[1]
Leão, A. Spreading depression of activity in the cerebral cortex. J. Neurophysiol., 1944, 7(6), 359-390.
[3]
Dreier, J. P.; Fabricius, M.; Ayata, C.; Sakowitz, O. W.; William Shuttleworth, C.; Dohmen, C.; Graf, R.; Vajkoczy, P.; Helbok, R.; Suzuki, M.; Schiefecker, A.J.; Major, S.; Winkler, M. K.; Kang, E.-J.; Milakara, D.; Oliveira-Ferreira, A.I.; Reiffurth, C.; Revankar, G. S.; Sugimoto, K.; Dengler, N. F.; Hecht, N.; Foreman, B.; Feyen, B.; Kondziella, D.; Friberg, C. K.; Piilgaard, H.; Rosenthal, E. S.; Westover, M. B.; Maslarova, A.; Santos, E.; Hertle, D.; Sánchez-Porras, R.; Jewell, S. L.; Balança, B.; Platz, J.; Hinzman, J. M.; Lückl, J.; Schoknecht, K.; Schöll, M.; Drenckhahn, C.; Feuerstein, D.; Eriksen, N.; Horst, V.; Bretz, J.S.; Jahnke, P.; Scheel, M.; Bohner, G.; Rostrup, E.; Pakkenberg, B.; Heinemann, U.; Claassen, J.; Carlson, A. P.; Kowoll, C.M.; Lublinsky, S.; Chassidim, Y.; Shelef, I.; Friedman, A.; Brinker, G.; Reiner, M.; Kirov, S. A.; Andrew, R. D.; Farkas, E.; Güresir, E.; Vatter, H.; Chung, L. S.; Brennan, K.; Lieutaud, T.; Marinesco, S.; Maas, A. I.; Sahuquillo, J.; Dahlem, M. A.; Richter, F.; Herreras, O.; Boutelle, M. G.; Okonkwo, D. O.; Bullock, M. R.; Witte, O. W.; Martus, P.; van den Maagdenberg, A. M.; Ferrari, M. D.; Dijkhuizen, R. M.; Shutter, L. A.; Andaluz, N.; Schulte, A. P.; MacVicar, B.; Watanabe, T.; Woitzik, J.; Lauritzen, M.; Strong, A. J.; Hartings, J. A. Recording, analysis, and
interpretation of spreading depolarizations in neurointensive care:
Review and recommendations of the COSBID research group.
J.
Cereb. Blood Flow Metab.,2016, 0271678X16654496
[
http://dx.doi.org/10.1177/0271678x16654496]
[6]
Milner, P.M. Note on a possible correspondence between the scotomas of migraine and spreading depression of Leão. Electroencephalogr. Clin. Neurophysiol., 1958, 10(4), 705.
[7]
Hadjikhani, N.; Sanchez, M.; Wu, O.; Schwartz, D.; Bakker, D.; Fischl, B.; Kwong, K.K.; Cutrer, F.M.; Rosen, B.R.; Tootell, R.B.H.; Sorensen, A.G.; Moskowitz, M.A. Mechanisms of migraine aura revealed by functional MRI in human visual cortex. Proc. Natl. Acad. Sci. USA, 2001, 98(8), 4687-4692.
[17]
Grafstein, B. Mechanism of spreading spreading depression. J. Neurophysiol., 1956, 19(2), 154-171.
[22]
Kow, L.M.; van Harreveld, A. Ion and water movements in isolated chicken retinas during spreading depression. Neurobiology, 1972, 2(2), 61-69.
[33]
Fabricius, M.; Akgoren, N.; Lauritzen, M. Arginine-nitric oxide pathway and cerebrovascular regulation in cortical spreading depression. Am. J. Physiol., 1995, 269(1 Pt 2), H23-H29.
[39]
Shinohara, M.; Dollinger, B.; Brown, G.; Rapoport, S.; Sokoloff, L. Cerebral glucose utilization: local changes during and after
recovery from spreading cortical depression. Science (80-.), 1979,
203(4376), 188-190.
[40]
LaManna, J.C.; Rosenthal, M. Effect of ouabain and phenobarbital on oxidative metabolic activity associated with spreading cortical depression in cats. Brain Res., 1975, 88(1), 145-149.
