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Relaxation-based viscosity mapping for magnetic particle imaging

机译:基于磁颗粒成像的放松粘度测绘

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Magnetic particle imaging (MPI) has been shown to provide remarkable contrast for imaging applications such as angiography, stem cell tracking, and cancer imaging. Recently, there is growing interest in the functional imaging capabilities of MPI, where 'color MPI' techniques have explored separating different nanoparticles, which could potentially be used to distinguish nanoparticles in different states or environments. Viscosity mapping is a promising functional imaging application for MPI, as increased viscosity levels in vivo have been associated with numerous diseases such as hypertension, atherosclerosis, and cancer. In this work, we propose a viscosity mapping technique for MPI through the estimation of the relaxation time constant of the nanoparticles. Importantly, the proposed time constant estimation scheme does not require any prior information regarding the nanoparticles. We validate this method with extensive experiments in an in-house magnetic particle spectroscopy (MPS) setup at four different frequencies (between 250 Hz and 10.8 kHz) and at three different field strengths (between 5 mT and 15 mT) for viscosities ranging between 0.89 mPa s-15.33 mPa s. Our results demonstrate the viscosity mapping ability of MPI in the biologically relevant viscosity range.
机译:磁性粒子成像(MPI)已被证明是提供一种用于成像应用,例如血管造影术显着的对比,干细胞跟踪,和癌症成像。近来,在MPI,其中“颜色MPI”技术已经探索分离不同纳米颗粒,其可以潜在地用来区分不同的状态或环境的纳米颗粒的功能性成像能力越来越感兴趣。粘度映射是MPI有希望的功能成像应用,如增加的体内粘度水平已经与许多疾病如高血压,动脉粥样硬化和癌症相关联。在这项工作中,我们提出了MPI的粘度映射技术,通过纳米粒子的弛豫时间常数的估计。重要的是,提出的时间常数估计方案不需要关于纳米粒子的任何先验信息。我们在四个不同的频率,并在三个不同的场强(5 MT和15 mT的之间),用于粘度0.89之间的范围内(250赫兹和10.8千赫之间)验证了该方法具有广泛的实验在一个内部磁性粒子光谱(MPS)的设置毫帕秒,15.33毫帕·秒。我们的研究结果表明在生物学相关的粘度范围的MPI的粘度映射能力。

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