Tesoro Imaging S.L., Valencia, Spain.
MRILab, Institute for Molecular Imaging and Instrumentation (i3M), Spanish National Research Council (CSIC) and Universitat Politècnica de València (UPV), Valencia, Spain.
NMR Biomed. 2022 Aug;35(8):e4737. doi: 10.1002/nbm.4737. Epub 2022 Apr 20.
Prepolarized MRI (PMRI) is a long-established technique conceived to counteract the loss in signal-to-noise ratio (SNR) inherent to low-field MRI systems. When it comes to hard biological tissues and solid-state matter, PMRI is severely restricted by their ultra-short characteristic relaxation times. Here we demonstrate that efficient hard-tissue prepolarization is within reach with a special-purpose 0.26 T scanner designed for ex vivo dental MRI and equipped with suitable high-power electronics. We have characterized the performance of a 0.5 T prepolarizer module, which can be switched on and off in 200 μs. To this end, we have used resin, dental and bone samples, all with times of the order of 20 ms at our field strength. The measured SNR enhancement is in good agreement with a simple theoretical model, and deviations in extreme regimes can be attributed to mechanical vibrations due to the magnetic interaction between the prepolarization and main magnets.
预极化 MRI(PMRI)是一种成熟的技术,旨在抵消低场 MRI 系统固有的信噪比(SNR)损失。对于硬生物组织和固态物质,PMRI 受到其超短特征弛豫时间的严重限制。在这里,我们证明了具有特殊用途的 0.26T 扫描仪可以实现有效的硬组织预极化,该扫描仪专为离体牙科 MRI 设计,并配备了合适的高功率电子设备。我们已经对 0.5T 预极化器模块的性能进行了表征,该模块可以在 200μs 内打开和关闭。为此,我们使用了树脂、牙齿和骨骼样本,它们在我们的场强下的弛豫时间均为 20ms 左右。测量到的 SNR 增强与简单的理论模型非常吻合,而在极端情况下的偏差可以归因于由于预极化和主磁体之间的磁相互作用引起的机械振动。