Xu Dan, King Kevin F, Liang Zhi-Pei
Department of Electrical and Computer Engineering, University of Illinois at Urbana-Champaign, Urbana, Illinois, USA.
Magn Reson Med. 2007 Oct;58(4):835-42. doi: 10.1002/mrm.21375.
A new class of spiral trajectories called variable slew-rate spirals is proposed. The governing differential equations for a variable slew-rate spiral are derived, and both numeric and analytic solutions to the equations are given. The primary application of variable slew-rate spirals is peak B(1) amplitude reduction in 2D RF pulse design. The reduction of peak B(1) amplitude is achieved by changing the gradient slew-rate profile, and gradient amplitude and slew-rate constraints are inherently satisfied by the design of variable slew-rate spiral gradient waveforms. A design example of 2D RF pulses is given, which shows that under the same hardware constraints the RF pulse using a properly chosen variable slew-rate spiral trajectory can be much shorter than that using a conventional constant slew-rate spiral trajectory, thus having greater immunity to resonance frequency offsets.
提出了一类名为可变 slew 率螺旋线的新型螺旋轨迹。推导了可变 slew 率螺旋线的控制微分方程,并给出了方程的数值解和解析解。可变 slew 率螺旋线的主要应用是在二维射频脉冲设计中降低峰值 B(1) 幅度。通过改变梯度 slew 率分布来实现峰值 B(1) 幅度的降低,并且可变 slew 率螺旋梯度波形的设计固有地满足梯度幅度和 slew 率约束。给出了一个二维射频脉冲的设计示例,结果表明,在相同的硬件约束条件下,使用适当选择的可变 slew 率螺旋轨迹的射频脉冲比使用传统恒定 slew 率螺旋轨迹的射频脉冲要短得多,因此对共振频率偏移具有更强的抗干扰能力。