Reduced transit-time sensitivity in noninvasive magnetic resonance imaging of human cerebral blood flow

被引:616
作者
Alsop, DC [1 ]
Detre, JA [1 ]
机构
[1] UNIV PENN,MED CTR,DEPT NEUROL,PHILADELPHIA,PA 19104
关键词
magnetic resonance imaging; arterial transit time; perfusion; functional imaging;
D O I
10.1097/00004647-199611000-00019
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Herein, we present a theoretical framework and experimental methods to more accurately account for transit effects in quantitative human perfusion imaging using endogenous magnetic resonance imaging (MRI) contrast. The theoretical transit time sensitivities of both continuous and pulsed inversion spin tagging experiments are demonstrated. We propose introducing a delay following continuous labeling, and demonstrate theoretically that introduction of a delay dramatically reduces the transit time sensitivity of perfusion imaging. The effects of magnetization transfer saturation on this modified continuous labeling experiment are also derived, and the assumption that the perfusion signal resides entirely within tissue rather than the arterial microvasculature is examined. We present results demonstrating the implementation of the continuous tagging experiment with delay on an echoplanar scanner for measuring cerebral blood now (CBF) in normal volunteers. By varying the delay, we estimate transit times in the arterial system, values that are necessary for assessing the accuracy of our quantification. The effect of uncertainties in the transit time from the tagging plane to the arterial microvasculature and the transit rime to the tissue itself on the accuracy of perfusion quantification is discussed and found to be small in gray matter but still potentially significant in white matter. A novel method far measuring T-1, which is fast, insensitive to contamination by cerebrospinal fluid, and compatible with the application of magnetization transfer saturation, is also presented. The methods are combined to produce quantitative maps of resting and hypercarbic CBF.
引用
收藏
页码:1236 / 1249
页数:14
相关论文
共 36 条
[1]   TRANSIENT DECAY OF LONGITUDINAL MAGNETIZATION IN HETEROGENEOUS SPIN SYSTEMS UNDER SELECTIVE SATURATION .3. SOLUTION BY PROJECTION OPERATORS [J].
ADLER, RS ;
YEUNG, HN .
JOURNAL OF MAGNETIC RESONANCE SERIES A, 1993, 104 (03) :321-330
[2]   FUNCTIONAL CEREBRAL IMAGING BY SUSCEPTIBILITY-CONTRAST NMR [J].
BELLIVEAU, JW ;
ROSEN, BR ;
KANTOR, HL ;
RZEDZIAN, RR ;
KENNEDY, DN ;
MCKINSTRY, RC ;
VEVEA, JM ;
COHEN, MS ;
PYKETT, IL ;
BRADY, TJ .
MAGNETIC RESONANCE IN MEDICINE, 1990, 14 (03) :538-546
[3]  
BOTTOMLEY PA, 1984, MED PHYS, V11, P425, DOI 10.1118/1.595535
[4]   MAGNETIC-RELAXATION IN BLOOD AND BLOOD-CLOTS [J].
BRYANT, RG ;
MARILL, K ;
BLACKMORE, C ;
FRANCIS, C .
MAGNETIC RESONANCE IN MEDICINE, 1990, 13 (01) :133-144
[5]  
BUXTON RB, 1995, SOC MAGN RES 3 M BER, P132
[6]   INCORPORATION OF MAGNETIZATION TRANSFER INTO THE FORMALISM FOR ROTATING-FRAME SPIN-LATTICE PROTON NMR RELAXATION IN THE PRESENCE OF AN OFF-RESONANCE-IRRADIATION FIELD [J].
CAINES, GH ;
SCHLEICH, T ;
RYDZEWSKI, JM .
JOURNAL OF MAGNETIC RESONANCE, 1991, 95 (03) :558-566
[7]   PERFUSION IMAGING [J].
DETRE, JA ;
LEIGH, JS ;
WILLIAMS, DS ;
KORETSKY, AP .
MAGNETIC RESONANCE IN MEDICINE, 1992, 23 (01) :37-45
[8]   PROJECTION ANGIOGRAMS OF BLOOD LABELED BY ADIABATIC FAST PASSAGE [J].
DIXON, WT ;
DU, LN ;
FAUL, DD ;
GADO, M ;
ROSSNICK, S .
MAGNETIC RESONANCE IN MEDICINE, 1986, 3 (03) :454-462
[9]   QUALITATIVE MAPPING OF CEREBRAL BLOOD-FLOW AND FUNCTIONAL LOCALIZATION WITH ECHO-PLANAR MR-IMAGING AND SIGNAL TARGETING WITH ALTERNATING RADIO-FREQUENCY [J].
EDELMAN, RR ;
SIEWERT, B ;
DARBY, DG ;
THANGARAJ, V ;
NOBRE, AC ;
MESULAM, MM ;
WARACH, S .
RADIOLOGY, 1994, 192 (02) :513-520
[10]   NUCLEAR MAGNETIC CROSS-RELAXATION SPECTROSCOPY [J].
GRAD, J ;
BRYANT, RG .
JOURNAL OF MAGNETIC RESONANCE, 1990, 90 (01) :1-8