[41]
Kislin, M.; Sword, J.; Fomitcheva, I.V.; Croom, D.; Pryazhnikov, E.; Lihavainen, E.; Toptunov, D.; Rauvala, H.; Ribeiro, A.S.; Khiroug, L.; Kirov, S.A. Reversible disruption of neuronal mitochondria by ischemic and traumatic injury revealed by quantitative two-photon imaging in the neocortex of anesthetized mice., J. Neurosci.2017, 37(2), 333-348. http://dx.doi.org/10.1523/jneurosci.
1510-16.2017.
[48]
Ayata, C.; Shin, H. K.; Salomone, S.; Ozdemir-Gursoy, Y.; Boas, D.A.; Dunn, A.K.; Moskowitz, M.A. Pronounced hypoperfusion
during spreading depression in mouse cortex. J. Cereb. Blood Flow
Metab.,2004, 24(10), 1172-1182 http://dx.doi.org/10.1097/01.
wcb.0000137057.92786.f3.
[49]
World Health Organization. Neurological disorders: a public health
approach. Neurol. Disord. Public Heal. Challenges,2006, 41-176.
http://dx.doi.org/10.1001/archneurol.2007.19.
[50]
Lauritzen, M. Cortical spreading depression in migraine. Cephalalgia, 2001, 21(7), 757-760.
[51]
Largo, C.; Ibarz, J.M.; Herreras, O. Effects of the gliotoxin fluorocitrate on spreading depression and glial membrane potential in rat brain in situ. J. Neurophysiol., 1997, 78(1), 295-307.
[52]
Moskowitz, M.A.; Reinhard, J.F.; Romero, J.; Melamed, E.; Pettibone, D.J. Neurotransmitters and the fifth cranial nerve: is there a relation to the headache phase of migraine? Lancet (London, England), 1979, 2(8148), 883-885.
[58]
Hansen, J.M. Familial hemiplegic migraine. Dan. Med. Bull., 2010, 57(9), B4183.
[64]
Sacco, S.; Ornello, R.; Ripa, P.; Tiseo, C.; Degan, D.; Pistoia, F.; Carolei, A. Migraine and risk of ischaemic heart disease: A systematic review and meta-analysis of observational studies., Eur. J. Neurol.,2015, 22(6), 1001-1011. http://dx.doi.org/10.1111/ene. 12701.
[66]
Branston, N.M.; Strong, A.J.; Symon, L. Extracellular potassium activity, evoked potential and tissue blood flow., Relationships during progressive ischaemia in baboon cerebral cortex. J. Neurol. Sci.,1977, 32(3), 305-321. http://dx.doi.org/10.1016/0022-510x (77)90014-4.
[70]
Astrup, J.; Siesjö, B.K.; Symon, L. Thresholds in cerebral ischemia - the ischemic penumbra. Stroke, 1981, 12(6), 723-725.
[71]
Hossmann, K.A. Periinfarct depolarizations. Cerebrovasc. Brain Metab. Rev., 1996, 8(3), 195-208.
[72]
Mies, G.; Iijima, T.; Hossmann, K.A. Correlation between peri-infarct DC shifts and ischaemic neuronal damage in rat. Neuroreport, 1993, 4(6), 709-711.
[75]
Takano, K.; Latour, L.L.; Formato, J.E.; Carano, R. A.D.; Helmer, K.G.; Hasegawa, Y.; Sotak, C.H.; Fisher, M. The role of spreading depression in focal ischemia evaluated bv dffusion mapping., Ann. Neurol.,1996, 39(3), 308-318. http://dx.doi.org/10.1002/ana.
410390307.
[88]
Fonarow, G.C.; Reeves, M.J.; Zhao, X.; Olson, D.M.; Smith, E.E.; Saver, J.L.; Schwamm, L.H. Age-related differences in characteristics, Performance measures, treatment trends, and outcomes in patients eith ischemic stroke. Circulation, 2010, 121(7), 879-891.
[90]
Ay, H.; Arsava, E.M.; Koroshetz, W.J.; Sorensen, A.G. Middle cerebral artery infarcts encompassing the insula are more prone to growth. Stroke, 2008, 39(2), 373-378.
