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Optimization of Brain T2 Mapping Using Standard CPMG Sequence In A Clinical Scanner

机译:在临床扫描仪中使用标准CPMG序列优化脑T2定位

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In magnetic resonance imaging, transverse relaxation time (T2) mapping is a useful quantitative tool enabling enhanced diagnostics of many brain pathologies. The aim of our study was to test the influence of different sequence parameters on calculated T2 values, including multi-slice measurements, slice position, interslice gap, echo spacing, and pulse duration. Measurements were performed using standard multi-slice multi-echo CPMG imaging sequence on a 1.5 Tesla routine whole body MR scanner. We used multiple phantoms with different agarose concentrations (0 % to 4 %) and verified the results on a healthy volunteer. It appeared that neither the pulse duration, the size of interslice gap nor the slice shift had any impact on the T2. The measurement accuracy was increased with shorter echo spacing. Standard multi-slice multi-echo CPMG protocol with the shortest echo spacing, also the smallest available interslice gap (100 % of slice thickness) and shorter pulse duration was found to be optimal and reliable for calculating T2 maps in the human brain.
机译:在磁共振成像中,横向弛豫时间(T2)映射是一种有用的定量工具,可增强对许多脑部病理的诊断。我们研究的目的是测试不同序列参数对计算的T2值的影响,包括多层测量,层位置,层间间隙,回波间隔和脉冲持续时间。使用标准的多层多回波CPMG成像序列在1.5 Tesla常规全身MR扫描仪上进行测量。我们使用了具有不同琼脂糖浓度(0%至4%)的多个体模,并在健康志愿者上验证了结果。看来,脉冲持续时间,层间间隙的大小和层间偏移都不会对T2产生任何影响。回波间隔越短,测量精度越高。发现具有最小回波间隔,最小可用层间间隙(片厚度的100%)和较短脉冲持续时间的标准多切片多回波CPMG协议对于计算人脑中的T2映射是最佳且可靠的。

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