
go back to reference Ferrari MD, Klever RR, Terwindt GM, Ayata C, van den Maagdenberg AM (2015) Migraine pathophysiology: lessons from mouse models and human genetics. Lancet Neurol 14(1):65–80PubMedCrossRef Ferrari MD, Klever RR, Terwindt GM, Ayata C, van den Maagdenberg AM (2015) Migraine pathophysiology: lessons from mouse models and human genetics. Lancet Neurol 14(1):65–80PubMedCrossRef
25.
go back to reference Schneggenburger R, Neher E (2005) Presynaptic calcium and control of vesicle fusion. Curr Opin Neurobiol 15(3):266–274PubMedCrossRef Schneggenburger R, Neher E (2005) Presynaptic calcium and control of vesicle fusion. Curr Opin Neurobiol 15(3):266–274PubMedCrossRef
26.
go back to reference De Fusco M, Marconi R, Silvestri L, Atorino L, Rampoldi L, Morgante L et al (2003) Haploinsufficiency of ATP1A2 encoding the Na+/K+ pump alpha2 subunit associated with familial hemiplegic migraine type 2. Nat Genet 33(2):192–196PubMedCrossRef De Fusco M, Marconi R, Silvestri L, Atorino L, Rampoldi L, Morgante L et al (2003) Haploinsufficiency of ATP1A2 encoding the Na+/K+ pump alpha2 subunit associated with familial hemiplegic migraine type 2. Nat Genet 33(2):192–196PubMedCrossRef
27.
go back to reference Dichgans M, Freilinger T, Eckstein G, Babini E, Lorenz-Depiereux B, Biskup S et al (2005) Mutation in the neuronal voltage-gated sodium channel SCN1A in familial hemiplegic migraine. Lancet. 366(9483):371–377PubMedCrossRef Dichgans M, Freilinger T, Eckstein G, Babini E, Lorenz-Depiereux B, Biskup S et al (2005) Mutation in the neuronal voltage-gated sodium channel SCN1A in familial hemiplegic migraine. Lancet. 366(9483):371–377PubMedCrossRef
28.
go back to reference van den Maagdenberg AM, Pietrobon D, Pizzorusso T, Kaja S, Broos LA, Cesetti T et al (2004) A Cacna1a knockin migraine mouse model with increased susceptibility to cortical spreading depression. Neuron. 41(5):701–710PubMedCrossRef van den Maagdenberg AM, Pietrobon D, Pizzorusso T, Kaja S, Broos LA, Cesetti T et al (2004) A Cacna1a knockin migraine mouse model with increased susceptibility to cortical spreading depression. Neuron. 41(5):701–710PubMedCrossRef
29.
go back to reference Wessman M, Terwindt GM, Kaunisto MA, Palotie A, Ophoff RA (2007) Migraine: a complex genetic disorder. Lancet Neurol 6(6):521–532PubMedCrossRef Wessman M, Terwindt GM, Kaunisto MA, Palotie A, Ophoff RA (2007) Migraine: a complex genetic disorder. Lancet Neurol 6(6):521–532PubMedCrossRef
30.
go back to reference Park J, Moon H, Akerman S, Holland PR, Lasalandra MP, Andreou AP et al (2014) Differential trigeminovascular nociceptive responses in the thalamus in the familial hemiplegic migraine 1 knock-in mouse: a Fos protein study. Neurobiol Dis 64:1–7PubMedCrossRef Park J, Moon H, Akerman S, Holland PR, Lasalandra MP, Andreou AP et al (2014) Differential trigeminovascular nociceptive responses in the thalamus in the familial hemiplegic migraine 1 knock-in mouse: a Fos protein study. Neurobiol Dis 64:1–7PubMedCrossRef
31.
go back to reference Mathew R, Andreou AP, Chami L, Bergerot A, van den Maagdenberg A, Ferrari MD et al (2011) Immunohistochemical characterization of calcitonin gene-related peptide in the trigeminal system of the familial hemiplegic migraine 1 knock-in mouse. Cephalalgia. 31(13):1368–1380PubMedCrossRef Mathew R, Andreou AP, Chami L, Bergerot A, van den Maagdenberg A, Ferrari MD et al (2011) Immunohistochemical characterization of calcitonin gene-related peptide in the trigeminal system of the familial hemiplegic migraine 1 knock-in mouse. Cephalalgia. 31(13):1368–1380PubMedCrossRef
32.
go back to reference Gerring ZF, McRae AF, Montgomery GW, Nyholt DR (2018) Genome-wide DNA methylation profiling in whole blood reveals epigenetic signatures associated with migraine. BMC Genomics 19(1):69PubMedPubMedCentralCrossRef Gerring ZF, McRae AF, Montgomery GW, Nyholt DR (2018) Genome-wide DNA methylation profiling in whole blood reveals epigenetic signatures associated with migraine. BMC Genomics 19(1):69PubMedPubMedCentralCrossRef
33.
go back to reference Terlizzi R, Bacalini MG, Pirazzini C, Giannini G, Pierangeli G, Garagnani P et al (2018) Epigenetic DNA methylation changes in episodic and chronic migraine. Neurol Sci 39(Suppl 1):67–68PubMedCrossRef Terlizzi R, Bacalini MG, Pirazzini C, Giannini G, Pierangeli G, Garagnani P et al (2018) Epigenetic DNA methylation changes in episodic and chronic migraine. Neurol Sci 39(Suppl 1):67–68PubMedCrossRef
34.
go back to reference Kurth T, Mohamed S, Maillard P, Zhu YC, Chabriat H, Mazoyer B et al (2011) Headache, migraine, and structural brain lesions and function: population based epidemiology of vascular ageing-MRI study. BMJ. 342:c7357PubMedPubMedCentralCrossRef Kurth T, Mohamed S, Maillard P, Zhu YC, Chabriat H, Mazoyer B et al (2011) Headache, migraine, and structural brain lesions and function: population based epidemiology of vascular ageing-MRI study. BMJ. 342:c7357PubMedPubMedCentralCrossRef
35.
go back to reference Kruit MC, van Buchem MA, Hofman PA, Bakkers JT, Terwindt GM, Ferrari MD et al (2004) Migraine as a risk factor for subclinical brain lesions. JAMA. 291(4):427–434PubMedCrossRef Kruit MC, van Buchem MA, Hofman PA, Bakkers JT, Terwindt GM, Ferrari MD et al (2004) Migraine as a risk factor for subclinical brain lesions. JAMA. 291(4):427–434PubMedCrossRef
36.
go back to reference Kruit MC, Launer LJ, Ferrari MD, van Buchem MA (2005) Infarcts in the posterior circulation territory in migraine. The population-based MRI CAMERA study. Brain. 128(Pt 9):2068–2077PubMedCrossRef Kruit MC, Launer LJ, Ferrari MD, van Buchem MA (2005) Infarcts in the posterior circulation territory in migraine. The population-based MRI CAMERA study. Brain. 128(Pt 9):2068–2077PubMedCrossRef
37.
go back to reference Arkink EB, Palm-Meinders IH, Koppen H, Milles J, van Lew B, Launer LJ et al (2019) Microstructural white matter changes preceding white matter hyperintensities in migraine. Neurology 93(7):e688–e694PubMedCrossRefPubMedCentral Arkink EB, Palm-Meinders IH, Koppen H, Milles J, van Lew B, Launer LJ et al (2019) Microstructural white matter changes preceding white matter hyperintensities in migraine. Neurology 93(7):e688–e694PubMedCrossRefPubMedCentral
38.
39.
go back to reference Hamedani AG, Rose KM, Peterlin BL, Mosley TH, Coker LH, Jack CR et al (2013) Migraine and white matter hyperintensities: the ARIC MRI study. Neurology. 81(15):1308–1313PubMedPubMedCentralCrossRef Hamedani AG, Rose KM, Peterlin BL, Mosley TH, Coker LH, Jack CR et al (2013) Migraine and white matter hyperintensities: the ARIC MRI study. Neurology. 81(15):1308–1313PubMedPubMedCentralCrossRef
40.
go back to reference Schick S, Gahleitner A, Wober-Bingol C, Wober C, Ba-Ssalamah A, Schoder M et al (1999) Virchow-Robin spaces in childhood migraine. Neuroradiology. 41(4):283–287PubMedCrossRef Schick S, Gahleitner A, Wober-Bingol C, Wober C, Ba-Ssalamah A, Schoder M et al (1999) Virchow-Robin spaces in childhood migraine. Neuroradiology. 41(4):283–287PubMedCrossRef
42.
go back to reference Schwedt TJ, Guo Y, Rothner AD (2006) “Benign” imaging abnormalities in children and adolescents with headache. Headache. 46(3):387–398PubMedCrossRef Schwedt TJ, Guo Y, Rothner AD (2006) “Benign” imaging abnormalities in children and adolescents with headache. Headache. 46(3):387–398PubMedCrossRef
43.
go back to reference Bashir A, Lipton RB, Ashina S, Ashina M (2013) Migraine and structural changes in the brain: a systematic review and meta-analysis. Neurology. 81(14):1260–1268PubMedPubMedCentralCrossRef Bashir A, Lipton RB, Ashina S, Ashina M (2013) Migraine and structural changes in the brain: a systematic review and meta-analysis. Neurology. 81(14):1260–1268PubMedPubMedCentralCrossRef
45.
go back to reference Demir BT, Bayram NA, Ayturk Z, Erdamar H, Seven P, Calp A et al (2016) Structural changes in the cerebrum, cerebellum and Corpus callosum in migraine patients. Clin Invest Med 39(6):27495PubMedCrossRef Demir BT, Bayram NA, Ayturk Z, Erdamar H, Seven P, Calp A et al (2016) Structural changes in the cerebrum, cerebellum and Corpus callosum in migraine patients. Clin Invest Med 39(6):27495PubMedCrossRef
46.
go back to reference Hougaard A, Amin FM, Ashina M (2014) Migraine and structural abnormalities in the brain. Curr Opin Neurol 27(3):309–314PubMedCrossRef Hougaard A, Amin FM, Ashina M (2014) Migraine and structural abnormalities in the brain. Curr Opin Neurol 27(3):309–314PubMedCrossRef
47.
go back to reference Chong CD, Gaw N, Fu Y, Li J, Wu T, Schwedt TJ (2017) Migraine classification using magnetic resonance imaging resting-state functional connectivity data. Cephalalgia. 37(9):828–844PubMedCrossRef Chong CD, Gaw N, Fu Y, Li J, Wu T, Schwedt TJ (2017) Migraine classification using magnetic resonance imaging resting-state functional connectivity data. Cephalalgia. 37(9):828–844PubMedCrossRef
48.
go back to reference Soheili-Nezhad S, Sedghi A, Schweser F, Eslami Shahr Babaki A, Jahanshad N, Thompson PM et al (2019) Structural and functional reorganization of the brain in migraine without aura. Front Neurol 10:442PubMedPubMedCentralCrossRef Soheili-Nezhad S, Sedghi A, Schweser F, Eslami Shahr Babaki A, Jahanshad N, Thompson PM et al (2019) Structural and functional reorganization of the brain in migraine without aura. Front Neurol 10:442PubMedPubMedCentralCrossRef
49.
