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用于化学交换饱和转移磁共振成像的质子共振增强CEST成像和位移交换(PRECISE)系列射频脉冲形状

The Proton Resonance Enhancement for CEST imaging and Shift Exchange (PRECISE) family of RF pulse shapes for Chemical Exchange Saturation Transfer MRI.

作者信息

Mohanta Zinia, Stabinska Julia, Gilad Assaf A, Barker Peter B, McMahon Michael T

出版信息

bioRxiv. 2024 Jun 22:2024.06.19.599565. doi: 10.1101/2024.06.19.599565.

Abstract

PURPOSE

To optimize a 100 msec pulse for producing CEST MRI contrast and evaluate in mice.

METHODS

A gradient ascent algorithm was employed to generate a family of 100 point, 100 msec pulses for use in CEST pulse trains ('PRECISE'). Gradient ascent optimizations were performed for exchange rates (k ) = 500 s , 1,500 s , 2,500 s , 3,500 s and 4,500 s and offsets (Δω) = 9.6, 7.8, 4.2 and 2.0 ppm. 7 PRECISE pulse shapes were tested on an 11.7 T scanner using a phantom containing three representative CEST agents with peak saturation B = 4 μT. The pulse producing the most contrast in phantoms was then evaluated for CEST MRI pH mapping of the kidneys in healthy mice after iopamidol administration.

RESULTS

The most promising pulse in terms of contrast performance across all three phantoms was the 9.6 ppm, 2500 s optimized pulse with ∼2.7 x improvement over Gaussian and ∼1.3x's over Fermi pulses. This pulse also displayed a large improvement in contrast over the Gaussian pulse after administration of iopamidol in live mice.

CONCLUSION

A new 100 msec pulse was developed based on gradient ascent optimizations which produced better contrast compared to standard Gaussian and Fermi pulses in phantoms. This shape also showed a substantial improvement for CEST MRI pH mapping in live mice over the Gaussian shape and appears promising for a wide range of CEST applications.

摘要

目的

优化用于产生化学交换饱和转移(CEST)磁共振成像(MRI)对比的100毫秒脉冲,并在小鼠中进行评估。

方法

采用梯度上升算法生成一系列用于CEST脉冲序列(“PRECISE”)的100点、100毫秒脉冲。针对交换率(k)=500 s⁻¹、1500 s⁻¹、2500 s⁻¹、3500 s⁻¹和4500 s⁻¹以及偏移量(Δω)=9.6、7.8、4.2和2.0 ppm进行梯度上升优化。在11.7 T扫描仪上,使用含有三种代表性CEST试剂且峰值饱和B₁ = 4 μT的体模测试了7种PRECISE脉冲形状。然后评估在给予碘帕醇后,在健康小鼠肾脏的CEST MRI pH映射中产生最大对比的脉冲。

结果

在所有三种体模中,就对比性能而言,最有前景的脉冲是9.6 ppm、2500 s⁻¹优化脉冲,与高斯脉冲相比对比度提高约2.7倍,与费米脉冲相比提高约1.3倍。在活体小鼠中给予碘帕醇后,该脉冲与高斯脉冲相比对比度也有大幅提高。

结论

基于梯度上升优化开发了一种新的100毫秒脉冲,与体模中的标准高斯和费米脉冲相比,其产生的对比度更好。这种形状在活体小鼠的CEST MRI pH映射中与高斯形状相比也有显著改善,并且在广泛的CEST应用中似乎很有前景。

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