Endogenous pain modulation after sleep restriction in migraine: a blinded crossover study

Kelman L, Rains JC (2005) Headache and sleep: examination of sleep patterns and complaints in a large clinical sample of migraineurs. Headache 45(7):904–910

Article  PubMed  Google Scholar 

Alstadhaug K, Salvesen R, Bekkelund S (2007) Insomnia and circadian variation of attacks in episodic migraine. Headache 47(8):1184–1188

Article  PubMed  Google Scholar 

Ødegård SS, Sand T, Engstrøm M, Stovner LJ, Zwart JA, Hagen K (2011) The Long-Term Effect of Insomnia on Primary Headaches: A Prospective Population-Based Cohort Study (HUNT-2 and HUNT-3). Headache 51(4):570–580

Article  PubMed  Google Scholar 

Tiseo C, Vacca A, Felbush A, Filimonova T, Gai A, Glazyrina T, Hubalek IA, Marchenko Y, Overeem LH, Piroso S et al (2020) Migraine and sleep disorders: a systematic review. J Headache Pain 21(1):126

Article  PubMed  PubMed Central  Google Scholar 

Finan PH, Goodin BR, Smith MT (2013) The association of sleep and pain: an update and a path forward. J Pain 14(12):1539–1552

Article  PubMed  PubMed Central  Google Scholar 

Mykland MS, Uglem M, Bjork MH, Matre D, Sand T, Omland PM (2023) Effects of insufficient sleep on sensorimotor processing in migraine: A randomised, blinded crossover study of event related beta oscillations. Cephalalgia 43(3):3331024221148398

Article  PubMed  Google Scholar 

Mykland MS, Uglem M, Neverdahl JP, Øie LR, Meisingset TW, Dodick DW, Tronvik E, Engstrøm M, Sand T, Omland PM (2022) Sleep restriction alters cortical inhibition in migraine: A transcranial magnetic stimulation study. Clin Neurophysiol 139:28–42

Article  PubMed  Google Scholar 

Mykland MS, Uglem M, Stovner LJ, Brenner E, Snoen MS, Gravdahl GB, Sand T, Omland PM (2023) Insufficient sleep may alter cortical excitability near the migraine attack: A blinded TMS crossover study. Cephalalgia 43(3):3331024221148391

Article  PubMed  Google Scholar 

Neverdahl JP, Uglem M, Matre D, Hansen JO, Engstrom M, Tronvik E, Stovner LJ, Sand T, Omland PM (2022) Pain thresholds and suprathreshold pain after sleep restriction in migraine - A blinded crossover study. Cephalalgia 42(6):466–480

Article  PubMed  Google Scholar 

Burstein R, Yarnitsky D, Goor-Aryeh I, Ransil BJ, Bajwa ZH (2000) An association between migraine and cutaneous allodynia. Ann Neurol 47(5):614–624

Article  CAS  PubMed  Google Scholar 

Nahman-Averbuch H, Shefi T, Schneider VJ 2nd, Li D, Ding L, King CD, Coghill RC (2018) Quantitative sensory testing in patients with migraine: a systematic review and meta-analysis. Pain 159(7):1202–1223

Article  PubMed  Google Scholar 

Coppola G, Parisi V, Di Renzo A, Pierelli F (2020) Cortical pain processing in migraine. J Neural Transm (Vienna) 127(4):551–566

Article  PubMed  Google Scholar 

Le Bars D, Dickenson AH, Besson JM (1979) Diffuse noxious inhibitory controls (DNIC). I. Effects on dorsal horn convergent neurones in the rat. Pain. 6(3):283–304

Article  PubMed  Google Scholar 

Nir RR, Yarnitsky D (2015) Conditioned pain modulation. Curr Opin Support Palliat Care 9(2):131–137

Article  PubMed  Google Scholar 

Pud D, Granovsky Y, Yarnitsky D (2009) The methodology of experimentally induced diffuse noxious inhibitory control (DNIC)-like effect in humans. Pain. 144(1–2):16–9

Article  PubMed  Google Scholar 

Ramaswamy S, Wodehouse T (2021). Conditioned pain modulation-A comprehensive review. Neurophysiol Clin. 51(3):197-208

Sirucek L, Ganley RP, Zeilhofer HU, Schweinhardt P (2023) Diffuse noxious inhibitory controls and conditioned pain modulation: a shared neurobiology within the descending pain inhibitory system? Pain. 164(3):463–468

Article  CAS  PubMed  Google Scholar 

De Broucker T, Cesaro P, Willer JC, Le Bars D (1990) Diffuse noxious inhibitory controls in man. Involvement of the spinoreticular tract Brain 113(Pt 4):1223–1234