go back to reference DaSilva AF, Granziera C, Snyder J, Hadjikhani N (2007) Thickening in the somatosensory cortex of patients with migraine. Neurology. 69(21):1990–1995PubMedCrossRef DaSilva AF, Granziera C, Snyder J, Hadjikhani N (2007) Thickening in the somatosensory cortex of patients with migraine. Neurology. 69(21):1990–1995PubMedCrossRef
50.
go back to reference Kim JH, Suh SI, Seol HY, Oh K, Seo WK, Yu SW et al (2008) Regional grey matter changes in patients with migraine: a voxel-based morphometry study. Cephalalgia. 28(6):598–604PubMedCrossRef Kim JH, Suh SI, Seol HY, Oh K, Seo WK, Yu SW et al (2008) Regional grey matter changes in patients with migraine: a voxel-based morphometry study. Cephalalgia. 28(6):598–604PubMedCrossRef
51.
go back to reference Messina R, Rocca MA, Colombo B, Valsasina P, Horsfield MA, Copetti M et al (2013) Cortical abnormalities in patients with migraine: a surface-based analysis. Radiology. 268(1):170–180PubMedCrossRef Messina R, Rocca MA, Colombo B, Valsasina P, Horsfield MA, Copetti M et al (2013) Cortical abnormalities in patients with migraine: a surface-based analysis. Radiology. 268(1):170–180PubMedCrossRef
52.
go back to reference Schmidt-Wilcke T, Ganssbauer S, Neuner T, Bogdahn U, May A (2008) Subtle grey matter changes between migraine patients and healthy controls. Cephalalgia. 28(1):1–4PubMedCrossRef Schmidt-Wilcke T, Ganssbauer S, Neuner T, Bogdahn U, May A (2008) Subtle grey matter changes between migraine patients and healthy controls. Cephalalgia. 28(1):1–4PubMedCrossRef
53.
go back to reference Mainero C, Boshyan J, Hadjikhani N (2011) Altered functional magnetic resonance imaging resting-state connectivity in periaqueductal gray networks in migraine. Ann Neurol 70(5):838–845PubMedPubMedCentralCrossRef Mainero C, Boshyan J, Hadjikhani N (2011) Altered functional magnetic resonance imaging resting-state connectivity in periaqueductal gray networks in migraine. Ann Neurol 70(5):838–845PubMedPubMedCentralCrossRef
54.
go back to reference Magon S, May A, Stankewitz A, Goadsby PJ, Schankin C, Ashina M et al (2019) Cortical abnormalities in episodic migraine: a multi-center 3T MRI study. Cephalalgia. 39(5):665–673PubMedCrossRef Magon S, May A, Stankewitz A, Goadsby PJ, Schankin C, Ashina M et al (2019) Cortical abnormalities in episodic migraine: a multi-center 3T MRI study. Cephalalgia. 39(5):665–673PubMedCrossRef
55.
go back to reference Magon S, May A, Stankewitz A, Goadsby PJ, Tso AR, Ashina M et al (2015) Morphological abnormalities of thalamic subnuclei in migraine: a multicenter MRI study at 3 tesla. J Neurosci 35(40):13800–13806PubMedPubMedCentralCrossRef Magon S, May A, Stankewitz A, Goadsby PJ, Tso AR, Ashina M et al (2015) Morphological abnormalities of thalamic subnuclei in migraine: a multicenter MRI study at 3 tesla. J Neurosci 35(40):13800–13806PubMedPubMedCentralCrossRef
56.
go back to reference Granziera C, Daducci A, Romascano D, Roche A, Helms G, Krueger G et al (2014) Structural abnormalities in the thalamus of migraineurs with aura: a multiparametric study at 3 T. Hum Brain Mapp 35(4):1461–1468PubMedCrossRef Granziera C, Daducci A, Romascano D, Roche A, Helms G, Krueger G et al (2014) Structural abnormalities in the thalamus of migraineurs with aura: a multiparametric study at 3 T. Hum Brain Mapp 35(4):1461–1468PubMedCrossRef
57.
go back to reference Chong CD, Plasencia JD, Frakes DH, Schwedt TJ (2017) Structural alterations of the brainstem in migraine. Neuroimage Clin 13:223–227PubMedCrossRef Chong CD, Plasencia JD, Frakes DH, Schwedt TJ (2017) Structural alterations of the brainstem in migraine. Neuroimage Clin 13:223–227PubMedCrossRef
58.
go back to reference Coppola G, Di Renzo A, Tinelli E, Iacovelli E, Lepre C, Di Lorenzo C et al (2015) Evidence for brain morphometric changes during the migraine cycle: a magnetic resonance-based morphometry study. Cephalalgia. 35(9):783–791PubMedCrossRef Coppola G, Di Renzo A, Tinelli E, Iacovelli E, Lepre C, Di Lorenzo C et al (2015) Evidence for brain morphometric changes during the migraine cycle: a magnetic resonance-based morphometry study. Cephalalgia. 35(9):783–791PubMedCrossRef
59.
go back to reference Bilgic B, Kocaman G, Arslan AB, Noyan H, Sherifov R, Alkan A et al (2016) Volumetric differences suggest involvement of cerebellum and brainstem in chronic migraine. Cephalalgia. 36(4):301–308PubMedCrossRef Bilgic B, Kocaman G, Arslan AB, Noyan H, Sherifov R, Alkan A et al (2016) Volumetric differences suggest involvement of cerebellum and brainstem in chronic migraine. Cephalalgia. 36(4):301–308PubMedCrossRef
60.
go back to reference Neeb L, Bastian K, Villringer K, Israel H, Reuter U, Fiebach JB (2017) Structural gray matter alterations in chronic migraine: implications for a progressive disease? Headache. 57(3):400–416PubMedCrossRef Neeb L, Bastian K, Villringer K, Israel H, Reuter U, Fiebach JB (2017) Structural gray matter alterations in chronic migraine: implications for a progressive disease? Headache. 57(3):400–416PubMedCrossRef
61.
go back to reference Coppola G, Petolicchio B, Di Renzo A, Tinelli E, Di Lorenzo C, Parisi V et al (2017) Cerebral gray matter volume in patients with chronic migraine: correlations with clinical features. J Headache Pain 18(1):115PubMedPubMedCentralCrossRef Coppola G, Petolicchio B, Di Renzo A, Tinelli E, Di Lorenzo C, Parisi V et al (2017) Cerebral gray matter volume in patients with chronic migraine: correlations with clinical features. J Headache Pain 18(1):115PubMedPubMedCentralCrossRef
63.
go back to reference Rocca MA, Messina R, Colombo B, Falini A, Comi G, Filippi M (2014) Structural brain MRI abnormalities in pediatric patients with migraine. J Neurol 261(2):350–357PubMedCrossRef Rocca MA, Messina R, Colombo B, Falini A, Comi G, Filippi M (2014) Structural brain MRI abnormalities in pediatric patients with migraine. J Neurol 261(2):350–357PubMedCrossRef
64.
go back to reference Santoro JD, Forkert ND, Yang QZ, Pavitt S, MacEachern SJ, Moseley ME et al (2018) Brain diffusion abnormalities in children with tension-type and migraine-type headaches. AJNR Am J Neuroradiol 39(5):935–941PubMedCrossRefPubMedCentral Santoro JD, Forkert ND, Yang QZ, Pavitt S, MacEachern SJ, Moseley ME et al (2018) Brain diffusion abnormalities in children with tension-type and migraine-type headaches. AJNR Am J Neuroradiol 39(5):935–941PubMedCrossRefPubMedCentral
65.
go back to reference May A (2011) Experience-dependent structural plasticity in the adult human brain. Trends Cogn Sci 15(10):475–482PubMedCrossRef May A (2011) Experience-dependent structural plasticity in the adult human brain. Trends Cogn Sci 15(10):475–482PubMedCrossRef
66.
go back to reference Laurell K, Artto V, Bendtsen L, Hagen K, Haggstrom J, Linde M et al (2016) Premonitory symptoms in migraine: a cross-sectional study in 2714 persons. Cephalalgia. 36(10):951–959PubMedCrossRef Laurell K, Artto V, Bendtsen L, Hagen K, Haggstrom J, Linde M et al (2016) Premonitory symptoms in migraine: a cross-sectional study in 2714 persons. Cephalalgia. 36(10):951–959PubMedCrossRef
67.
go back to reference Zhang Y, Kong Q, Chen J, Li L, Wang D, Zhou J (2016) International classification of headache disorders 3rd edition beta-based field testing of vestibular migraine in China: demographic, clinical characteristics, audiometric findings and diagnosis statues. Cephalalgia. 36(3):240–248PubMedCrossRef Zhang Y, Kong Q, Chen J, Li L, Wang D, Zhou J (2016) International classification of headache disorders 3rd edition beta-based field testing of vestibular migraine in China: demographic, clinical characteristics, audiometric findings and diagnosis statues. Cephalalgia. 36(3):240–248PubMedCrossRef
69.
70.
go back to reference Kelman L (2007) The triggers or precipitants of the acute migraine attack. Cephalalgia. 27(5):394–402PubMedCrossRef Kelman L (2007) The triggers or precipitants of the acute migraine attack. Cephalalgia. 27(5):394–402PubMedCrossRef
71.
go back to reference Goadsby P, Charbit A, Andreou A, Akerman S, Holland P (2009) Neurobiology of migraine. Neuroscience. 161(2):327–341PubMedCrossRef Goadsby P, Charbit A, Andreou A, Akerman S, Holland P (2009) Neurobiology of migraine. Neuroscience. 161(2):327–341PubMedCrossRef
72.
go back to reference Lambru G, Andreou AP, Guglielmetti M, Martelletti P (2018) Emerging drugs for migraine treatment: an update. Expert Opin Emerg Drugs 23(4):301–318PubMedCrossRef Lambru G, Andreou AP, Guglielmetti M, Martelletti P (2018) Emerging drugs for migraine treatment: an update. Expert Opin Emerg Drugs 23(4):301–318PubMedCrossRef
73.
go back to reference Toni R, Malaguti A, Benfenati F, Martini L (2004) The human hypothalamus: a morpho-functional perspective. J Endocrinol Investig 27(6 Suppl):73–94 Toni R, Malaguti A, Benfenati F, Martini L (2004) The human hypothalamus: a morpho-functional perspective. J Endocrinol Investig 27(6 Suppl):73–94
74.
go back to reference Alstadhaug KB, Bekkelund S, Salvesen R (2007) Circannual periodicity of migraine? Eur J Neurol 14(9):983–988PubMedCrossRef Alstadhaug KB, Bekkelund S, Salvesen R (2007) Circannual periodicity of migraine? Eur J Neurol 14(9):983–988PubMedCrossRef
75.
go back to reference Alstadhaug KB, Salvesen R, Bekkelund SI (2005) Seasonal variation in migraine. Cephalalgia. 25(10):811–816PubMedCrossRef Alstadhaug KB, Salvesen R, Bekkelund SI (2005) Seasonal variation in migraine. Cephalalgia. 25(10):811–816PubMedCrossRef
76.
go back to reference Stewart WF, Lipton RB, Chee E, Sawyer J, Silberstein SD (2000) Menstrual cycle and headache in a population sample of migraineurs. Neurology. 55(10):1517–1523PubMedCrossRef Stewart WF, Lipton RB, Chee E, Sawyer J, Silberstein SD (2000) Menstrual cycle and headache in a population sample of migraineurs. Neurology. 55(10):1517–1523PubMedCrossRef
77.
