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EFFECT OF NITROUS-OXIDE ON CEREBRAL BLOOD-FLOW IN NORMAL HUMANS
被引:67
|作者:
FIELD, LM
DORRANCE, DE
KRZEMINSKA, EK
BARSOUM, LZ
机构:
[1] BROOK GEN HOSP,DEPT ANAESTHESIA,LONDON SE18 4LW,ENGLAND
[2] BROOK GEN HOSP,DEPT NEUROSURG,LONDON SE18 4LW,ENGLAND
关键词:
ANESTHETICS;
GASES;
NITROUS OXIDE;
BRAIN;
CEREBRAL BLOOD FLOW;
MEASUREMENT TECHNIQUES;
TRANSCRANIAL DOPPLER ULTRASOUND;
D O I:
10.1093/bja/70.2.154
中图分类号:
R614 [麻醉学];
学科分类号:
100217 ;
摘要:
We have studied the effect of nitrous oxide on cerebral haemodynamics in 24 healthy male volunteers. Hemispherical cerebral blood flow (CBF) was measured using the xenon-133 inhalation technique, blood flow velocities in the right middle cerebral artery were calculated using transcranial Doppler ultrasound and the pulsatility index (PI)-the inverse of which is theoretically proportional to flow in the vessel under investigation-was derived from analysis of the spectrally analysed velocity pulse wave form obtained from the middle cerebral artery. Each variable was measured with the subject inhaling 100% oxygen (lst baseline), 30% nitrous oxide in oxygen, 100% oxygen (2nd baseline) and 60% nitrous oxide in oxygen. CBF was significantly greater with 30% (0.01 > P > 0.001) and 60% nitrous oxide (P < 0.001) compared with baseline, although the difference between 30% and 60% nitrous oxide was not significant. Changes in 1/PI correlated closely with those in hemispherical CBF. Blood flow velocities increased significantly with 30% (P < 0,001) and 60% nitrous oxide (0.005 > P > 0.001), the difference between 30% and 60% nitrous oxide also being significant (0.005 > P > 0.001). We observed a plateau in the change in CBF caused by nitrous oxide and suggest that this may be explained by activation of intact autoregulative mechanisms in healthy human brain.
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页码:154 / 159
页数:6
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