[98]
Dorsch, N.W.; King, M.T. A review of cerebral vasospasm in aneurysmal subarachnoid haemorrhage Part I: Incidence and effects. J. Clin. Neurosci., 1994, 1(1), 19-26.
[100]
Feelisch, M.; Noack, E.A. Correlation between nitric oxide formation during degradation of organic nitrates and activation of guanylate cyclase. Eur. J. Pharmacol., 1987, 139(1), 19-30.
[101]
Shiga, T.; Hwang, K.J.; Tyuma, I. Electron paramagnetic resonance studies of nitric oxide hemoglobin derivatives. I. Human hemoglobin subunits. Biochemistry, 1969, 8(1), 378-383.
[102]
Rein, H.; Ristau, O.; Scheler, W. On the influence of allosteric effectors on the electron paramagnetic spectrum of nitric oxide hemoglobin. FEBS Lett., 1972, 24(1), 24-26.
[103]
Henry, Y.; Banerjee, R. Electron paramagnetic studies of nitric oxide haemoglobin derivatives: isolated subunits and nitric oxide hybrids. J. Mol. Biol., 1973, 73(4), 469-482.
[104]
Perutz, M.F.; Kilmartin, J.V.; Nagai, K.; Szabo, A.; Simon, S.R. Influence of globin structures on the state of the heme. Ferrous low spin derivatives. Biochemistry, 1976, 15(2), 378-387.
[106]
Dreier, J.P.; Petzold, G.; Tille, K.; Lindauer, U.; Arnold, G.; Heinemann, U.; Einhäupl, K.M.; Dirnagl, U. Ischaemia triggered by spreading neuronal activation is inhibited by vasodilators in rats. J. Physiol., 2001, 531(Pt 2), 515-526.
[110]
Oka, F.; Hoffmann, U.; Lee, J.H.; Shin, H.K.; Chung, D.Y.; Yuzawa, I.; Chen, S.-P.; Atalay, Y. B.; Nozari, A.; Hopson, K.P.; Qin, T.; Ayata, C. Requisite ischemia for spreading depolarization occurrence after subarachnoid hemorrhage in rodents., J. Cereb.
Blood Flow Metab.,2016, 37(5), 1829-184. 00271678X16659303
http://dx.doi.org/10.1177/0271678x16659303.
[111]
Hinzman, J.M.; Andaluz, N.; Shutter, L.A.; Okonkwo, D.O.; Pahl, C.; Strong, A.J.; Dreier, J.P.; Hartings, J.A. Inverse neurovascular coupling to cortical spreading depolarizations in severe brain trauma., Brain, 2014, 137(11), 2960-2972. http://dx.doi.org/10.
1093/brain/awu241.
[113]
Sakowitz, O.W.W.; Santos, E.; Nagel, A.; Krajewski, K.L.L.; Hertle, D.N.N.; Vajkoczy, P.; Dreier, J.P.P.; Unterberg, A.W.W.; Sarrafzadeh, A.S.S. Clusters of spreading depolarizations are associated with disturbed cerebral metabolism in patients with aneurysmal subarachnoid hemorrhage. Stroke, 2012, 44(1), 220-223.
[116]
Strong, A.J.; Hartings, J. a; Dreier, J. P. Cortical spreading depression:
an adverse but treatable factor in intensive care? Curr. Opin.
Crit. Care,2007, 13(2), 126-133 http://dx.doi.org/10.1097/mcc.
0b013e32807faffb.
[117]
Mayevsky, A.; Doron, A.; Manor, T.; Meilin, S.; Zarchin, N.; Ouaknine, G.E. Cortical spreading depression recorded from the human brain using a multiparametric monitoring system. Brain Res., 1996, 740(1-2), 268-274.
[120]
Vespa, P. M.; McArthur, D.; O’Phelan, K.; Glenn, T.; Etchepare, M.; Kelly, D.; Bergsneider, M.; Martin, N. A.; Hovda, D. A. Persistently low extracellular glucose correlates with poor outcome 6 months after human traumatic brain injury despite a lack of increased lactate: a microdialysis study., J. Cereb. Blood Flow Metab,.2003, 23(7), 865-877. http://dx.doi.org/10.1097/01.wcb.0000076701.