go back to reference Denuelle M, Fabre N, Payoux P, Chollet F, Geraud G (2007) Hypothalamic activation in spontaneous migraine attacks. Headache. 47(10):1418–1426PubMed Denuelle M, Fabre N, Payoux P, Chollet F, Geraud G (2007) Hypothalamic activation in spontaneous migraine attacks. Headache. 47(10):1418–1426PubMed
78.
go back to reference Schulte LH, May A (2016) The migraine generator revisited: continuous scanning of the migraine cycle over 30 days and three spontaneous attacks. Brain. 139(Pt 7):1987–1993PubMedCrossRef Schulte LH, May A (2016) The migraine generator revisited: continuous scanning of the migraine cycle over 30 days and three spontaneous attacks. Brain. 139(Pt 7):1987–1993PubMedCrossRef
79.
go back to reference Maniyar FH, Sprenger T, Monteith T, Schankin C, Goadsby PJ (2014) Brain activations in the premonitory phase of nitroglycerin-triggered migraine attacks. Brain. 137(Pt 1):232–241PubMedCrossRef Maniyar FH, Sprenger T, Monteith T, Schankin C, Goadsby PJ (2014) Brain activations in the premonitory phase of nitroglycerin-triggered migraine attacks. Brain. 137(Pt 1):232–241PubMedCrossRef
80.
go back to reference Burstein R, Jakubowski M (2005) Unitary hypothesis for multiple triggers of the pain and strain of migraine. J Comp Neurol 493(1):9–14PubMedCrossRef Burstein R, Jakubowski M (2005) Unitary hypothesis for multiple triggers of the pain and strain of migraine. J Comp Neurol 493(1):9–14PubMedCrossRef
81.
go back to reference Faithfull NS (1991) Post-operative headache--a multifactorial analysis. Eur J Anaesthesiol 8(1):59–63PubMed Faithfull NS (1991) Post-operative headache--a multifactorial analysis. Eur J Anaesthesiol 8(1):59–63PubMed
83.
go back to reference Brennan KC, Bates EA, Shapiro RE, Zyuzin J, Hallows WC, Huang Y et al (2013) Casein kinase idelta mutations in familial migraine and advanced sleep phase. Sci Transl Med 5(183):183ra56 1–11PubMedPubMedCentralCrossRef Brennan KC, Bates EA, Shapiro RE, Zyuzin J, Hallows WC, Huang Y et al (2013) Casein kinase idelta mutations in familial migraine and advanced sleep phase. Sci Transl Med 5(183):183ra56 1–11PubMedPubMedCentralCrossRef
84.
go back to reference Dahmen N, Kasten M, Wieczorek S, Gencik M, Epplen JT, Ullrich B (2003) Increased frequency of migraine in narcoleptic patients: a confirmatory study. Cephalalgia. 23(1):14–19PubMedCrossRef Dahmen N, Kasten M, Wieczorek S, Gencik M, Epplen JT, Ullrich B (2003) Increased frequency of migraine in narcoleptic patients: a confirmatory study. Cephalalgia. 23(1):14–19PubMedCrossRef
85.
86.
go back to reference Holland PR (2014) Headache and sleep: shared pathophysiological mechanisms. Cephalalgia. 34(10):725–744PubMedCrossRef Holland PR (2014) Headache and sleep: shared pathophysiological mechanisms. Cephalalgia. 34(10):725–744PubMedCrossRef
87.
go back to reference Bjorklund A, Skagerberg G (1979) Evidence for a major spinal cord projection from the diencephalic A11 dopamine cell group in the rat using transmitter-specific fluorescent retrograde tracing. Brain Res 177(1):170–175PubMedCrossRef Bjorklund A, Skagerberg G (1979) Evidence for a major spinal cord projection from the diencephalic A11 dopamine cell group in the rat using transmitter-specific fluorescent retrograde tracing. Brain Res 177(1):170–175PubMedCrossRef
88.
go back to reference Charbit AR, Akerman S, Goadsby PJ (2011) Trigeminocervical complex responses after lesioning dopaminergic A11 nucleus are modified by dopamine and serotonin mechanisms. Pain. 152(10):2365–2376PubMedCrossRef Charbit AR, Akerman S, Goadsby PJ (2011) Trigeminocervical complex responses after lesioning dopaminergic A11 nucleus are modified by dopamine and serotonin mechanisms. Pain. 152(10):2365–2376PubMedCrossRef
89.
go back to reference Charbit AR, Akerman S, Holland PR, Goadsby PJ (2009) Neurons of the dopaminergic/calcitonin gene-related peptide A11 cell group modulate neuronal firing in the trigeminocervical complex: an electrophysiological and immunohistochemical study. J Neurosci 29(40):12532–12541PubMedPubMedCentralCrossRef Charbit AR, Akerman S, Holland PR, Goadsby PJ (2009) Neurons of the dopaminergic/calcitonin gene-related peptide A11 cell group modulate neuronal firing in the trigeminocervical complex: an electrophysiological and immunohistochemical study. J Neurosci 29(40):12532–12541PubMedPubMedCentralCrossRef
90.
go back to reference Andreou AP, Chamberlain J (2014) Nitric oxide alters the neuronal firing of the dopaminergic hypothalamic nucleus A11. Headache. 54:6–7 Andreou AP, Chamberlain J (2014) Nitric oxide alters the neuronal firing of the dopaminergic hypothalamic nucleus A11. Headache. 54:6–7
91.
go back to reference Andreou AP, Chamberlain JH, Torres-Perez JV, Noormohamed F, Goadsby PJ, Bantel C et al (2014) The A11 hypothalamic nucleus is susceptible to nitric oxide signalling. J Headache Pain 15:F2PubMedCentralCrossRef Andreou AP, Chamberlain JH, Torres-Perez JV, Noormohamed F, Goadsby PJ, Bantel C et al (2014) The A11 hypothalamic nucleus is susceptible to nitric oxide signalling. J Headache Pain 15:F2PubMedCentralCrossRef
92.
go back to reference Aurora SK, Cao Y, Bowyer SM, Welch KM (1999) The occipital cortex is hyperexcitable in migraine: experimental evidence. Headache. 39(7):469–476PubMedCrossRef Aurora SK, Cao Y, Bowyer SM, Welch KM (1999) The occipital cortex is hyperexcitable in migraine: experimental evidence. Headache. 39(7):469–476PubMedCrossRef
93.
go back to reference Mulleners WM, Chronicle EP, Palmer JE, Koehler PJ, Vredeveld JW (2001) Visual cortex excitability in migraine with and without aura. Headache. 41(6):565–572PubMedCrossRef Mulleners WM, Chronicle EP, Palmer JE, Koehler PJ, Vredeveld JW (2001) Visual cortex excitability in migraine with and without aura. Headache. 41(6):565–572PubMedCrossRef
94.
go back to reference Denuelle M, Boulloche N, Payoux P, Fabre N, Trotter Y, Geraud G (2011) A PET study of photophobia during spontaneous migraine attacks. Neurology. 76(3):213–218PubMedCrossRef Denuelle M, Boulloche N, Payoux P, Fabre N, Trotter Y, Geraud G (2011) A PET study of photophobia during spontaneous migraine attacks. Neurology. 76(3):213–218PubMedCrossRef
95.
go back to reference Brennan KC (2011) Turn down the lights!: an irritable occipital cortex in migraine without aura. Neurology. 76(3):206–207PubMedCrossRef Brennan KC (2011) Turn down the lights!: an irritable occipital cortex in migraine without aura. Neurology. 76(3):206–207PubMedCrossRef
96.
go back to reference Coppola G, Pierelli F, Schoenen J (2007) Is the cerebral cortex hyperexcitable or hyperresponsive in migraine? Cephalalgia. 27(12):1427–1439PubMedCrossRef Coppola G, Pierelli F, Schoenen J (2007) Is the cerebral cortex hyperexcitable or hyperresponsive in migraine? Cephalalgia. 27(12):1427–1439PubMedCrossRef
97.
go back to reference Andreou AP, Holland PR, Akerman S, Summ O, Fredrick J, Goadsby PJ (2016) Transcranial magnetic stimulation and potential cortical and trigeminothalamic mechanisms in migraine. Brain. 139(Pt 7):2002–2014PubMedPubMedCentralCrossRef Andreou AP, Holland PR, Akerman S, Summ O, Fredrick J, Goadsby PJ (2016) Transcranial magnetic stimulation and potential cortical and trigeminothalamic mechanisms in migraine. Brain. 139(Pt 7):2002–2014PubMedPubMedCentralCrossRef
98.
go back to reference Lambru G, Hill B, Lloyd J, Al-Kaisy A, Andreou AP (2018) Single-pulse transcranial magnetic stimulation (Stms) for the treatment of migraine: a prospective real world experience. Cephalalgia 38:150 Lambru G, Hill B, Lloyd J, Al-Kaisy A, Andreou AP (2018) Single-pulse transcranial magnetic stimulation (Stms) for the treatment of migraine: a prospective real world experience. Cephalalgia 38:150
99.
go back to reference Lipton RB, Dodick DW, Silberstein SD, Saper JR, Aurora SK, Pearlman SH et al (2010) Single-pulse transcranial magnetic stimulation for acute treatment of migraine with aura: a randomised, double-blind, parallel-group, sham-controlled trial. Lancet Neurol 9(4):373–380PubMedCrossRef Lipton RB, Dodick DW, Silberstein SD, Saper JR, Aurora SK, Pearlman SH et al (2010) Single-pulse transcranial magnetic stimulation for acute treatment of migraine with aura: a randomised, double-blind, parallel-group, sham-controlled trial. Lancet Neurol 9(4):373–380PubMedCrossRef
100.
go back to reference Starling AJ, Tepper SJ, Marmura MJ, Shamim EA, Robbins MS, Hindiyeh N et al (2018) A multicenter, prospective, single arm, open label, observational study of sTMS for migraine prevention (ESPOUSE study). Cephalalgia. 38(6):1038–1048PubMedPubMedCentralCrossRef Starling AJ, Tepper SJ, Marmura MJ, Shamim EA, Robbins MS, Hindiyeh N et al (2018) A multicenter, prospective, single arm, open label, observational study of sTMS for migraine prevention (ESPOUSE study). Cephalalgia. 38(6):1038–1048PubMedPubMedCentralCrossRef
101.
go back to reference Rasmussen BK, Olesen J (1992) Migraine with aura and migraine without aura: an epidemiological study. Cephalalgia. 12(4):221–228PubMedCrossRef Rasmussen BK, Olesen J (1992) Migraine with aura and migraine without aura: an epidemiological study. Cephalalgia. 12(4):221–228PubMedCrossRef
102.
go back to reference Olesen J (1998) Regional cerebral blood flow and oxygen metabolism during migraine with and without aura. Cephalalgia. 18(1):2–4PubMedCrossRef Olesen J (1998) Regional cerebral blood flow and oxygen metabolism during migraine with and without aura. Cephalalgia. 18(1):2–4PubMedCrossRef
103.
go back to reference Arngrim N, Hougaard A, Ahmadi K, Vestergaard MB, Schytz HW, Amin FM et al (2017) Heterogenous migraine aura symptoms correlate with visual cortex functional magnetic resonance imaging responses. Ann Neurol 82(6):925–939PubMedCrossRef Arngrim N, Hougaard A, Ahmadi K, Vestergaard MB, Schytz HW, Amin FM et al (2017) Heterogenous migraine aura symptoms correlate with visual cortex functional magnetic resonance imaging responses. Ann Neurol 82(6):925–939PubMedCrossRef
104.
