Spoiling of transverse magnetization in gradient-echo (GRE) imaging during the approach to steady state

被引:50
作者
Epstein, FH
Mugler, JP
Brookeman, JR
机构
[1] UNIV VIRGINIA, HLTH SCI CTR, DEPT RADIOL, CHARLOTTESVILLE, VA 22908 USA
[2] UNIV VIRGINIA, HLTH SCI CTR, DEPT BIOMED ENGN, CHARLOTTESVILLE, VA 22908 USA
关键词
rapid imaging; computer simulations; pulse sequences;
D O I
10.1002/mrm.1910350216
中图分类号
R8 [特种医学]; R445 [影像诊断学];
学科分类号
1002 ; 100207 ; 1009 ;
摘要
The signal evolution behaviors and corresponding image appearances for different methods of spoiling or refocusing the transverse magnetization in short TR gradient-echo imaging during the approach to steady state were investigated experimentally and using computer simulations based on the Bloch equations. Specifically, ideally spoiled, gradient-spoiled, gradient-refocused, and RF-spoiled pulse sequence configurations were studied. This study showed that, for the gradient-spoiled configuration, the signal evolution is position and phase-encoding order-dependent and, under typical imaging conditions, can deviate substantially from the ideally spoiled signal evolution at some spatial positions, resulting in intensity banding image artifacts. For the gradient-refocused configuration, the signal evolution oscillates toward the steady state and, generally, does not closely approximate that of ideal spoiling, resulting in different image contrast or image blurring. Using RF spoiling, the signal evolution closely approximates the ideally spoiled case for flip angles less than approximately 20 degrees and T-2 values of less than approximately 200 ms and results in relatively artifact-free images. Also, this study showed that, for RF spoiling, an RF-pulse phase-difference increment other than 117 degrees, such as 84 degrees, may be optimal for gradient-echo imaging during the approach to steady state.
引用
收藏
页码:237 / 245
页数:9
相关论文
共 31 条
[21]   SHAPING THE SIGNAL RESPONSE DURING THE APPROACH TO STEADY-STATE IN 3-DIMENSIONAL MAGNETIZATION-PREPARED RAPID GRADIENT-ECHO IMAGING USING VARIABLE FLIP ANGLES [J].
MUGLER, JP ;
EPSTEIN, FH ;
BROOKEMAN, JR .
MAGNETIC RESONANCE IN MEDICINE, 1992, 28 (02) :165-185
[22]   TAG CONTRAST IN BREATH-HOLD CINE CARDIAC MRI [J].
REEDER, SB ;
MCVEIGH, ER .
MAGNETIC RESONANCE IN MEDICINE, 1994, 31 (05) :521-525
[23]   OPTIMIZATION OF 3-DIMENSIONAL T1-WEIGHTED GRADIENT-ECHO IMAGING OF THE CERVICAL-SPINE [J].
ROSS, JS ;
TKACH, JA ;
DILLINGER, J ;
RUGGIERI, PM ;
MASARYK, TJ ;
MODIC, MT .
JMRI-JOURNAL OF MAGNETIC RESONANCE IMAGING, 1992, 2 (03) :359-364
[25]   PULSATILE FLOW ARTIFACTS IN FAST MAGNETIZATION-PREPARED SEQUENCES [J].
TASCIYAN, TA ;
MITCHELL, DG .
JMRI-JOURNAL OF MAGNETIC RESONANCE IMAGING, 1994, 4 (02) :217-222
[26]   FAST FIELD ECHO IMAGING - AN OVERVIEW AND CONTRAST CALCULATIONS [J].
VANDERMEULEN, P ;
GROEN, JP ;
TINUS, AMC ;
BRUNTINK, G .
MAGNETIC RESONANCE IMAGING, 1988, 6 (04) :355-368
[27]   A SPOILING SEQUENCE FOR SUPPRESSION OF RESIDUAL TRANSVERSE MAGNETIZATION [J].
WANG, HZ ;
RIEDERER, SJ .
MAGNETIC RESONANCE IN MEDICINE, 1990, 15 (02) :175-191
[28]   OPTIMIZATION OF SPOILER GRADIENTS IN FLASH MRI [J].
WOOD, ML ;
SILVER, M ;
RUNGE, VM .
MAGNETIC RESONANCE IMAGING, 1987, 5 (06) :455-463
[29]   ARTIFACTS DUE TO RESIDUAL MAGNETIZATION IN 3-DIMENSIONAL MAGNETIC-RESONANCE IMAGING [J].
WOOD, ML ;
RUNGE, VM .
MEDICAL PHYSICS, 1988, 15 (06) :825-831
[30]   SPOILING OF TRANSVERSE MAGNETIZATION IN STEADY-STATE SEQUENCES [J].
ZUR, Y ;
WOOD, ML ;
NEURINGER, LJ .
MAGNETIC RESONANCE IN MEDICINE, 1991, 21 (02) :251-263