Sun Phillip Zhe, van Zijl Peter C M, Zhou Jinyuan
Division of MRI Research, Department of Radiology, Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA.
J Magn Reson. 2005 Aug;175(2):193-200. doi: 10.1016/j.jmr.2005.04.005.
In chemical exchange dependent saturation transfer imaging experiments, exchangeable solute protons are saturated and the transfer of saturation to water is subsequently detected. When the applied irradiation power is comparable to the resonance frequency difference between the water protons and saturated solute protons, the proton transfer (PT) efficiency is reduced due to concomitant direct saturation effects. In this study, the PT process is modeled using a two-pool system. An empirical general proton transfer ratio (PTR) equation for arbitrary RF irradiation power is derived, and its optimal power to maximize the PTR is analyzed. The results are confirmed experimentally on 4.7 T using a poly-L-lysine solution. The theory provides a useful tool for optimizing the irradiation power of the PT sequences in the presence of direct saturation effects.
在化学交换依赖饱和转移成像实验中,可交换溶质质子被饱和,随后检测饱和向水的转移。当所施加的辐照功率与水质子和饱和溶质质子之间的共振频率差相当时,由于伴随的直接饱和效应,质子转移(PT)效率会降低。在本研究中,使用双池系统对PT过程进行建模。推导了任意射频辐照功率下的经验通用质子转移比(PTR)方程,并分析了使其最大化的最佳功率。使用聚-L-赖氨酸溶液在4.7T上通过实验对结果进行了验证。该理论为在存在直接饱和效应的情况下优化PT序列的辐照功率提供了一个有用的工具。