REVIEW - DOES MEASUREMENT OF REGIONAL CEREBRAL BLOOD-FLOW REFLECT SYNAPTIC ACTIVITY - IMPLICATIONS FOR PET AND FMRI

被引:415
作者
JUEPTNER, M
WEILLER, C
机构
[1] Department of Neurology, University Clinics, Essen
关键词
D O I
10.1006/nimg.1995.1017
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
The energy metabolism of the adult human brain almost completely depends on glucose. The functional coupling of regional cerebral blood flow and local cerebral glucose metabolism has been established in a wide range of experiments using autoradiographic techniques in rats, cats, and monkeys as well as double-tracer techniques in humans. Glucose utilization in turn reflects neuronal activity and more specifically synaptic, mainly presynaptic, activity. The majority of glucose is needed for the maintenance of membrane potentials and restoration of ion gradients. PET as well as fMRI may be used to study changes in blood flow or flow-related phenomena in human subjects in vivo. Both techniques monitor changes of synaptic activity in a population of cells. These changes may be due to excitation or inhibition. More than 85% of cerebral glucose is used by neurons (mainly presynaptic axon terminals), while the remainder may at least partly account for metabolic processes in glial cells. Monitoring of regional cerebral blood flow with PET or fMRI thus mainly reflects neuronal and more specifically (pre-) synaptic activity. © 1995 Academic Press.
引用
收藏
页码:148 / 156
页数:9
相关论文
共 66 条
[1]   GLYCOLYSIS-INDUCED DISCORDANCE BETWEEN GLUCOSE METABOLIC RATES MEASURED WITH RADIOLABELED FLUORODEOXYGLUCOSE AND GLUCOSE [J].
ACKERMANN, RF ;
LEAR, JL .
JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 1989, 9 (06) :774-785
[2]   OXYGEN AND GLUCOSE CONSUMPTION RELATED TO NA+-K+ TRANSPORT IN CANINE BRAIN [J].
ASTRUP, J ;
SORENSEN, PM ;
SORENSEN, HR .
STROKE, 1981, 12 (06) :726-730
[3]  
BARON JC, 1982, J NUCL MED, V23, P391
[4]   REGIONAL CEREBRAL GLUCOSE-METABOLISM COMPARED IN RODENTS AND HUMANS [J].
BLIN, J ;
RAY, CA ;
CHASE, TN ;
PIERCEY, MF .
BRAIN RESEARCH, 1991, 568 (1-2) :215-222
[5]   POSITRON EMISSION TOMOGRAPHIC MEASUREMENTS OF CEREBRAL GLUCOSE-UTILIZATION USING [1-C-11]D-GLUCOSE [J].
BLOMQVIST, G ;
STONEELANDER, S ;
HALLDIN, C ;
ROLAND, PE ;
WIDEN, L ;
LINDQVIST, M ;
SWAHN, CG ;
LANGSTROM, B ;
WIESEL, FA .
JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 1990, 10 (04) :467-483
[6]  
Clarke Donald D., 1994, P645
[7]   LOCALIZATION OF BRAIN-FUNCTION USING MAGNETIC-RESONANCE-IMAGING [J].
COHEN, MS ;
BOOKHEIMER, SY .
TRENDS IN NEUROSCIENCES, 1994, 17 (07) :268-277
[8]   COMPARISON OF RATES OF LOCAL CEREBRAL GLUCOSE-UTILIZATION DETERMINED WITH DEOXY[1-C-14]GLUCOSE AND DEOXY[6-C-14]GLUCOSE [J].
DIENEL, GA ;
CRUZ, NF ;
NAKANISHI, H ;
MELZER, P ;
MOULIS, P ;
SOKOLOFF, L .
JOURNAL OF NEUROCHEMISTRY, 1992, 59 (04) :1430-1436
[9]   THE RELATIONSHIP BETWEEN CNS METABOLISM AND CYTOARCHITECTURE - A REVIEW OF C-14 DEOXYGLUCOSE STUDIES WITH CORRELATION TO CYTOCHROME-OXIDASE HISTOCHEMISTRY [J].
DIROCCO, RJ ;
KAGEYAMA, GH ;
WONGRILEY, MTT .
COMPUTERIZED MEDICAL IMAGING AND GRAPHICS, 1989, 13 (01) :81-92
[10]   CEREBRAL METABOLIC MAPPING AT THE CELLULAR-LEVEL WITH DRY-MOUNT AUTORADIOGRAPHY OF [H-3] 2-DEOXYGLUCOSE [J].
DUNCAN, GE ;
STUMPF, WE ;
PILGRIM, C .
BRAIN RESEARCH, 1987, 401 (01) :43-49