Karlsruhe Institute of Technology, Institute of Biomedical Engineering, Karlsruhe, Germany.
MAGMA. 2012 Jun;25(3):193-204. doi: 10.1007/s10334-011-0281-8. Epub 2011 Sep 16.
Parallel transmission facilitates a relatively direct control of the RF transmit field. This is usually applied to improve the RF field homogeneity but might also allow a reduction of the specific absorption rate (SAR) to increase freedom in sequence design for high-field MRI. However, predicting the local SAR is challenging as it depends not only on the multi-channel drive but also on the individual patient.
The potential of RF shimming for SAR management is investigated for a 3 T body coil with eight independent transmit elements, based on Finite-Difference Time-Domain (FDTD) simulations. To address the patient-dependency of the SAR, nine human body models were generated from volunteer MR data and used in the simulations. A novel approach to RF shimming that enforces local SAR constraints is proposed.
RF shimming substantially reduced the local SAR, consistently for all volunteers. Using SAR constraints, a further SAR reduction could be achieved with only minor compromises in RF performance.
Parallel transmission can become an important tool to control and manage the local SAR in the human body. The practical use of local SAR constraints is feasible with consistent results for a variety of body models.
并行传输可实现对射频发射场的相对直接控制。这通常用于改善射频场的均匀性,但也可能允许降低特定吸收率 (SAR),从而为高场 MRI 的序列设计提供更大的自由度。然而,预测局部 SAR 具有挑战性,因为它不仅取决于多通道驱动,还取决于个体患者。
基于时域有限差分 (FDTD) 模拟,研究了使用具有八个独立发射元件的 3 T 体线圈进行射频调谐以管理 SAR 的潜力。为了解决 SAR 的患者相关性问题,根据志愿者的 MR 数据生成了九个人体模型,并在模拟中使用了这些模型。提出了一种新的射频调谐方法,该方法可强制实施局部 SAR 约束。
射频调谐可大幅降低局部 SAR,对所有志愿者均如此。使用 SAR 约束,仅在射频性能略有折衷的情况下,就可以进一步降低 SAR。
并行传输可以成为控制和管理人体中局部 SAR 的重要工具。局部 SAR 约束的实际应用是可行的,对于各种体型模型都能得出一致的结果。