go back to reference Hadjikhani N, Sanchez Del Rio M, Wu O, Schwartz D, Bakker D, Fischl B et al (2001) Mechanisms of migraine aura revealed by functional MRI in human visual cortex. Proc Natl Acad Sci U S A 98(8):4687–4692PubMedPubMedCentralCrossRef Hadjikhani N, Sanchez Del Rio M, Wu O, Schwartz D, Bakker D, Fischl B et al (2001) Mechanisms of migraine aura revealed by functional MRI in human visual cortex. Proc Natl Acad Sci U S A 98(8):4687–4692PubMedPubMedCentralCrossRef
105.
go back to reference Leão AA (1944) Spreading depression of activity in cerebral cortex. J Neurophysiol 7:359–390CrossRef Leão AA (1944) Spreading depression of activity in cerebral cortex. J Neurophysiol 7:359–390CrossRef
106.
go back to reference Andreou AP, Summ O, Charbit AR, Romero-Reyes M, Goadsby PJ (2010) Animal models of headache: from bedside to bench and back to bedside. Expert Rev Neurother 10(3):389–411PubMedCrossRef Andreou AP, Summ O, Charbit AR, Romero-Reyes M, Goadsby PJ (2010) Animal models of headache: from bedside to bench and back to bedside. Expert Rev Neurother 10(3):389–411PubMedCrossRef
107.
go back to reference Goadsby PJ (2001) Migraine, aura, and cortical spreading depression: why are we still talking about it? Ann Neurol 49(1):4–6PubMedCrossRef Goadsby PJ (2001) Migraine, aura, and cortical spreading depression: why are we still talking about it? Ann Neurol 49(1):4–6PubMedCrossRef
108.
go back to reference Moskowitz MA, Nozaki K, Kraig RP (1993) Neocortical spreading depression provokes the expression of c-fos protein-like immunoreactivity within trigeminal nucleus caudalis via trigeminovascular mechanisms. J Neurosci 13(3):1167–1177PubMedPubMedCentralCrossRef Moskowitz MA, Nozaki K, Kraig RP (1993) Neocortical spreading depression provokes the expression of c-fos protein-like immunoreactivity within trigeminal nucleus caudalis via trigeminovascular mechanisms. J Neurosci 13(3):1167–1177PubMedPubMedCentralCrossRef
109.
go back to reference Bolay H, Reuter U, Dunn AK, Huang Z, Boas DA, Moskowitz MA (2002) Intrinsic brain activity triggers trigeminal meningeal afferents in a migraine model. Nat Med 8(2):136–142PubMedCrossRef Bolay H, Reuter U, Dunn AK, Huang Z, Boas DA, Moskowitz MA (2002) Intrinsic brain activity triggers trigeminal meningeal afferents in a migraine model. Nat Med 8(2):136–142PubMedCrossRef
110.
go back to reference Zhang X, Levy D, Kainz V, Noseda R, Jakubowski M, Burstein R (2011) Activation of central trigeminovascular neurons by cortical spreading depression. Ann Neurol 69(5):855–865PubMedPubMedCentralCrossRef Zhang X, Levy D, Kainz V, Noseda R, Jakubowski M, Burstein R (2011) Activation of central trigeminovascular neurons by cortical spreading depression. Ann Neurol 69(5):855–865PubMedPubMedCentralCrossRef
111.
go back to reference Zhang X, Levy D, Noseda R, Kainz V, Jakubowski M, Burstein R (2010) Activation of meningeal nociceptors by cortical spreading depression: implications for migraine with aura. J Neurosci 30(26):8807–8814PubMedPubMedCentralCrossRef Zhang X, Levy D, Noseda R, Kainz V, Jakubowski M, Burstein R (2010) Activation of meningeal nociceptors by cortical spreading depression: implications for migraine with aura. J Neurosci 30(26):8807–8814PubMedPubMedCentralCrossRef
112.
113.
go back to reference Ebersberger A, Schaible HG, Averbeck B, Richter F (2001) Is there a correlation between spreading depression, neurogenic inflammation, and nociception that might cause migraine headache? Ann Neurol 49(1):7–13PubMedCrossRef Ebersberger A, Schaible HG, Averbeck B, Richter F (2001) Is there a correlation between spreading depression, neurogenic inflammation, and nociception that might cause migraine headache? Ann Neurol 49(1):7–13PubMedCrossRef
114.
go back to reference Ingvardsen BK, Laursen H, Olsen UB, Hansen AJ (1997) Possible mechanism of c-fos expression in trigeminal nucleus caudalis following cortical spreading depression. Pain. 72(3):407–415PubMedCrossRef Ingvardsen BK, Laursen H, Olsen UB, Hansen AJ (1997) Possible mechanism of c-fos expression in trigeminal nucleus caudalis following cortical spreading depression. Pain. 72(3):407–415PubMedCrossRef
115.
go back to reference Andreou AP, Sprenger T, Goadsby PJ (2013) Cortical modulation of thalamic function during cortical spreading depression- unraveling a new central mechanism involved in migraine aura. J Headache Pain 14:16CrossRef Andreou AP, Sprenger T, Goadsby PJ (2013) Cortical modulation of thalamic function during cortical spreading depression- unraveling a new central mechanism involved in migraine aura. J Headache Pain 14:16CrossRef
116.
go back to reference Ray BS, Wolff HG (1940) Experimental studies on headache. Pain sensitive structures of the head and their significance in headache. Arch Surg 41:813–856CrossRef Ray BS, Wolff HG (1940) Experimental studies on headache. Pain sensitive structures of the head and their significance in headache. Arch Surg 41:813–856CrossRef
117.
go back to reference Shields KG, Goadsby PJ (2006) Serotonin receptors modulate trigeminovascular responses in ventroposteromedial nucleus of thalamus: a migraine target? Neurobiol Dis 23(3):491–501PubMedCrossRef Shields KG, Goadsby PJ (2006) Serotonin receptors modulate trigeminovascular responses in ventroposteromedial nucleus of thalamus: a migraine target? Neurobiol Dis 23(3):491–501PubMedCrossRef
118.
go back to reference Andreou AP, Goadsby PJ (2011) Topiramate in the treatment of migraine: a kainate (glutamate) receptor antagonist within the trigeminothalamic pathway. Cephalalgia. 31(13):1343–1358PubMedCrossRef Andreou AP, Goadsby PJ (2011) Topiramate in the treatment of migraine: a kainate (glutamate) receptor antagonist within the trigeminothalamic pathway. Cephalalgia. 31(13):1343–1358PubMedCrossRef
119.
go back to reference Andreou AP, Shields KG, Goadsby PJ (2010) GABA and valproate modulate trigeminovascular nociceptive transmission in the thalamus. Neurobiol Dis 37(2):314–323CrossRefPubMed Andreou AP, Shields KG, Goadsby PJ (2010) GABA and valproate modulate trigeminovascular nociceptive transmission in the thalamus. Neurobiol Dis 37(2):314–323CrossRefPubMed
120.
go back to reference Andreou AP, Goadsby PJ (2009) Therapeutic potential of novel glutamate receptor antagonists in migraine. Expert Opin Investig Drugs 18(6):789–803PubMedCrossRef Andreou AP, Goadsby PJ (2009) Therapeutic potential of novel glutamate receptor antagonists in migraine. Expert Opin Investig Drugs 18(6):789–803PubMedCrossRef
121.
go back to reference Coppola G, Ambrosini A, Di Clemente L, Magis D, Fumal A, Gerard P et al (2007) Interictal abnormalities of gamma band activity in visual evoked responses in migraine: an indication of thalamocortical dysrhythmia? Cephalalgia. 27(12):1360–1367PubMedCrossRef Coppola G, Ambrosini A, Di Clemente L, Magis D, Fumal A, Gerard P et al (2007) Interictal abnormalities of gamma band activity in visual evoked responses in migraine: an indication of thalamocortical dysrhythmia? Cephalalgia. 27(12):1360–1367PubMedCrossRef
122.
go back to reference Amin FM, Hougaard A, Magon S, Sprenger T, Wolfram F, Rostrup E et al (2018) Altered thalamic connectivity during spontaneous attacks of migraine without aura: a resting-state fMRI study. Cephalalgia. 38(7):1237–1244PubMedCrossRef Amin FM, Hougaard A, Magon S, Sprenger T, Wolfram F, Rostrup E et al (2018) Altered thalamic connectivity during spontaneous attacks of migraine without aura: a resting-state fMRI study. Cephalalgia. 38(7):1237–1244PubMedCrossRef
123.
124.
go back to reference Noseda R, Kainz V, Jakubowski M, Gooley JJ, Saper CB, Digre K et al (2010) A neural mechanism for exacerbation of headache by light. Nat Neurosci 13(2):239–245PubMedPubMedCentralCrossRef Noseda R, Kainz V, Jakubowski M, Gooley JJ, Saper CB, Digre K et al (2010) A neural mechanism for exacerbation of headache by light. Nat Neurosci 13(2):239–245PubMedPubMedCentralCrossRef
125.
go back to reference Filippov IV, Williams WC, Krebs AA, Pugachev KS (2008) Dynamics of infraslow potentials in the primary auditory cortex: component analysis and contribution of specific thalamic-cortical and non-specific brainstem-cortical influences. Brain Res 1219:66–77PubMedCrossRef Filippov IV, Williams WC, Krebs AA, Pugachev KS (2008) Dynamics of infraslow potentials in the primary auditory cortex: component analysis and contribution of specific thalamic-cortical and non-specific brainstem-cortical influences. Brain Res 1219:66–77PubMedCrossRef
126.
go back to reference Burstein R, Jakubowski M, Garcia-Nicas E, Kainz V, Bajwa Z, Hargreaves R et al (2010) Thalamic sensitization transforms localized pain into widespread allodynia. Ann Neurol 68(1):81–91PubMedPubMedCentralCrossRef Burstein R, Jakubowski M, Garcia-Nicas E, Kainz V, Bajwa Z, Hargreaves R et al (2010) Thalamic sensitization transforms localized pain into widespread allodynia. Ann Neurol 68(1):81–91PubMedPubMedCentralCrossRef
127.
go back to reference Akerman S, Holland PR, Goadsby PJ (2011) Diencephalic and brainstem mechanisms in migraine. Nat Rev Neurosci 12(10):570–584PubMedCrossRef Akerman S, Holland PR, Goadsby PJ (2011) Diencephalic and brainstem mechanisms in migraine. Nat Rev Neurosci 12(10):570–584PubMedCrossRef
128.
go back to reference Weiller C, May A, Limmroth V, Juptner M, Kaube H, Schayck RV et al (1995) Brain stem activation in spontaneous human migraine attacks. Nat Med 1(7):658–660PubMedCrossRef Weiller C, May A, Limmroth V, Juptner M, Kaube H, Schayck RV et al (1995) Brain stem activation in spontaneous human migraine attacks. Nat Med 1(7):658–660PubMedCrossRef
129.
go back to reference Afridi SK, Giffin NJ, Kaube H, Friston KJ, Ward NS, Frackowiak RS et al (2005) A positron emission tomographic study in spontaneous migraine. Arch Neurol 62(8):1270–1275PubMedCrossRef Afridi SK, Giffin NJ, Kaube H, Friston KJ, Ward NS, Frackowiak RS et al (2005) A positron emission tomographic study in spontaneous migraine. Arch Neurol 62(8):1270–1275PubMedCrossRef
130.
