Molecular Imaging Branch, National Institute of Mental Health, Intramural Research Program, NIH, Bethesda, MD, USA.
J Magn Reson. 2011 May;210(1):98-106. doi: 10.1016/j.jmr.2011.02.016. Epub 2011 Feb 18.
Adiabatic pulses are widely used for spatial localization in magnetic resonance spectroscopy because of their high immunity to RF inhomogeneity and excellent slice profiles. Since non-rectangular volume is often preferred in localized spectroscopy, we propose a scheme for selecting a trapezoidal slice using adiabatic π pulses. In this scheme, a time-varying gradient orthogonal to a stationary slice selection gradient is used to change the boundaries of the slice profile from parallel to non-parallel. Numerical simulation results for the transverse and longitudinal magnetization using different RF and gradient waveforms are presented for non-parallel slice selection. Phantom imaging and in vivo(1)H MRS of rat brain using non-parallel slices are demonstrated.
绝热脉冲由于其对射频不均匀性的高抗扰性和出色的切片轮廓,被广泛应用于磁共振波谱学中的空间定位。由于在局部光谱学中通常更喜欢非矩形体积,因此我们提出了一种使用绝热π脉冲选择梯形切片的方案。在该方案中,使用与固定切片选择梯度正交的时变梯度来将切片轮廓的边界从平行变为非平行。给出了不同射频和梯度波形下横向和纵向磁化的数值模拟结果,用于非平行切片选择。展示了使用非平行切片的大鼠脑幻影成像和体内(1)H MRS。