Laboratoire Kastler Brossel, ENS-Université PSL, CNRS, Sorbonne Université, Collège de France, 24 rue Lhomond, 75005 Paris, France.
Rady Faculty of Health Sciences, College of Medicine, University of Manitoba, Winnipeg, MB R3T 2N2, Canada; Department of Physics and Astronomy, University of Manitoba, Winnipeg, MB R3T 2N2, Canada.
J Magn Reson. 2020 Jan;310:106638. doi: 10.1016/j.jmr.2019.106638. Epub 2019 Nov 2.
TRansmit Array Spatial Encoding (TRASE) MRI uses trains of rf pulses alternately produced by distinct transmit coils. Commonly used coil switching involving PIN diodes is too slow for low- and ultra-low-field MRI and would introduce wait times between pulses typically as long as each individual pulse in a few mT. A MOSFET-based rf switch is described and characterised. Up to hundreds of kHz, it allows for sub-μs switching of rf currents from a single amplifier to several coils with sufficient isolation ratio and negligible delay between pulses. Additionally, current switching at null current and maximum voltage can be used to abruptly stop or start pulses in series-tuned rf coils, therefore avoiding the rise and fall times associated with the Q-factors. RF energy can be efficiently stored in tuning capacitors for times as long as several seconds. Besides TRASE MRI, this energy storage approach may find applications in fast repeated spin-echo experiments. Here, a threefold acceleration of TRASE phase-encoding is demonstrated when MOSFET switches are used instead of fast reed relays.
TRansmit Array Spatial Encoding (TRASE) MRI 使用由不同发射线圈交替产生的射频脉冲序列。常用的基于 PIN 二极管的线圈切换对于低场和超低场 MRI 来说太慢了,并且会在脉冲之间引入典型的长达几毫特斯拉中每个单独脉冲的等待时间。本文描述并表征了一种基于 MOSFET 的射频开关。在高达数百千赫兹的频率下,它允许从单个放大器到几个线圈的射频电流以足够的隔离比和脉冲之间的可忽略延迟进行亚微秒切换。此外,在零电流和最大电压下的电流切换可用于在串联调谐射频线圈中突然停止或启动脉冲,从而避免与 Q 因子相关的上升和下降时间。射频能量可以有效地存储在调谐电容器中,时间长达几秒钟。除了 TRASE MRI,这种能量存储方法还可以应用于快速重复的自旋回波实验。在此,当使用 MOSFET 开关代替快速 reed 继电器时,TRASE 相位编码的速度提高了三倍。