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B1 Power Optimization for Chemical Exchange Saturation Transfer Imaging: A Phantom Study Using Egg White for Amide Proton Transfer Imaging Applications in the Human Brain

机译:B1用于化学交换饱和转移成像的功率优化:使用蛋白在人脑中进行酰胺质子转移成像应用的幻影研究

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摘要

The chemical exchange saturation transfer (CEST) effect on an egg white (EW) suspension was investigated for optimization of magnetization transfer (MT) power ( B 1,rms) and pH dependency with the addition of lactic acid. Applying a higher MT pulse, B 1,rms, Z-spectrum shows higher asymmetry and the magnetisation transfer ratio (MTR)asym signal increases to around 1–3.5 ppm, indicating a higher CEST effect. Amide proton transfer (APT) at 3.5 ppm shows a signal elevation in MTRasym with the application of higher B 1,rms power and high pH. In addition, the hydroxyl proton signal in MTRasym increases as pH is reduced by lactic acid. In Z-spectrum of B 1,rms at 1.0 μT and 2.0 μT, the dependence on CEST effect of amide proton and hydroxyl proton could be observed by using an EW suspension phantom. The CEST MT power was optimized on the EW suspension phantom with pH dependency and further confirmed on volunteers. In addition, APT imaging at 3.5 ppm using B 1,rms at 1.0 μT performed on two human brains with different pathophysiological conditions indicated appropriate ATP effect.
机译:研究了蛋清(EW)悬浮液的化学交换饱和转移(CEST)效应,以优化磁化转移(MT)功率(B 1,rms )和pH依赖性并添加乳酸。施加更高的MT脉冲,B 1,rms ,Z谱显示更高的不对称性,并且磁化传递比(MTR) asym 信号增加至大约1-3.5 ppm,表明更高的CEST效果。在较高的B 1,rms 功率和较高的pH值下,酰胺在3.5 ppm处的质子转移(APT)在MTR asym 中显示出信号升高。另外,随着乳酸使pH值降低,MTR asym 中的羟基质子信号增加。在1.0μT和2.0μT的B 1,rms 的Z光谱中,使用EW悬浮体模可以观察到酰胺质子和羟基质子对CEST效果的依赖性。在具有pH依赖性的EW悬浮体模上优化了CEST MT功率,并在志愿者身上得到了进一步证实。此外,在两个具有不同病理生理条件的人脑上使用1.0μT的B 1,rms 在3.5 ppm处进行的APT成像显示了适当的ATP效应。

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