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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Mis‐estimation and bias of hyperpolarized apparent diffusion coefficient measurements due to slice profile effects
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Mis‐estimation and bias of hyperpolarized apparent diffusion coefficient measurements due to slice profile effects

机译:切片剖面效应引起的超极化表观扩散系数测量的估计和偏差

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Purpose The purpose of this work was to explore the impact of slice profile effects on apparent diffusion coefficient (ADC) mapping of hyperpolarized (HP) substrates. Methods Slice profile effects were simulated using a Gaussian radiofrequency (RF) pulse with a variety of flip angle schedules and b‐value ordering schemes. A long T 1 water phantom was used to validate the simulation results, and ADC mapping of HP [ 13 C, 15 N 2 ]urea was performed on the murine liver to assess these effects in vivo. Results Slice profile effects result in excess signal after repeated RF pulses, causing bias in HP measurements. The largest error occurs for metabolites with small ADCs, resulting in up to 10‐fold overestimation for metabolites that are in more‐restricted environments. A mixed b‐value scheme substantially reduces this bias, whereas scaling the slice‐select gradient can mitigate it completely. In vivo, the liver ADC of hyperpolarized [ 13 C, 15 N 2 ]urea is nearly 70% lower (0.99?±?0.22 vs 1.69?±?0.21?×?10 ?3 mm 2 /s) when slice‐select gradient scaling is used. Conclusion Slice profile effects can lead to bias in HP ADC measurements. A mixed b‐value ordering scheme can reduce this bias compared to sequential b‐value ordering. Slice‐select gradient scaling can also correct for this deviation, minimizing bias and providing more‐precise ADC measurements of HP substrates. Magn Reson Med 78:1087–1092, 2017. ? 2016 International Society for Magnetic Resonance in Medicine
机译:目的这项工作的目的是探讨切片概况对超极化(HP)基材的表观扩散系数(ADC)映射的影响。方法使用具有各种翻转角度调度和B值订购方案的高斯射频(RF)脉冲模拟切片简档效果。使用长T 1水体模用于验证模拟结果,并在鼠肝脏上进行HP [13c,15 n 2]尿素的ADC映射,以评估体内的这些作用。结果切片剖面效应在重复的RF脉冲后产生多余的信号,导致HP测量中的偏差。对于具有小ADC的代谢物,发生最大的误差,导致在更多限制环境中的代谢物高达10倍的高估。混合的B值方案大大减少了这种偏差,而缩放切片选择梯度可以完全减轻它。在体内,超极化[13c,15 n 2]尿素的肝脏ADC接近70%(0.99?±0.22 Vs 1.69?±0.21?×10?±3 mm 2 / s)使用缩放。结论切片剖面效应可导致HP ADC测量中的偏差。与顺序B值排序相比,混合的B值排序方案可以减少这种偏差。切片选择梯度缩放也可以校正此偏差,最大限度地减少偏置并提供HP基板的更精确的ADC测量。 Magn Reson Med 78:1087-1092,2017。 2016国际医学磁共振学会

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