Dynamic Neurovascular Coupling and Uncoupling during Ictal Onset, Propagation, and Termination Revealed by Simultaneous In Vivo Optical Imaging of Neural Activity and Local Blood Volume

被引:69
作者
Ma, Hongtao [1 ]
Zhao, Mingrui [1 ]
Schwartz, Theodore H. [1 ]
机构
[1] Weill Cornell Med Coll, Dept Neurol Surg, New York, NY 10065 USA
关键词
cerebral blood volume; epilepsy; neurovascular coupling; optical imaging; voltage-sensitive dye; VOLTAGE-SENSITIVE DYES; INTERICTAL EPILEPTIFORM EVENTS; TEMPORAL-LOBE EPILEPSY; RAT CEREBRAL-CORTEX; NEOCORTICAL SLICE; SEIZURE-ONSET; NEURONAL-ACTIVITY; HEMODYNAMIC-RESPONSE; WHISKER STIMULATION; CORTICAL DYNAMICS;
D O I
10.1093/cercor/bhs079
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Traditional models of ictal propagation involve the concept of an initiation site and a progressive outward march of activation. The process of neurovascular coupling, whereby the brain supplies oxygenated blood to metabolically active neurons presumably results in a similar outward cascade of hyperemia. However, ictal neurovascular coupling has never been assessed in vivo using simultaneous measurements of membrane potential change and hyperemia with wide spatial sampling. In an acute rat ictal model, using simultaneous intrinsic optical signal (IOS) and voltage-sensitive dye (VSD) imaging of cerebral blood volume and membrane potential changes, we demonstrate that seizures consist of multiple dynamic multidirectional waves of membrane potential change with variable onset sites that spread through a widespread network. Local blood volume evolves on a much slower spatiotemporal scale. At seizure onset, the VSD waves extend beyond the IOS signal. During evolution, spatial correlation with hemodynamic signal only exists briefly at the maximal spread of the VSD signal. At termination, the IOS signal extends spatially and temporally beyond the VSD waves. Hence, vascular reactivity evolves in a separate but parallel fashion to membrane potential changes resulting in a mechanism of neurovascular coupling and uncoupling, which is as dynamic as the seizure itself.
引用
收藏
页码:885 / 899
页数:15
相关论文
共 97 条
[1]   EPILEPTIFORM ACTIVITY IN THE GUINEA-PIG NEOCORTICAL SLICE SPREADS PREFERENTIALLY ALONG SUPRAGRANULAR LAYERS - RECORDINGS WITH VOLTAGE-SENSITIVE DYES [J].
ALBOWITZ, B ;
KUHNT, U .
EUROPEAN JOURNAL OF NEUROSCIENCE, 1995, 7 (06) :1273-1284
[2]  
ALBOWITZ B, 1990, EXP BRAIN RES, V81, P241
[3]   SPREAD OF EPILEPTIFORM POTENTIALS IN THE NEOCORTICAL SLICE - RECORDINGS WITH VOLTAGE-SENSITIVE DYES [J].
ALBOWITZ, B ;
KUHNT, U .
BRAIN RESEARCH, 1993, 631 (02) :329-333
[4]   Effect of injection time on postictal SPET perfusion changes in medically refractory epilepsy [J].
Avery, RA ;
Spencer, SS ;
Spanaki, MV ;
Corsi, M ;
Seibyl, JP ;
Zubal, IG .
EUROPEAN JOURNAL OF NUCLEAR MEDICINE, 1999, 26 (08) :830-836
[5]   Intrinsic optical signal imaging of neocortical seizures: the 'epileptic dip' [J].
Bahar, S ;
Suh, M ;
Zhao, MR ;
Schwartz, TH .
NEUROREPORT, 2006, 17 (05) :499-503
[6]  
Bancaud J, 1973, Rev Otoneuroophtalmol, V45, P315
[7]   LAMINAR PATTERN OF SYNAPTIC INHIBITION DURING CONVULSIVE ACTIVITY-INDUCED BY 4-AMINOPYRIDINE IN NEOCORTICAL SLICES [J].
BARKAI, E ;
FRIEDMAN, A ;
GROSSMAN, Y ;
GUTNICK, MJ .
JOURNAL OF NEUROPHYSIOLOGY, 1995, 73 (04) :1462-1467
[8]   Seizures of temporal lobe epilepsy: identification of subtypes by coherence analysis using stereo-electro-encephalography [J].
Bartolomei, F ;
Wendling, F ;
Vignal, JP ;
Kochen, S ;
Bellanger, JJ ;
Badier, JM ;
Le Bouquin-Jeannes, R ;
Chauvel, P .
CLINICAL NEUROPHYSIOLOGY, 1999, 110 (10) :1741-1754
[9]   Fine detail of neurovascular coupling revealed by spatiotemporal analysis of the hemodynamic response to single whisker stimulation in rat barrel cortex [J].
Berwick, J. ;
Johnston, D. ;
Jones, M. ;
Martindale, J. ;
Martin, C. ;
Kennerley, A. J. ;
Redgrave, P. ;
Mayhew, J. E. W. .
JOURNAL OF NEUROPHYSIOLOGY, 2008, 99 (02) :787-798
[10]   Frontal lobe seizure propagation: Scalp and subdural EEG studies [J].
Blume, WT ;
Ociepa, D ;
Kander, V .
EPILEPSIA, 2001, 42 (04) :491-503