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Improved measurement of labile proton concentration-weighted chemical exchange rate (kws) with experimental factor-compensated and T1-normalized quantitative chemical exchange saturation transfer (CEST) MRI

机译:利用实验因子补偿和T1标准化的定量化学交换饱和转移(CEST)MRI改善了不稳定质子浓度加权化学汇率(KWS)的测量。

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摘要

Chemical exchange saturation transfer (CEST) MRI enables measurement of dilute CEST agents and microenvironment properties such as pH and temperature, holding great promise for in vivo applications. However, because of confounding concomitant RF irradiation and relaxation effects, the CEST-weighted MRI contrast may not fully characterize the underlying CEST phenomenon. We postulated that the accuracy of quantitative CEST MRI could be improved if the experimental factors (labeling efficiency and RF spillover effect) were estimated and taken into account. Specifically, the experimental factor was evaluated as a function of exchange rate and CEST agent concentration ratio, which remained relatively constant for intermediate RF irradiation power levels. Hence, the experimental factors can be calculated based on the reasonably estimated exchange rate and labile proton concentration ratio, which significantly improved quantification. The simulation was confirmed with Creatine phantoms of serially varied concentration titrated to the same pH, whose reverse exchange rate (kws) was found to be linearly correlated with the concentration. In summary, the proposed solution provides simplified yet reasonably accurate quantification of the underlying CEST system, which may help guide the ongoing development of quantitative CEST MRI.
机译:化学交换饱和度转移(CEST)MRI能够测量稀释剂和微环境性质,例如pH和温度,对体内应用具有很大的承诺。然而,由于混淆伴随的RF照射和弛豫效果,CEST加权的MRI对比度可能没有完全表征潜在的CEST现象。我们假设如果估计实验因素(标签效率和射频溢出效应),则可以改善定量CEST MRI的准确性。具体地,作为汇率和CEST剂浓度比的函数评价实验因素,其对于中间射频照射功率水平仍然相对恒定。因此,可以基于合理估计的汇率和不稳定质子浓度比来计算实验因素,这显着改善了定量。通过滴定滴定滴定在相同的pH的串联浓度的肌酸模拟来确认模拟,其反向交换速率(KW)与浓度线性相关。总之,所提出的解决方案提供了潜在的CEST系统的简化且相当准确的定量,这可能有助于指导定量CEST MRI的持续发展。

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