Ischaemic brain oedema

被引:259
作者
Ayata, C [1 ]
Ropper, AH [1 ]
机构
[1] Tufts Univ, Sch Med, St Elizabeths Med Ctr, Serv Neurol, Boston, MA 02135 USA
关键词
D O I
10.1054/jocn.2001.1031
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Ischaemic brain oedema appears to involve two distinct processes, the relative contribution and time course of which depend on the duration and severity of ischaemia, and the presence of reperfusion. The first process involves an increase in tissue Na+ and water content accompanying increased pinocytosis and Na+, K ATPase activity across the endothelium. This is apparent during the early phase of infarction and before any structural damage is evident. This phenomenon is augmented by reperfusion. A second process results from a more indiscriminate and delayed BBB breakdown that is associated with infarction of both the parenchyma and the vasculature itself. Although, tissue Na+ level still seems to be the major osmotic force for oedema formation at this second stage, the extravasation of serum proteases is an additional potentially deleterious factor. The relative importance of protease action is not yet clear, however, degradation of the extracellular matrix conceivably leads to further BBB disruption and softening of the tissue, setting the stage for the most pronounced forms of brain swelling. A number of factors mediate or modulate ischaemic oedema formation, however, most current information comes from experimental models, and clinical data on this microcosmic level is lacking. Clinically significant brain oedema develops in a delayed fashion after large hemispheric strokes and is a cause of substantial mortality. Neurological signs appear to be at least as good as direct ICP measurement and neuroimaging in detecting and gauging the secondary damage produced by stroke oedema. The neuroimaging characteristics of the stroke, specifically the early involvement of greater than half of the MCA territory, are, however, highly predictive of the development of severe oedema over the subsequent hours and days. None of the available medical therapies provide substantial relief from the oedema and raised ICP, or at best, they are temporizing in most cases. Hemicraniectomy appears most promising as a method of avoiding death from brain compression, but the optimum timing and manner of patient selection are currently being investigated. All approaches to massive ischaemic brain swelling are clouded by the potential for survival with poor functional outcome. It is possible to manage blood pressure, serum osmolarity by way of selective fluid administration, and a number of other systemic factors that exaggerate brain oedema. Broad guidelines for treatment of stroke oedema can therefore be given at this time. (C) 2002, Elsevier Science Ltd. All rights reserved.
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页码:113 / 124
页数:12
相关论文
共 236 条
[1]
STRONG ATTENUATION OF ISCHEMIC AND POSTISCHEMIC BRAIN EDEMA IN RATS BY A NOVEL FREE-RADICAL SCAVENGER [J].
ABE, K ;
YUKI, S ;
KOGURE, K .
STROKE, 1988, 19 (04) :480-485
[2]
GUIDELINES FOR THE MANAGEMENT OF PATIENTS WITH ACUTE ISCHEMIC STROKE - A STATEMENT FOR HEALTH-CARE PROFESSIONALS FROM A SPECIAL WRITING GROUP OF THE STROKE-COUNCIL, AMERICAN-HEART-ASSOCIATION [J].
ADAMS, HP ;
BROTT, TG ;
CROWELL, RM ;
FURLAN, AJ ;
GOMEZ, CR ;
GROTTA, J ;
HELGASON, CM ;
MARLER, JR ;
WOOLSON, RF ;
ZIVIN, JA ;
FEINBERG, W ;
MAYBERG, M .
STROKE, 1994, 25 (09) :1901-1914
[3]
EFFECTS OF MANNITOL ON CEREBRAL BLOOD-FLOW, BLOOD-PRESSURE, BLOOD-VISCOSITY, HEMATOCRIT, SODIUM, AND POTASSIUM [J].
ANDREWS, RJ ;
BRINGAS, JR ;
MUTO, RP .
SURGICAL NEUROLOGY, 1993, 39 (03) :218-222
[4]
AROGVIHANSEN B, 1999, COCHRANE DATABASE SY
[5]
P/Q-type Ca2+ channel blocker ω-agatoxin IVA protects against brain injury after focal ischemia in rats [J].
Asakura, K ;
Matsuo, Y ;
Kanemasa, T ;
Ninomiya, M .
BRAIN RESEARCH, 1997, 776 (1-2) :140-145
[6]
Asano T, 1984, Neurol Res, V6, P163
[7]
THE ROLE OF FREE-RADICALS AND EICOSANOIDS IN THE PATHOGENETIC MECHANISM UNDERLYING ISCHEMIC BRAIN EDEMA [J].
ASANO, T ;
KOIDE, T ;
GOTOH, O ;
JOSHITA, H ;
HANAMURA, T ;
SHIGENO, T ;
TAKAKURA, K .
MOLECULAR AND CHEMICAL NEUROPATHOLOGY, 1989, 10 (02) :101-133
[8]
THE EFFECT OF INCREASED BLOOD-PRESSURE ON HEMISPHERIC LACTATE AND WATER-CONTENT DURING ACUTE CEREBRAL-ISCHEMIA IN THE RAT AND GERBIL [J].
ASPEY, BS ;
EHTESHAMI, S ;
HURST, CM ;
MCCOY, AL ;
HARRISON, MJG .
JOURNAL OF NEUROLOGY NEUROSURGERY AND PSYCHIATRY, 1987, 50 (11) :1493-1498
[9]
ASPLUND K, 2000, COCHRANE DATABASE SY
[10]
Ayata C, 1997, J NEUROSCI, V17, P6908