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Measurement of magnetic nanoparticle relaxation time

机译:磁性纳米粒子弛豫时间的测量

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摘要

>Purpose: Nanoparticle relaxation time measurements have many applications including characterizing molecular binding, viscosity, heating, and local matrix stiffness. The methods capable of in vivo application are extremely limited. The hypothesis investigated by the authors was that the relaxation time could be measured quantitatively using magnetic spectroscopy of nanoparticle Brownian motion (MSB).>Methods: The MSB signal (1) reflects the nanoparticle rotational Brownian motion, (2) can be measured from very low nanoparticle concentrations, and (3) is a function of the product of the drive frequency and the relaxation time characterizing Brownian motion. To estimate the relaxation time, the MSB signal was measured at several frequencies. The MSB signal for nanoparticles with altered relaxation time is a scaled version of that for reference nanoparticles with a known relaxation time. The scaling factor linking the altered and reference MSB measurements is the same factor linking the altered and reference relaxation times. The method was tested using glycerol solutions of varying viscosities to obtain continuously variable relaxation times.>Results: The measured relaxation time increased with increasing viscosity of the solution in which the nanoparticles resided. The MSB estimated relaxation time matched the calculated relaxation times based on viscosity with 2% average error.>Conclusions: MSB can be used to monitor the nanoparticle relaxation time quantitatively through a scale space correlation of the MSB signal as a function of frequency.
机译:>目的:纳米粒子弛豫时间测量具有许多应用,包括表征分子结合,粘度,加热和局部基质刚度。能够体内应用的方法极为有限。作者研究的假设是,可以使用电磁波谱法对纳米粒子布朗运动(MSB)进行定量测定弛豫时间。>方法: MSB信号(1)反映了纳米粒子旋转布朗运动(2) )可以从非常低的纳米粒子浓度中测量得出,(3)是表征布朗运动的驱动频率和弛豫时间的乘积函数。为了估计弛豫时间,在几个频率下测量了MSB信号。弛豫时间改变的纳米颗粒的MSB信号是驰豫时间已知的参考纳米颗粒的MSB信号的缩放版本。链接更改后的MSB测量值和参考MSB测量值的比例因子与链接更改后的松弛时间和参考弛豫时间的比例因子相同。使用不同粘度的甘油溶液对该方法进行了测试,以获得连续可变的弛豫时间。>结果:随着纳米粒子所驻留的溶液粘度的增加,测得的弛豫时间也随之增加。 MSB估计的弛豫时间与基于粘度的计算弛豫时间相匹配,平均误差为2%。>结论: MSB可用于通过MSB信号的尺度空间相关性定量监测纳米粒子的弛豫时间。频率的函数。

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