PubMed  Google Scholar 

Roby-Brami A, Bussel B, Willer JC, Le Bars D (1987) An electrophysiological investigation into the pain-relieving effects of heterotopic nociceptive stimuli. Probable involvement of a supraspinal loop. Brain. 110(Pt 6):1497–1508

Article  PubMed  Google Scholar 

Nahman-Averbuch H, Timmers I (2023) Neural mechanisms underlying the conditioned pain modulation response: a narrative review of neuroimaging studies. Pain 164(1):e25–e46

Article  PubMed  Google Scholar 

Kucharczyk MW, Valiente D, Bannister K (2021) Developments in Understanding Diffuse Noxious Inhibitory Controls: Pharmacological Evidence from Pre-Clinical Research. J Pain Res 14:1083–1095

Article  PubMed  PubMed Central  Google Scholar 

Hagelberg N, Martikainen IK, Mansikka H, Hinkka S, Någren K, Hietala J, Scheinin H, Pertovaara A (2002) Dopamine D2 receptor binding in the human brain is associated with the response to painful stimulation and pain modulatory capacity. Pain 99(1–2):273–279

Article  CAS  PubMed  Google Scholar 

Herrero JF, Laird JM, López-García JA (2000) Wind-up of spinal cord neurones and pain sensation: much ado about something? Prog Neurobiol 61(2):169–203

Article  CAS  PubMed  Google Scholar 

Coste J, Voisin DL, Luccarini P, Dallel R (2008) A Role For Wind-Up in Trigeminal Sensory Processing: Intensity Coding of Nociceptive Stimuli in the Rat. Cephalalgia 28(6):631–639

Article  CAS  PubMed  Google Scholar 

Eide PK (2000) Wind-up and the NMDA receptor complex from a clinical perspective. Eur J Pain 4(1):5–15

Article  CAS  PubMed  Google Scholar 

Arendt-Nielsen L, Morlion B, Perrot S, Dahan A, Dickenson A, Kress HG, Wells C, Bouhassira D, Drewes AM (2018) Assessment and manifestation of central sensitisation across different chronic pain conditions. Eur J Pain 22(2):216–241

Article  CAS  PubMed  Google Scholar 

de Tommaso M, Losito L, Difruscolo O, Sardaro M, Libro G, Guido M, Lamberti P, Livrea P (2005) Capsaicin failed in suppressing cortical processing of CO2 laser pain in migraine patients. Neurosci Lett 384(1–2):150–155

Article  PubMed  Google Scholar 

Perrotta A, Serrao M, Sandrini G, Burstein R, Sances G, Rossi P, Bartolo M, Pierelli F, Nappi G (2010) Sensitisation of spinal cord pain processing in medication overuse headache involves supraspinal pain control. Cephalalgia 30(3):272–284

Article  CAS  PubMed  Google Scholar 

Sandrini G, Rossi P, Milanov I, Serrao M, Cecchini AP, Nappi G (2006) Abnormal modulatory influence of diffuse noxious inhibitory controls in migraine and chronic tension-type headache patients. Cephalalgia 26(7):782–789

Article  CAS  PubMed  Google Scholar 

Perrotta A, Serrao M, Tassorelli C, Arce-Leal N, Guaschino E, Sances G, Rossi P, Bartolo M, Pierelli F, Sandrini G et al (2011) Oral nitric-oxide donor glyceryl-trinitrate induces sensitization in spinal cord pain processing in migraineurs: a double-blind, placebo-controlled, cross-over study. Eur J Pain 15(5):482–490

Article  CAS  PubMed  Google Scholar 

Weissman-Fogel I, Sprecher E, Granovsky Y, Yarnitsky D (2003) Repeated noxious stimulation of the skin enhances cutaneous pain perception of migraine patients in-between attacks: clinical evidence for continuous sub-threshold increase in membrane excitability of central trigeminovascular neurons. Pain 104(3):693–700

Article  PubMed  Google Scholar 

de Tommaso M, Difruscolo O, Sardaro M, Libro G, Pecoraro C, Serpino C, Lamberti P, Livrea P (2007) Effects of remote cutaneous pain on trigeminal laser-evoked potentials in migraine patients. J Headache Pain 8(3):167–174

Article  PubMed  PubMed Central  Google Scholar 

Kisler LB, Granovsky Y, Coghill RC, Sprecher E, Manor D, Yarnitsky D, Weissman-Fogel I (2018) Do patients with interictal migraine modulate pain differently from healthy controls? A psychophysical and brain imaging study. Pain 159(12):2667–2677

Article  PubMed 

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