MAGNETIC-RESONANCE-IMAGING OF PERFUSION USING SPIN INVERSION OF ARTERIAL WATER

被引:1158
作者
WILLIAMS, DS
DETRE, JA
LEIGH, JS
KORETSKY, AP
机构
[1] CARNEGIE MELLON UNIV,DEPT BIOL SCI,PITTSBURGH,PA 15213
[2] UNIV PENN,SCH MED,DEPT RADIOL,METAB MAGNET RESONANCE RES CTR,PHILADELPHIA,PA 19104
[3] UNIV PENN,SCH MED,DEPT NEUROL,PHILADELPHIA,PA 19104
关键词
CEREBRAL BLOOD FLOW; ADIABATIC FAST PASSAGE; HYPERCARBIA; RAT BRAIN; COLD INJURY;
D O I
10.1073/pnas.89.1.212
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
A technique has been developed for proton magnetic resonance imaging (MRI) of perfusion, using water as a freely diffusable tracer, and its application to the measurement of cerebral blood flow (CBF) in the rat is demonstrated. The method involves labeling the inflowing water proton spins in the arterial blood by inverting them continuously at the neck region and observing the effects of inversion on the intensity of brain MRI. Solution to the Bloch equations, modified to include the effects of flow, allows regional perfusion rates to be measured from an image with spin inversion, a control image, and a T1 image. Continuous spin inversion labeling the arterial blood water was accomplished, using principles of adiabatic fast passage by applying continuous-wave radio-frequency power in the presence of a magnetic field gradient in the direction of arterial flow. In the detection slice used to measure perfusion, whole brain CBF averaged 1.39 +/- 0.19 ml.g-1. min-1 (mean +/- SEM, n = 5). The technique's sensitivity to changes in CBF was measured by using graded hypercarbia, a condition that is known to increase brain perfusion. CBF vs. pCO2 data yield a best-fit straight line described by CBF (ml.g-1.min-1) = 0.052pCO2 (mm Hg) - 0.173, in excellent agreement with values in the literature. Finally, perfusion images of a freeze-injured rat brain have been obtained, demonstrating the technique's ability to detect regional abnormalities in perfusion.
引用
收藏
页码:212 / 216
页数:5
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