Study of Power Equivalent Continuous Approximation Based on the Recent Consensus Recommendations for Brain Tumor Imaging with Pulsed Chemical Exchange Saturation Transfer at 3T.

Swee Qi Pan, Yan Chai Hum, Khin Wee Lai, Wun-She Yap, Chi Wei Ong, Yee Kai Tee
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Abstract

The quantitative analysis of pulsed-chemical exchange saturation transfer (CEST) using a full model-based method is computationally challenging, as it involves dealing with varying RF values in pulsed saturation. A power equivalent continuous approximation of B1 power was usually applied to accelerate the analysis. In line with recent consensus recommendations from the CEST community for pulsed-CEST at 3T, particularly recommending a high RF saturation power (B1 = 2.0 µT) for the clinical application in brain tumors, this technical note investigated the feasibility of using average power (AP) as the continuous approximation. The simulated results revealed excellent performance of the AP continuous approximation in low saturation power scenarios, but discrepancies were observed in the z-spectra for the high saturation power cases. Cautions should be taken, or it may lead to inaccurate fitted parameters, and the difference can be more than 10% in the high saturation power cases.

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基于3T下脉冲化学交换饱和转移脑肿瘤成像最新共识建议的功率等效连续近似值研究
使用基于完整模型的方法对脉冲-化学交换饱和转移(CEST)进行定量分析在计算上具有挑战性,因为它涉及到处理脉冲饱和中的不同射频值。通常采用 B1 功率的功率等效连续近似值来加速分析。根据 CEST 界最近对 3T 下脉冲-CEST 的共识建议,特别是建议在脑肿瘤的临床应用中使用高射频饱和功率(B1 = 2.0 µT),本技术说明研究了使用平均功率(AP)作为连续近似值的可行性。模拟结果表明,在低饱和功率情况下,AP 连续近似法的性能极佳,但在高饱和功率情况下,z 谱出现了偏差。在高饱和功率情况下,差异可能超过 10%。
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