go back to reference Matharu MS, Bartsch T, Ward N, Frackowiak RS, Weiner R, Goadsby PJ (2004) Central neuromodulation in chronic migraine patients with suboccipital stimulators: a PET study. Brain. 127(Pt 1):220–230PubMedCrossRef Matharu MS, Bartsch T, Ward N, Frackowiak RS, Weiner R, Goadsby PJ (2004) Central neuromodulation in chronic migraine patients with suboccipital stimulators: a PET study. Brain. 127(Pt 1):220–230PubMedCrossRef
131.
go back to reference Afridi SK, Matharu MS, Lee L, Kaube H, Friston KJ, Frackowiak RS et al (2005) A PET study exploring the laterality of brainstem activation in migraine using glyceryl trinitrate. Brain. 128(Pt 4):932–939PubMedCrossRef Afridi SK, Matharu MS, Lee L, Kaube H, Friston KJ, Frackowiak RS et al (2005) A PET study exploring the laterality of brainstem activation in migraine using glyceryl trinitrate. Brain. 128(Pt 4):932–939PubMedCrossRef
132.
go back to reference Gupta R, Bhatia MS (2007) A report of cranial autonomic symptoms in migraineurs. Cephalalgia. 27(1):22–28PubMedCrossRef Gupta R, Bhatia MS (2007) A report of cranial autonomic symptoms in migraineurs. Cephalalgia. 27(1):22–28PubMedCrossRef
133.
go back to reference Edvinsson L, Elsas T, Suzuki N, Shimizu T, Lee TJ (2001) Origin and co-localization of nitric oxide synthase, CGRP, PACAP, and VIP in the cerebral circulation of the rat. Microsc Res Tech 53(3):221–228PubMedCrossRef Edvinsson L, Elsas T, Suzuki N, Shimizu T, Lee TJ (2001) Origin and co-localization of nitric oxide synthase, CGRP, PACAP, and VIP in the cerebral circulation of the rat. Microsc Res Tech 53(3):221–228PubMedCrossRef
134.
go back to reference Yarnitsky D, Goor-Aryeh I, Bajwa ZH, Ransil BI, Cutrer FM, Sottile A et al (2003) 2003 Wolff award: possible parasympathetic contributions to peripheral and central sensitization during migraine. Headache. 43(7):704–714PubMedCrossRef Yarnitsky D, Goor-Aryeh I, Bajwa ZH, Ransil BI, Cutrer FM, Sottile A et al (2003) 2003 Wolff award: possible parasympathetic contributions to peripheral and central sensitization during migraine. Headache. 43(7):704–714PubMedCrossRef
135.
go back to reference Jones MG, Andreou AP, McMahon SB, Spanswick D (2016) Pharmacology of reflex blinks in the rat: a novel model for headache research. J Headache Pain 17(1):96PubMedPubMedCentralCrossRef Jones MG, Andreou AP, McMahon SB, Spanswick D (2016) Pharmacology of reflex blinks in the rat: a novel model for headache research. J Headache Pain 17(1):96PubMedPubMedCentralCrossRef
136.
go back to reference Olesen J, Burstein R, Ashina M, Tfelt-Hansen P (2009) Origin of pain in migraine: evidence for peripheral sensitisation. Lancet Neurol 8(7):679–690PubMedCrossRef Olesen J, Burstein R, Ashina M, Tfelt-Hansen P (2009) Origin of pain in migraine: evidence for peripheral sensitisation. Lancet Neurol 8(7):679–690PubMedCrossRef
137.
go back to reference Wolff HG (1948) Headache and other head pain, 1st edn. Oxford University Press, New York Wolff HG (1948) Headache and other head pain, 1st edn. Oxford University Press, New York
138.
go back to reference Penfield W, McNaughton F (1940) Dural headache and innervation of the dura matter. Arch Neurol Psychiatr 44:43–75CrossRef Penfield W, McNaughton F (1940) Dural headache and innervation of the dura matter. Arch Neurol Psychiatr 44:43–75CrossRef
139.
go back to reference Goadsby PJ, Edvinsson L, Ekman R (1990) Vasoactive peptide release in the extracerebral circulation of humans during migraine headache. Ann Neurol 28(2):183–187PubMedCrossRef Goadsby PJ, Edvinsson L, Ekman R (1990) Vasoactive peptide release in the extracerebral circulation of humans during migraine headache. Ann Neurol 28(2):183–187PubMedCrossRef
140.
go back to reference Goadsby PJ, Edvinsson L, Ekman R (1988) Release of vasoactive peptides in the extracerebral circulation of humans and the cat during activation of the trigeminovascular system. Ann Neurol 23(2):193–196PubMedCrossRef Goadsby PJ, Edvinsson L, Ekman R (1988) Release of vasoactive peptides in the extracerebral circulation of humans and the cat during activation of the trigeminovascular system. Ann Neurol 23(2):193–196PubMedCrossRef
141.
go back to reference Lambert GA, Goadsby PJ, Zagami AS, Duckworth JW (1988) Comparative effects of stimulation of the trigeminal ganglion and the superior sagittal sinus on cerebral blood flow and evoked potentials in the cat. Brain Res 453(1–2):143–149PubMedCrossRef Lambert GA, Goadsby PJ, Zagami AS, Duckworth JW (1988) Comparative effects of stimulation of the trigeminal ganglion and the superior sagittal sinus on cerebral blood flow and evoked potentials in the cat. Brain Res 453(1–2):143–149PubMedCrossRef
142.
go back to reference Storer RJ, Akerman S, Goadsby PJ (2004) Calcitonin gene-related peptide (CGRP) modulates nociceptive trigeminovascular transmission in the cat. Br J Pharmacol 142(7):1171–1181PubMedPubMedCentralCrossRef Storer RJ, Akerman S, Goadsby PJ (2004) Calcitonin gene-related peptide (CGRP) modulates nociceptive trigeminovascular transmission in the cat. Br J Pharmacol 142(7):1171–1181PubMedPubMedCentralCrossRef
143.
go back to reference Biella G, Panara C, Pecile A, Sotgiu ML (1991) Facilitatory role of calcitonin gene-related peptide (CGRP) on excitation induced by substance P (SP) and noxious stimuli in rat spinal dorsal horn neurons. An iontophoretic study in vivo. Brain Res 559(2):352–356PubMedCrossRef Biella G, Panara C, Pecile A, Sotgiu ML (1991) Facilitatory role of calcitonin gene-related peptide (CGRP) on excitation induced by substance P (SP) and noxious stimuli in rat spinal dorsal horn neurons. An iontophoretic study in vivo. Brain Res 559(2):352–356PubMedCrossRef
144.
go back to reference Leem JW, Gwak YS, Lee EH, Chung SS, Kim YS, Nam TS (2001) Effects of iontophoretically applied substance P, calcitonin gene-related peptide on excitability of dorsal horn neurones in rats. Yonsei Med J 42(1):74–83PubMedCrossRef Leem JW, Gwak YS, Lee EH, Chung SS, Kim YS, Nam TS (2001) Effects of iontophoretically applied substance P, calcitonin gene-related peptide on excitability of dorsal horn neurones in rats. Yonsei Med J 42(1):74–83PubMedCrossRef
145.
go back to reference Schankin CJ, Maniyar FH, Seo Y, Kori S, Eller M, Chou DE et al (2016) Ictal lack of binding to brain parenchyma suggests integrity of the blood-brain barrier for 11C-dihydroergotamine during glyceryl trinitrate-induced migraine. Brain. 139(Pt 7):1994–2001PubMedPubMedCentralCrossRef Schankin CJ, Maniyar FH, Seo Y, Kori S, Eller M, Chou DE et al (2016) Ictal lack of binding to brain parenchyma suggests integrity of the blood-brain barrier for 11C-dihydroergotamine during glyceryl trinitrate-induced migraine. Brain. 139(Pt 7):1994–2001PubMedPubMedCentralCrossRef
146.
go back to reference Hougaard A, Amin FM, Christensen CE, Younis S, Wolfram F, Cramer SP et al (2017) Increased brainstem perfusion, but no blood-brain barrier disruption, during attacks of migraine with aura. Brain. 140(6):1633–1642PubMedCrossRef Hougaard A, Amin FM, Christensen CE, Younis S, Wolfram F, Cramer SP et al (2017) Increased brainstem perfusion, but no blood-brain barrier disruption, during attacks of migraine with aura. Brain. 140(6):1633–1642PubMedCrossRef
147.
go back to reference Edvinsson L, Nilsson E, Jansen-Olesen I (2007) Inhibitory effect of BIBN4096BS, CGRP(8-37), a CGRP antibody and an RNA-Spiegelmer on CGRP induced vasodilatation in the perfused and non-perfused rat middle cerebral artery. Br J Pharmacol 150(5):633–640PubMedPubMedCentralCrossRef Edvinsson L, Nilsson E, Jansen-Olesen I (2007) Inhibitory effect of BIBN4096BS, CGRP(8-37), a CGRP antibody and an RNA-Spiegelmer on CGRP induced vasodilatation in the perfused and non-perfused rat middle cerebral artery. Br J Pharmacol 150(5):633–640PubMedPubMedCentralCrossRef
148.
go back to reference Lassen LH, Haderslev PA, Jacobsen VB, Iversen HK, Sperling B, Olesen J (2002) CGRP may play a causative role in migraine. Cephalalgia. 22(1):54–61PubMedCrossRef Lassen LH, Haderslev PA, Jacobsen VB, Iversen HK, Sperling B, Olesen J (2002) CGRP may play a causative role in migraine. Cephalalgia. 22(1):54–61PubMedCrossRef
149.
go back to reference Lassen LH, Thomsen LL, Olesen J (1995) Histamine induces migraine via the H1-receptor. Support for the NO hypothesis of migraine. Neuroreport. 6(11):1475–1479PubMedCrossRef Lassen LH, Thomsen LL, Olesen J (1995) Histamine induces migraine via the H1-receptor. Support for the NO hypothesis of migraine. Neuroreport. 6(11):1475–1479PubMedCrossRef
150.
go back to reference Schoonman GG, van der Grond J, Kortmann C, van der Geest RJ, Terwindt GM, Ferrari MD (2008) Migraine headache is not associated with cerebral or meningeal vasodilatation--a 3T magnetic resonance angiography study. Brain. 131(Pt 8):2192–2200PubMedCrossRef Schoonman GG, van der Grond J, Kortmann C, van der Geest RJ, Terwindt GM, Ferrari MD (2008) Migraine headache is not associated with cerebral or meningeal vasodilatation--a 3T magnetic resonance angiography study. Brain. 131(Pt 8):2192–2200PubMedCrossRef
151.
go back to reference Andreou AP, Trimboli M, Al-Kaisy A, Murphy M, Palmisani S, Fenech C et al (2018) Prospective real-world analysis of OnabotulinumtoxinA in chronic migraine post-National Institute for health and care excellence UK technology appraisal. Eur J Neurol 25(8):1069–1e83PubMedCrossRef Andreou AP, Trimboli M, Al-Kaisy A, Murphy M, Palmisani S, Fenech C et al (2018) Prospective real-world analysis of OnabotulinumtoxinA in chronic migraine post-National Institute for health and care excellence UK technology appraisal. Eur J Neurol 25(8):1069–1e83PubMedCrossRef
152.
