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Probe-Specific Procedure to Estimate Sensitivity and Detection Limits for 19F Magnetic Resonance Imaging

机译:针对19F磁共振成像的灵敏度和检测极限估计的特定于探针的程序

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摘要

Due to low fluorine background signal in vivo, 19F is a good marker to study the fate of exogenous molecules by magnetic resonance imaging (MRI) using equilibrium nuclear spin polarization schemes. Since 19F MRI applications require high sensitivity, it can be important to assess experimental feasibility during the design stage already by estimating the minimum detectable fluorine concentration. Here we propose a simple method for the calibration of MRI hardware, providing sensitivity estimates for a given scanner and coil configuration. An experimental “calibration factor” to account for variations in coil configuration and hardware set-up is specified. Once it has been determined in a calibration experiment, the sensitivity of an experiment or, alternatively, the minimum number of required spins or the minimum marker concentration can be estimated without the need for a pilot experiment. The definition of this calibration factor is derived based on standard equations for the sensitivity in magnetic resonance, yet the method is not restricted by the limited validity of these equations, since additional instrument-dependent factors are implicitly included during calibration. The method is demonstrated using MR spectroscopy and imaging experiments with different 19F samples, both paramagnetically and susceptibility broadened, to approximate a range of realistic environments.
机译:由于体内氟背景信号低,因此19F是使用平衡核自旋极化方案通过磁共振成像(MRI)研究外源分子命运的良好标记。由于19F MRI应用需要很高的灵敏度,因此在设计阶段就已经通过估计最小可检测氟浓度来评估实验可行性非常重要。在这里,我们提出了一种用于MRI硬件校准的简单方法,为给定的扫描仪和线圈配置提供灵敏度估计。指定了一个实验“校准因子”,以说明线圈配置和硬件设置的变化。在校准实验中确定后,无需先导实验即可估算出实验的灵敏度,或者所需旋转的最小数量或最小标记物浓度。该校准因子的定义基于磁共振敏感度的标准方程式得出,但是该方法不受这些方程式有效性的限制,因为在校准过程中会隐含其他与仪器有关的因子。使用MR光谱学和成像实验对不同的19F样品(顺磁和磁化率都扩大了)进行了演示,以近似一系列实际环境。

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