45782.ef.
[123]
Ozawa, Y.; Nakamura, T.; Sunami, K.; Kubota, M.; Ito, C.; Murai, H.; Yamaura, A.; Makino, H. Study of regional cerebral blood flow in experimental head injury: changes following cerebral contusion and during spreading depression. Neurol. Med. Chir. (Tokyo), 1991, 31(11), 685-690.
[124]
Nilsson, P.; Hillered, L.; Olsson, Y.; Sheardown, M. J.; Hansen, A. J. Regional changes in interstitial K+ and Ca2+ levels following
cortical compression contusion trauma in rats. J. Cereb. Blood
Flow Metab.,1993, 13(2), 183-192. http://dx.doi.org/10.1038/jcbfm.
1993.22.
[126]
Hernándéz-Cáceres, J.; Macias-González, R.; Brožek, G.; Bureš, J. Systemic ketamine blocks cortical spreading depression but does not delay the onset of terminal anoxic depolarization in rats., 1987,
437 (2), 360-4.
[127]
Sánchez-Porras, R.; Santos, E.; Schöll, M.; Kunzmann, K.; Stock, C.; Silos, H.; Unterberg, A. W.W.; Sakowitz, O. W.W. Ketamine modulation of the haemodynamic response to spreading depolarization in the gyrencephalic swine brain., J. Cereb. Blood Flow
Metab.,2017, 37(5), 1720-1734. http://dx.doi.org/10.1177/0271678
x16646586.
[131]
Patel, P. M.; Drummond, J.C.; Cole, D.J. lsoflurane and Pentobarbital
reduce the frequency of transient ischemic depolarizations
during focal ischemia in rats. Anesth. Analg., 1998, 86(86), 896-
908, 773-780. http://dx.doi.org/10.1213/00000539-199804000-
00018.
[134]
Ayata, C.; Jin, H.; Kudo, C.; Dalkara, T.; Moskowitz, M. A. Suppression of cortical spreading depression in migraine prophylaxis., Ann. Neurol., 2006, 59(4), 652-661. http://dx.doi.org/10.1002/ana.
20778.
[135]
Hauge, A.W.; Asghar, M.S.; Schytz, H.W.; Christensen, K.; Olesen, J. Effects of tonabersat on migraine with aura: a randomised, double-blind, placebo-controlled crossover study., Lancet, Neurol.2009, 8(8), 718-723. http://dx.doi.org/10.1016/s1474-4422(09)
70135-8.
[136]
Cain, S.M.; Bohnet, B.; LeDue, J.; Yung, A.C.; Garcia, E.; Tyson, J. R.; Alles, S.R.A.; Han, H.; van den Maagdenberg, A.M.J.M.; Kozlowski, P.; MacVicar, B.A.; Snutch, T.P. In vivo imaging reveals
that pregabalin inhibits cortical spreading depression and
propagation to subcortical brain structures. Proc. Natl. Acad.
Sci., 2017, 114(9), 201614447. http://dx.doi.org/10.1073/pnas.
1614447114.
[140]
Strong, A.J.; Smith, S.E.; Whittington, D.J.; Meldrum, B.S.; Parsons, A.A.; Krupinski, J.; Hunter, A.J.; Patel, S.; Robertson, C. Factors influencing the frequency of fluorescence transients as markers of peri-infarct depolarizations in focal cerebral ischemia., Stroke, 2000, 31(1), 214-222. http://dx.doi.org/10.1161/01.str.31.1.
214.
[141]
Strong, A.J.; Boutelle, M.G.; Vespa, P. M.; Bullock, M.R.; Bhatia, R.; Hashemi, P. Treatment of critical care patients with substantial acute ischemic or traumatic brain injury. Crit. Care Med.,2005,
33(9), 2147-9. author reply 2149.
[142]
Krivanek, J. Some metabolic changes accompanying Leao’s spreading cortical depression in the rat. J. Neurochem., 1961, 6, 183-189.
[145]
Krivanek, J. Concerning the dynamics of the metabolic changes accompanying cortical spreading depression. Physiol. Bohemoslov., 1962, 11, 383-391.