go back to reference The LN (2019) Complicated decisions on new migraine-prevention therapies. Lancet Neurol 18(3):221CrossRef The LN (2019) Complicated decisions on new migraine-prevention therapies. Lancet Neurol 18(3):221CrossRef
153.
go back to reference Dodick DW (2019) CGRP ligand and receptor monoclonal antibodies for migraine prevention: evidence review and clinical implications. Cephalalgia. 39(3):445–458PubMedCrossRef Dodick DW (2019) CGRP ligand and receptor monoclonal antibodies for migraine prevention: evidence review and clinical implications. Cephalalgia. 39(3):445–458PubMedCrossRef
154.
go back to reference Lundblad C, Haanes KA, Grande G, Edvinsson L (2015) Experimental inflammation following dural application of complete Freund's adjuvant or inflammatory soup does not alter brain and trigeminal microvascular passage. J Headache Pain 16:91PubMedPubMedCentralCrossRef Lundblad C, Haanes KA, Grande G, Edvinsson L (2015) Experimental inflammation following dural application of complete Freund's adjuvant or inflammatory soup does not alter brain and trigeminal microvascular passage. J Headache Pain 16:91PubMedPubMedCentralCrossRef
155.
go back to reference Andreou AP, Holland PR, Goadsby PJ (2009) Activation of iGluR5 kainate receptors inhibits neurogenic dural vasodilatation in an animal model of trigeminovascular activation. Br J Pharmacol 157(3):464–473PubMedPubMedCentralCrossRef Andreou AP, Holland PR, Goadsby PJ (2009) Activation of iGluR5 kainate receptors inhibits neurogenic dural vasodilatation in an animal model of trigeminovascular activation. Br J Pharmacol 157(3):464–473PubMedPubMedCentralCrossRef
156.
go back to reference Andreou AP, Holland PR, Lasalandra M, Goadsby PJ (2015) Modulation of nociceptive dural input to the trigeminocervical complex through GluK1 kainate receptors. Pain 156(3):439–450PubMedCrossRefPubMedCentral Andreou AP, Holland PR, Lasalandra M, Goadsby PJ (2015) Modulation of nociceptive dural input to the trigeminocervical complex through GluK1 kainate receptors. Pain 156(3):439–450PubMedCrossRefPubMedCentral
157.
go back to reference Nichols FT 3rd, Mawad M, Mohr JP, Stein B, Hilal S, Michelsen WJ (1990) Focal headache during balloon inflation in the internal carotid and middle cerebral arteries. Stroke. 21(4):555–559PubMedCrossRef Nichols FT 3rd, Mawad M, Mohr JP, Stein B, Hilal S, Michelsen WJ (1990) Focal headache during balloon inflation in the internal carotid and middle cerebral arteries. Stroke. 21(4):555–559PubMedCrossRef
158.
go back to reference Nagata E, Moriguchi H, Takizawa S, Horie T, Yanagimachi N, Takagi S (2009) The middle meningial artery during a migraine attack: 3T magnetic resonance angiography study. Intern Med 48(24):2133–2135PubMedCrossRef Nagata E, Moriguchi H, Takizawa S, Horie T, Yanagimachi N, Takagi S (2009) The middle meningial artery during a migraine attack: 3T magnetic resonance angiography study. Intern Med 48(24):2133–2135PubMedCrossRef
159.
go back to reference Khan S, Amin FM, Christensen CE, Ghanizada H, Younis S, Olinger ACR et al (2019) Meningeal contribution to migraine pain: a magnetic resonance angiography study. Brain. 142:93–102PubMedCrossRef Khan S, Amin FM, Christensen CE, Ghanizada H, Younis S, Olinger ACR et al (2019) Meningeal contribution to migraine pain: a magnetic resonance angiography study. Brain. 142:93–102PubMedCrossRef
160.
go back to reference Friberg L, Olesen J, Iversen HK, Sperling B (1991) Migraine pain associated with middle cerebral artery dilatation: reversal by sumatriptan. Lancet. 338(8758):13–17PubMedCrossRef Friberg L, Olesen J, Iversen HK, Sperling B (1991) Migraine pain associated with middle cerebral artery dilatation: reversal by sumatriptan. Lancet. 338(8758):13–17PubMedCrossRef
161.
go back to reference Iversen HK, Nielsen TH, Olesen J, Tfelt-Hansen P (1990) Arterial responses during migraine headache. Lancet. 336(8719):837–839PubMedCrossRef Iversen HK, Nielsen TH, Olesen J, Tfelt-Hansen P (1990) Arterial responses during migraine headache. Lancet. 336(8719):837–839PubMedCrossRef
162.
163.
go back to reference Kruuse C, Thomsen LL, Birk S, Olesen J (2003) Migraine can be induced by sildenafil without changes in middle cerebral artery diameter. Brain. 126:241–247PubMedCrossRef Kruuse C, Thomsen LL, Birk S, Olesen J (2003) Migraine can be induced by sildenafil without changes in middle cerebral artery diameter. Brain. 126:241–247PubMedCrossRef
164.
go back to reference Jacobs B, Dussor G (2016) Neurovascular contributions to migraine: moving beyond vasodilation. Neuroscience. 338:130–144PubMedCrossRef Jacobs B, Dussor G (2016) Neurovascular contributions to migraine: moving beyond vasodilation. Neuroscience. 338:130–144PubMedCrossRef
166.
go back to reference Buse DC, Manack AN, Fanning KM, Serrano D, Reed ML, Turkel CC et al (2012) Chronic migraine prevalence, disability, and sociodemographic factors: results from the American Migraine Prevalence and Prevention Study. Headache. 52(10):1456–1470PubMedCrossRef Buse DC, Manack AN, Fanning KM, Serrano D, Reed ML, Turkel CC et al (2012) Chronic migraine prevalence, disability, and sociodemographic factors: results from the American Migraine Prevalence and Prevention Study. Headache. 52(10):1456–1470PubMedCrossRef
167.
go back to reference Natoli JL, Manack A, Dean B, Butler Q, Turkel CC, Stovner L et al (2010) Global prevalence of chronic migraine: a systematic review. Cephalalgia. 30(5):599–609PubMedCrossRef Natoli JL, Manack A, Dean B, Butler Q, Turkel CC, Stovner L et al (2010) Global prevalence of chronic migraine: a systematic review. Cephalalgia. 30(5):599–609PubMedCrossRef
168.
go back to reference Moschiano F, D'Amico D, Schieroni F, Bussone G (2003) Neurobiology of chronic migraine. Neurol Sci 24(Suppl 2):S94–S96PubMedCrossRef Moschiano F, D'Amico D, Schieroni F, Bussone G (2003) Neurobiology of chronic migraine. Neurol Sci 24(Suppl 2):S94–S96PubMedCrossRef
169.
170.
go back to reference Manack AN, Buse DC, Lipton RB (2011) Chronic migraine: epidemiology and disease burden. Curr Pain Headache Rep 15(1):70–78PubMedCrossRef Manack AN, Buse DC, Lipton RB (2011) Chronic migraine: epidemiology and disease burden. Curr Pain Headache Rep 15(1):70–78PubMedCrossRef
171.
172.
go back to reference May A, Schulte LH (2016) Chronic migraine: risk factors, mechanisms and treatment. Nat Rev Neurol 12(8):455–464PubMedCrossRef May A, Schulte LH (2016) Chronic migraine: risk factors, mechanisms and treatment. Nat Rev Neurol 12(8):455–464PubMedCrossRef
173.
go back to reference Scher AI, Stewart WF, Ricci JA, Lipton RB (2003) Factors associated with the onset and remission of chronic daily headache in a population-based study. Pain. 106(1–2):81–89PubMedCrossRef Scher AI, Stewart WF, Ricci JA, Lipton RB (2003) Factors associated with the onset and remission of chronic daily headache in a population-based study. Pain. 106(1–2):81–89PubMedCrossRef
174.
go back to reference Mathew NT, Kurman R, Perez F (1990) Drug induced refractory headache--clinical features and management. Headache. 30(10):634–638PubMedCrossRef Mathew NT, Kurman R, Perez F (1990) Drug induced refractory headache--clinical features and management. Headache. 30(10):634–638PubMedCrossRef
175.
go back to reference Katsarava Z, Schneeweiss S, Kurth T, Kroener U, Fritsche G, Eikermann A et al (2004) Incidence and predictors for chronicity of headache in patients with episodic migraine. Neurology. 62(5):788–790PubMedCrossRef Katsarava Z, Schneeweiss S, Kurth T, Kroener U, Fritsche G, Eikermann A et al (2004) Incidence and predictors for chronicity of headache in patients with episodic migraine. Neurology. 62(5):788–790PubMedCrossRef
176.
go back to reference Lipton RB, Fanning KM, Serrano D, Reed ML, Cady R, Buse DC (2015) Ineffective acute treatment of episodic migraine is associated with new-onset chronic migraine. Neurology. 84(7):688–695PubMedPubMedCentralCrossRef Lipton RB, Fanning KM, Serrano D, Reed ML, Cady R, Buse DC (2015) Ineffective acute treatment of episodic migraine is associated with new-onset chronic migraine. Neurology. 84(7):688–695PubMedPubMedCentralCrossRef
177.
go back to reference Ashina S, Serrano D, Lipton RB, Maizels M, Manack AN, Turkel CC et al (2012) Depression and risk of transformation of episodic to chronic migraine. J Headache Pain 13(8):615–624PubMedPubMedCentralCrossRef Ashina S, Serrano D, Lipton RB, Maizels M, Manack AN, Turkel CC et al (2012) Depression and risk of transformation of episodic to chronic migraine. J Headache Pain 13(8):615–624PubMedPubMedCentralCrossRef
178.
go back to reference Bigal ME, Lipton RB (2006) Obesity is a risk factor for transformed migraine but not chronic tension-type headache. Neurology. 67(2):252–257PubMedCrossRef Bigal ME, Lipton RB (2006) Obesity is a risk factor for transformed migraine but not chronic tension-type headache. Neurology. 67(2):252–257PubMedCrossRef
179.
go back to reference Coppola G, Di Renzo A, Petolicchio B, Tinelli E, Di Lorenzo C, Parisi V et al (2019) Aberrant interactions of cortical networks in chronic migraine: a resting-state fMRI study. Neurology. 92(22):e2550–e25e8PubMedCrossRef Coppola G, Di Renzo A, Petolicchio B, Tinelli E, Di Lorenzo C, Parisi V et al (2019) Aberrant interactions of cortical networks in chronic migraine: a resting-state fMRI study. Neurology. 92(22):e2550–e25e8PubMedCrossRef
180.
go back to reference Aradi M, Schwarcz A, Perlaki G, Orsi G, Kovacs N, Trauninger A et al (2013) Quantitative MRI studies of chronic brain white matter hyperintensities in migraine patients. Headache. 53(5):752–763PubMedCrossRef Aradi M, Schwarcz A, Perlaki G, Orsi G, Kovacs N, Trauninger A et al (2013) Quantitative MRI studies of chronic brain white matter hyperintensities in migraine patients. Headache. 53(5):752–763PubMedCrossRef
181.
