4.6 Article

The relationship between the apparent diffusion coefficient measured by magnetic resonance imaging, anoxic depolarization, and glutamate efflux during experimental cerebral ischemia

Journal

JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM
Volume 20, Issue 1, Pages 28-36

Publisher

SAGE PUBLICATIONS INC
DOI: 10.1097/00004647-200001000-00006

Keywords

stroke; diffusion-weighted imaging; depolarization; glutamate; rat; magnetic resonance imaging

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A reduction in the apparent diffusion coefficient (ADC) of water measured by magnetic resonance imaging (MRI) has been shown to occur early after cerebrovascular occlusion. This change may be a useful indicator of brain tissue adversely affected by inadequate blood supply. The objective of this study was to test the hypothesis that loss of membrane ion homeostasis and depolarization can occur simultaneously with the drop in ADC. Also investigated was whether elevation of extracellular glutamate ([GLU](e)) would occur before ADC changes. High-speed MRI of the trace of the diffusion tensor (15-second time resolution) was combined with simultaneous recording of the extracellular direct current (DC) potential and on-line [GLU](e) from the striatum of the anesthetized rat. After a control period, data were acquired during remote middle cerebral artery occlusion fur 60 minutes, followed by 30 minutes of reperfusion, and cardiac arrest-induced global ischemia. After either focal or global ischemia, the ADC was reduced by 10 to 25% before anoxic depolarization occurred. After either insult, the time for half the maximum change in ADC was significantly shorter than the corresponding DC potential parameter (P < 0.05). The [GLU](e) remained at low levels during the entire period of varying ADC and DC potential and did not peak until much later after either ischemic insult. This study demonstrates that ADC changes can occur before membrane depolarization and that high [GLU](e) has no involvement in the early rapid ADC decrease.

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