[147]
Silver, I.A.; Erecińska, M. Extracellular glucose concentration in mammalian brain: continuous monitoring of changes during increased neuronal activity and upon limitation in oxygen supply in normo-, hypo-, and hyperglycemic animals. J. Neurosci., 1994, 14(8), 5068-5076.
[148]
Csiba, L.; Paschen, W.; Mies, G. Regional changes in tissue pH and glucose content during cortical spreading depression in rat brain. Brain Res., 1985, 336(1), 167-170.
[151]
Schiefecker, A.J.; Kofler, M.; Gaasch, M.; Beer, R.; Unterberger, I.; Pfausler, B.; Broessner, G.; Lackner, P.; Rhomberg, P.; Gizewski, E.; Hackl, W. O.; Mulino, M.; Ortler, M.; Thome, C.; Schmutzhard, E.; Helbok, R. Brain temperature but not core temperature increases during spreading depolarizations in patients with spontaneous intracerebral hemorrhage., J. Cereb. Blood Flow
Metab.,2017, 38(3), 549-558. http://dx.doi.org/10.1177/0271678
x17703940.
[161]
Khalil, A. A.; Ostwaldt, A.-C.; Nierhaus, T.; Ganeshan, R.; Audebert, H. J.; Villringer, K.; Villringer, A.; Fiebach, J. B. Relationship between changes in the temporal dynamics of the blood-oxygen-level-dependent signal and hypoperfusion in acute ischemic stroke., Stroke, 2017, 48(4), 925-931. http://dx.doi.org/10.1161/strokeaha.
116.015566.
[163]
Nakase, T.; Yoshida, Y.; Nagata, K. Amplified expression of uncoupling proteins in human brain ischemic lesions. Neuropathology, 2007, 27(5), 442-447.
[167]
Laffey, J.G. Protective effects of acidosis. Anaesthesia, 2001, 56(10), 1013-1014.
[169]
Simon, R.P.; Niro, M.; Gwinn, R. Brain acidosis induced by hypercarbic ventilation attenuates focal ischemic injury. J. Pharmacol. Exp. Ther., 1993, 267(3), 1428-1431.
[170]
Swenson, E. R. Therapeutic hypercapnic acidosis., Am. J. Respir.
Crit. Care Med.,2004, 169(1), 8-9. http://dx.doi.org/10.1164/rccm.
2310008.
[171]
Kawahara, N.; Croll, S.D.D.; Wiegand, S.J.J.; Klatzo, I. Cortical spreading depression induces long-term alterations of BDNF levels in cortex and hippocampus distinct from lesion effects: implications for ischemic tolerance. Neurosci. Res., 1997, 29(1), 37-47.
[174]
Kawahara, N.; Ruetzler, C.A.A.; Klatzo, I. Protective effect of spreading depression against neuronal damage following cardiac arrest cerebral ischaemia. Neurol. Res., 1995, 17(1), 9-16.
[175]
Taga, K.; Patel, P.M.M.; Drummond, J.C.C.; Cole, D.J.J.; Kelly, P.J.J. Transient neuronal depolarization induces tolerance to subsequent forebrain ischemia in rats. Anesthesiology, 1997, 87(4), 918-925.
[176]
Shpargel, K.B.B.; Jalabi, W.; Jin, Y.; Dadabayev, A.; Penn, M.S.S.; Trapp, B.D.D. Preconditioning paradigms and pathways in the brain. Cleve. Clin. J. Med., 2008, 75(Suppl. 2), S77-S82.
[179]
Douen, A. G.G.; Akiyama, K.; Hogan, M. J.J.; Wang, F.; Dong, L.; Chow, A.K.K.; Hakim, A. Preconditioning with cortical spreading depression decreases intraischemic cerebral glutamate levels and Down-regulates excitatory amino acid transporters EAAT1 and EAAT2 from rat cerebal cortex plasma membranes., J. Neurochem.,2002, 75(2), 812-818. http://dx.doi.org/10.1046/j.1471-4159.2000.
0750812.x.
[182]
Urbach, A.; Redecker, C.; Witte, O.W.W. Induction of neurogenesis in the adult dentate gyrus by cortical spreading depression. Stroke, 2008, 39(11)