go back to reference Chiapparini L, Ferraro S, Grazzi L, Bussone G (2010) Neuroimaging in chronic migraine. Neurol Sci 31(Suppl 1):S19–S22PubMedCrossRef Chiapparini L, Ferraro S, Grazzi L, Bussone G (2010) Neuroimaging in chronic migraine. Neurol Sci 31(Suppl 1):S19–S22PubMedCrossRef
182.
go back to reference Rocca MA, Ceccarelli A, Falini A, Tortorella P, Colombo B, Pagani E et al (2006) Diffusion tensor magnetic resonance imaging at 3.0 tesla shows subtle cerebral grey matter abnormalities in patients with migraine. J Neurol Neurosurg Psychiatry 77(5):686–689PubMedPubMedCentralCrossRef Rocca MA, Ceccarelli A, Falini A, Tortorella P, Colombo B, Pagani E et al (2006) Diffusion tensor magnetic resonance imaging at 3.0 tesla shows subtle cerebral grey matter abnormalities in patients with migraine. J Neurol Neurosurg Psychiatry 77(5):686–689PubMedPubMedCentralCrossRef
183.
go back to reference Valfre W, Rainero I, Bergui M, Pinessi L (2008) Voxel-based morphometry reveals gray matter abnormalities in migraine. Headache. 48(1):109–117PubMedCrossRef Valfre W, Rainero I, Bergui M, Pinessi L (2008) Voxel-based morphometry reveals gray matter abnormalities in migraine. Headache. 48(1):109–117PubMedCrossRef
184.
go back to reference Zheng Z, Xiao Z, Shi X, Ding M, Di W, Qi W et al (2014) White matter lesions in chronic migraine with medication overuse headache: a cross-sectional MRI study. J Neurol 261(4):784–790PubMedCrossRef Zheng Z, Xiao Z, Shi X, Ding M, Di W, Qi W et al (2014) White matter lesions in chronic migraine with medication overuse headache: a cross-sectional MRI study. J Neurol 261(4):784–790PubMedCrossRef
185.
go back to reference Coppola G, Schoenen J (2012) Cortical excitability in chronic migraine. Curr Pain Headache Rep 16(1):93–100PubMedCrossRef Coppola G, Schoenen J (2012) Cortical excitability in chronic migraine. Curr Pain Headache Rep 16(1):93–100PubMedCrossRef
186.
go back to reference Cosentino G, Fierro B, Vigneri S, Talamanca S, Paladino P, Baschi R et al (2014) Cyclical changes of cortical excitability and metaplasticity in migraine: evidence from a repetitive transcranial magnetic stimulation study. Pain. 155(6):1070–1078PubMedCrossRef Cosentino G, Fierro B, Vigneri S, Talamanca S, Paladino P, Baschi R et al (2014) Cyclical changes of cortical excitability and metaplasticity in migraine: evidence from a repetitive transcranial magnetic stimulation study. Pain. 155(6):1070–1078PubMedCrossRef
187.
go back to reference Edvinsson L, Haanes KA, Warfvinge K (2019) Does inflammation have a role in migraine? Nat Rev Neurol 15(8):483–490PubMedCrossRef Edvinsson L, Haanes KA, Warfvinge K (2019) Does inflammation have a role in migraine? Nat Rev Neurol 15(8):483–490PubMedCrossRef
188.
go back to reference Moskowitz MA (1993) Neurogenic inflammation in the pathophysiology and treatment of migraine. Neurology. 43(6 Suppl 3):S16–S20PubMed Moskowitz MA (1993) Neurogenic inflammation in the pathophysiology and treatment of migraine. Neurology. 43(6 Suppl 3):S16–S20PubMed
190.
go back to reference Allen SM, Mookadam F, Cha SS, Freeman JA, Starling AJ, Mookadam M (2018) Greater occipital nerve block for acute treatment of migraine headache: a large retrospective cohort study. J Am Board Fam Med 31(2):211–218PubMedCrossRef Allen SM, Mookadam F, Cha SS, Freeman JA, Starling AJ, Mookadam M (2018) Greater occipital nerve block for acute treatment of migraine headache: a large retrospective cohort study. J Am Board Fam Med 31(2):211–218PubMedCrossRef
191.
go back to reference Kashipazha D, Nakhostin-Mortazavi A, Mohammadianinejad SE, Bahadoram M, Zandifar S, Tarahomi S (2014) Preventive effect of greater occipital nerve block on severity and frequency of migraine headache. Global J Health Sci 6(6):209–213CrossRef Kashipazha D, Nakhostin-Mortazavi A, Mohammadianinejad SE, Bahadoram M, Zandifar S, Tarahomi S (2014) Preventive effect of greater occipital nerve block on severity and frequency of migraine headache. Global J Health Sci 6(6):209–213CrossRef
192.
go back to reference Nakamura-Craig M, Gill BK (1991) Effect of neurokinin a, substance P and calcitonin gene related peptide in peripheral hyperalgesia in the rat paw. Neurosci Lett 124(1):49–51PubMedCrossRef Nakamura-Craig M, Gill BK (1991) Effect of neurokinin a, substance P and calcitonin gene related peptide in peripheral hyperalgesia in the rat paw. Neurosci Lett 124(1):49–51PubMedCrossRef
193.
go back to reference Schaible HG, Schmidt RF (1988) Excitation and sensitization of fine articular afferents from cat's knee joint by prostaglandin E2. J Physiol 403:91–104PubMedPubMedCentralCrossRef Schaible HG, Schmidt RF (1988) Excitation and sensitization of fine articular afferents from cat's knee joint by prostaglandin E2. J Physiol 403:91–104PubMedPubMedCentralCrossRef
194.
go back to reference Birrell GJ, McQueen DS, Iggo A, Coleman RA, Grubb BD (1991) PGI2-induced activation and sensitization of articular mechanonociceptors. Neurosci Lett 124(1):5–8PubMedCrossRef Birrell GJ, McQueen DS, Iggo A, Coleman RA, Grubb BD (1991) PGI2-induced activation and sensitization of articular mechanonociceptors. Neurosci Lett 124(1):5–8PubMedCrossRef
195.
go back to reference Wang J, Qiu X, Kulkarni A, Hauer-Jensen M (2006) Calcitonin gene-related peptide and substance P regulate the intestinal radiation response. Clin Cancer Res 12(13):4112–4118PubMedCrossRef Wang J, Qiu X, Kulkarni A, Hauer-Jensen M (2006) Calcitonin gene-related peptide and substance P regulate the intestinal radiation response. Clin Cancer Res 12(13):4112–4118PubMedCrossRef
196.
go back to reference Eftekhari S, Salvatore CA, Calamari A, Kane SA, Tajti J, Edvinsson L (2010) Differential distribution of calcitonin gene-related peptide and its receptor components in the human trigeminal ganglion. Neuroscience. 169(2):683–696PubMedCrossRef Eftekhari S, Salvatore CA, Calamari A, Kane SA, Tajti J, Edvinsson L (2010) Differential distribution of calcitonin gene-related peptide and its receptor components in the human trigeminal ganglion. Neuroscience. 169(2):683–696PubMedCrossRef
197.
go back to reference Johnson K, Bolay H (2006) Neurogenic inflammatory mechanisms. In: Olesen J, Goadsby PJ, Ramadan NM, Tfelt-Hansen P, Welch KMA (eds) The headaches, 3rd edn. Lipincott Williams & Wilkins, Philadelphia, pp 309–319 Johnson K, Bolay H (2006) Neurogenic inflammatory mechanisms. In: Olesen J, Goadsby PJ, Ramadan NM, Tfelt-Hansen P, Welch KMA (eds) The headaches, 3rd edn. Lipincott Williams & Wilkins, Philadelphia, pp 309–319
198.
199.
go back to reference Covelli V, Munno I, Pellegrino NM, Altamura M, Decandia P, Marcuccio C et al (1991) Are TNF-alpha and IL-1 beta relevant in the pathogenesis of migraine without aura? Acta Neurol (Napoli) 13(2):205–211 Covelli V, Munno I, Pellegrino NM, Altamura M, Decandia P, Marcuccio C et al (1991) Are TNF-alpha and IL-1 beta relevant in the pathogenesis of migraine without aura? Acta Neurol (Napoli) 13(2):205–211
200.
go back to reference Perini F, D'Andrea G, Galloni E, Pignatelli F, Billo G, Alba S et al (2005) Plasma cytokine levels in migraineurs and controls. Headache. 45(7):926–931PubMedCrossRef Perini F, D'Andrea G, Galloni E, Pignatelli F, Billo G, Alba S et al (2005) Plasma cytokine levels in migraineurs and controls. Headache. 45(7):926–931PubMedCrossRef
201.
go back to reference Franceschini A, Vilotti S, Ferrari MD, van den Maagdenberg AM, Nistri A, Fabbretti E (2013) TNFalpha levels and macrophages expression reflect an inflammatory potential of trigeminal ganglia in a mouse model of familial hemiplegic migraine. PLoS One 8(1):e52394PubMedPubMedCentralCrossRef Franceschini A, Vilotti S, Ferrari MD, van den Maagdenberg AM, Nistri A, Fabbretti E (2013) TNFalpha levels and macrophages expression reflect an inflammatory potential of trigeminal ganglia in a mouse model of familial hemiplegic migraine. PLoS One 8(1):e52394PubMedPubMedCentralCrossRef
202.
go back to reference Tanure MT, Gomez RS, Hurtado RC, Teixeira AL, Domingues RB (2010) Increased serum levels of brain-derived neurotropic factor during migraine attacks: a pilot study. J Headache Pain 11(5):427–430PubMedPubMedCentralCrossRef Tanure MT, Gomez RS, Hurtado RC, Teixeira AL, Domingues RB (2010) Increased serum levels of brain-derived neurotropic factor during migraine attacks: a pilot study. J Headache Pain 11(5):427–430PubMedPubMedCentralCrossRef
204.
go back to reference Kuris A, Xu CB, Zhou MF, Tajti J, Uddman R, Edvinsson L (2007) Enhanced expression of CGRP in rat trigeminal ganglion neurons during cell and organ culture. Brain Res 1173:6–13PubMedCrossRef Kuris A, Xu CB, Zhou MF, Tajti J, Uddman R, Edvinsson L (2007) Enhanced expression of CGRP in rat trigeminal ganglion neurons during cell and organ culture. Brain Res 1173:6–13PubMedCrossRef
205.
go back to reference Csati A, Edvinsson L, Vecsei L, Toldi J, Fulop F, Tajti J et al (2015) Kynurenic acid modulates experimentally induced inflammation in the trigeminal ganglion. J Headache Pain 16:99PubMedPubMedCentralCrossRef Csati A, Edvinsson L, Vecsei L, Toldi J, Fulop F, Tajti J et al (2015) Kynurenic acid modulates experimentally induced inflammation in the trigeminal ganglion. J Headache Pain 16:99PubMedPubMedCentralCrossRef
206.
go back to reference Lukacs M, Haanes KA, Majlath Z, Tajti J, Vecsei L, Warfvinge K et al (2015) Dural administration of inflammatory soup or complete Freund's adjuvant induces activation and inflammatory response in the rat trigeminal ganglion. J Headache Pain 16:564PubMedCrossRef Lukacs M, Haanes KA, Majlath Z, Tajti J, Vecsei L, Warfvinge K et al (2015) Dural administration of inflammatory soup or complete Freund's adjuvant induces activation and inflammatory response in the rat trigeminal ganglion. J Headache Pain 16:564PubMedCrossRef
207.
go back to reference Lukacs M, Tajti J, Fulop F, Toldi J, Edvinsson L, Vecsei L (2017) Migraine, neurogenic inflammation, drug development - pharmacochemical aspects. Curr Med Chem 24(33):3649–3665PubMedCrossRef Lukacs M, Tajti J, Fulop F, Toldi J, Edvinsson L, Vecsei L (2017) Migraine, neurogenic inflammation, drug development - pharmacochemical aspects. Curr Med Chem 24(33):3649–3665PubMedCrossRef
208.
go back to reference Tajti J, Kuris A, Vecsei L, Xu CB, Edvinsson L (2011) Organ culture of the trigeminal ganglion induces enhanced expression of calcitonin gene-related peptide via activation of extracellular signal-regulated protein kinase 1/2. Cephalalgia. 31(1):95–105PubMedCrossRef Tajti J, Kuris A, Vecsei L, Xu CB, Edvinsson L (2011) Organ culture of the trigeminal ganglion induces enhanced expression of calcitonin gene-related peptide via activation of extracellular signal-regulated protein kinase 1/2. Cephalalgia. 31(1):95–105PubMedCrossRef
209.
go back to reference Burstein R, Yamamura H, Malick A, Strassman AM (1998) Chemical stimulation of the intracranial dura induces enhanced responses to facial stimulation in brain stem trigeminal neurons. J Neurophysiol 79(2):964–982PubMedCrossRef Burstein R, Yamamura H, Malick A, Strassman AM (1998) Chemical stimulation of the intracranial dura induces enhanced responses to facial stimulation in brain stem trigeminal neurons. J Neurophysiol 79(2):964–982PubMedCrossRef
210.
go back to reference Strassman AM, Raymond SA, Burstein R (1996) Sensitization of meningeal sensory neurons and the origin of headaches. Nature. 384(6609):560–564PubMedCrossRef Strassman AM, Raymond SA, Burstein R (1996) Sensitization of meningeal sensory neurons and the origin of headaches. Nature. 384(6609):560–564PubMedCrossRef
211.
go back to reference Lukacs M, Warfvinge K, Kruse LS, Tajti J, Fulop F, Toldi J et al (2016) KYNA analogue SZR72 modifies CFA-induced dural inflammation- regarding expression of pERK1/2 and IL-1beta in the rat trigeminal ganglion. J Headache Pain 17(1):64PubMedPubMedCentralCrossRef Lukacs M, Warfvinge K, Kruse LS, Tajti J, Fulop F, Toldi J et al (2016) KYNA analogue SZR72 modifies CFA-induced dural inflammation- regarding expression of pERK1/2 and IL-1beta in the rat trigeminal ganglion. J Headache Pain 17(1):64PubMedPubMedCentralCrossRef
212.
go back to reference Cernuda-Morollon E, Martinez-Camblor P, Alvarez R, Larrosa D, Ramon C, Pascual J (2015) Increased VIP levels in peripheral blood outside migraine attacks as a potential biomarker of cranial parasympathetic activation in chronic migraine. Cephalalgia. 35(4):310–316PubMedCrossRef Cernuda-Morollon E, Martinez-Camblor P, Alvarez R, Larrosa D, Ramon C, Pascual J (2015) Increased VIP levels in peripheral blood outside migraine attacks as a potential biomarker of cranial parasympathetic activation in chronic migraine. Cephalalgia. 35(4):310–316PubMedCrossRef
213.
go back to reference Riesco N, Cernuda-Morollon E, Pascual J (2017) Neuropeptides as a marker for chronic headache. Curr Pain Headache Rep 21(4):18PubMedCrossRef Riesco N, Cernuda-Morollon E, Pascual J (2017) Neuropeptides as a marker for chronic headache. Curr Pain Headache Rep 21(4):18PubMedCrossRef
214.
go back to reference Cernuda-Morollon E, Larrosa D, Ramon C, Vega J, Martinez-Camblor P, Pascual J (2013) Interictal increase of CGRP levels in peripheral blood as a biomarker for chronic migraine. Neurology. 81(14):1191–1196PubMedCrossRef Cernuda-Morollon E, Larrosa D, Ramon C, Vega J, Martinez-Camblor P, Pascual J (2013) Interictal increase of CGRP levels in peripheral blood as a biomarker for chronic migraine. Neurology. 81(14):1191–1196PubMedCrossRef
215.
go back to reference De Felice M, Ossipov MH, Wang R, Lai J, Chichorro J, Meng I et al (2010) Triptan-induced latent sensitization: a possible basis for medication overuse headache. Ann Neurol 67(3):325–337PubMedPubMedCentral De Felice M, Ossipov MH, Wang R, Lai J, Chichorro J, Meng I et al (2010) Triptan-induced latent sensitization: a possible basis for medication overuse headache. Ann Neurol 67(3):325–337PubMedPubMedCentral
216.
go back to reference McMahon SB, Lewin GR, Wall PD (1993) Central hyperexcitability triggered by noxious inputs. Curr Opin Neurobiol 3(4):602–610PubMedCrossRef McMahon SB, Lewin GR, Wall PD (1993) Central hyperexcitability triggered by noxious inputs. Curr Opin Neurobiol 3(4):602–610PubMedCrossRef
217.
go back to reference Woolf CJ, Doubell TP (1994) The pathophysiology of chronic pain--increased sensitivity to low threshold a beta-fibre inputs. Curr Opin Neurobiol 4(4):525–534PubMedCrossRef Woolf CJ, Doubell TP (1994) The pathophysiology of chronic pain--increased sensitivity to low threshold a beta-fibre inputs. Curr Opin Neurobiol 4(4):525–534PubMedCrossRef
218.
go back to reference Woolf CJ, Salter MW (2000) Neuronal plasticity: increasing the gain in pain. Science. 288(5472):1765–1769PubMedCrossRef Woolf CJ, Salter MW (2000) Neuronal plasticity: increasing the gain in pain. Science. 288(5472):1765–1769PubMedCrossRef
219.
go back to reference Dodick D, Silberstein S (2006) Central sensitization theory of migraine: clinical implications. Headache. 46(Suppl 4):S182–S191PubMedCrossRef Dodick D, Silberstein S (2006) Central sensitization theory of migraine: clinical implications. Headache. 46(Suppl 4):S182–S191PubMedCrossRef
220.
221.
go back to reference Salter MW (2004) Cellular neuroplasticity mechanisms mediating pain persistence. J Orofac Pain 18(4):318–324PubMed Salter MW (2004) Cellular neuroplasticity mechanisms mediating pain persistence. J Orofac Pain 18(4):318–324PubMed
222.
go back to reference Coderre TJ, Katz J, Vaccarino AL, Melzack R (1993) Contribution of central neuroplasticity to pathological pain: review of clinical and experimental evidence. Pain. 52(3):259–285PubMedCrossRef Coderre TJ, Katz J, Vaccarino AL, Melzack R (1993) Contribution of central neuroplasticity to pathological pain: review of clinical and experimental evidence. Pain. 52(3):259–285PubMedCrossRef
223.
go back to reference Woolf CJ, Thompson SW (1991) The induction and maintenance of central sensitization is dependent on N-methyl-D-aspartic acid receptor activation; implications for the treatment of post-injury pain hypersensitivity states. Pain. 44(3):293–299PubMedCrossRef Woolf CJ, Thompson SW (1991) The induction and maintenance of central sensitization is dependent on N-methyl-D-aspartic acid receptor activation; implications for the treatment of post-injury pain hypersensitivity states. Pain. 44(3):293–299PubMedCrossRef
224.
go back to reference Burstein R, Cutrer MF, Yarnitsky D (2000) The development of cutaneous allodynia during a migraine attack clinical evidence for the sequential recruitment of spinal and supraspinal nociceptive neurons in migraine. Brain. 123(Pt 8):1703–1709PubMedCrossRef Burstein R, Cutrer MF, Yarnitsky D (2000) The development of cutaneous allodynia during a migraine attack clinical evidence for the sequential recruitment of spinal and supraspinal nociceptive neurons in migraine. Brain. 123(Pt 8):1703–1709PubMedCrossRef
226.
go back to reference Bartsch T, Goadsby PJ (2003) Increased responses in trigeminocervical nociceptive neurons to cervical input after stimulation of the dura mater. Brain. 126(Pt 8):1801–1813PubMedCrossRef Bartsch T, Goadsby PJ (2003) Increased responses in trigeminocervical nociceptive neurons to cervical input after stimulation of the dura mater. Brain. 126(Pt 8):1801–1813PubMedCrossRef
227.
go back to reference Ebersberger A, Ringkamp M, Reeh PW, Handwerker HO (1997) Recordings from brain stem neurons responding to chemical stimulation of the subarachnoid space. J Neurophysiol 77(6):3122–3133PubMedCrossRef Ebersberger A, Ringkamp M, Reeh PW, Handwerker HO (1997) Recordings from brain stem neurons responding to chemical stimulation of the subarachnoid space. J Neurophysiol 77(6):3122–3133PubMedCrossRef
228.
go back to reference Schepelmann K, Ebersberger A, Pawlak M, Oppmann M, Messlinger K (1999) Response properties of trigeminal brain stem neurons with input from dura mater encephali in the rat. Neuroscience. 90(2):543–554PubMedCrossRef Schepelmann K, Ebersberger A, Pawlak M, Oppmann M, Messlinger K (1999) Response properties of trigeminal brain stem neurons with input from dura mater encephali in the rat. Neuroscience. 90(2):543–554PubMedCrossRef
229.
go back to reference Oshinsky ML, Luo J (2006) Neurochemistry of trigeminal activation in an animal model of migraine. Headache. 46(Suppl 1):S39–S44PubMedCrossRef Oshinsky ML, Luo J (2006) Neurochemistry of trigeminal activation in an animal model of migraine. Headache. 46(Suppl 1):S39–S44PubMedCrossRef
230.
go back to reference Schwedt TJ, Larson-Prior L, Coalson RS, Nolan T, Mar S, Ances BM et al (2014) Allodynia and descending pain modulation in migraine: a resting state functional connectivity analysis. Pain Med 15(1):154–165PubMedCrossRef Schwedt TJ, Larson-Prior L, Coalson RS, Nolan T, Mar S, Ances BM et al (2014) Allodynia and descending pain modulation in migraine: a resting state functional connectivity analysis. Pain Med 15(1):154–165PubMedCrossRef
231.
go back to reference Welch KM, Nagesh V, Aurora SK, Gelman N (2001) Periaqueductal gray matter dysfunction in migraine: cause or the burden of illness? Headache. 41(7):629–637PubMedCrossRef Welch KM, Nagesh V, Aurora SK, Gelman N (2001) Periaqueductal gray matter dysfunction in migraine: cause or the burden of illness? Headache. 41(7):629–637PubMedCrossRef
Metadata
Title
Mechanisms of migraine as a chronic evolutive condition
Authors
Anna P. Andreou
Lars Edvinsson
Publication date
01-12-2019
Publisher
Springer Milan
Published in
The Journal of Headache and Pain / Issue 1/2019
Print ISSN: 1129-2369
Electronic ISSN: 1129-2377
DOI
https://doi.org/10.1186/s10194-019-1066-0

Other articles of this Issue 1/2019

The Journal of Headache and Pain 1/2019 Go to the issue