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Multifrequency magnetic particle imaging enabled by a combined passive and active drive field feed‐through compensation approach

机译:通过组合的被动和主动驱动场馈送方法使能多频磁粉成像通过补偿方法

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Purpose Magnetic particle imaging (MPI) allows fast imaging of the spatial distribution of superparamagnetic iron‐oxide based nanoparticles (SPIONs). Recent research suggests that MPI furthermore promises in‐vivo access to environmental parameters of SPIONs as temperature or viscosity. Various medical applications as nanomedicine, stem cell‐based therapies or magnetic hyperthermia could benefit from in‐vivo multiparameter estimation by MPI. One possible approach to get access to functional parameters is particle excitation at multiple frequencies. To enable the investigation of the mentioned approach, a novel MPI device capable of multifrequency excitation is needed. Methods MPI usually employs analog band‐stop filters to cancel the drive field feed‐through, which is magnitudes higher than the particle signal. To enable drive field frequency flexibility over a wide bandwidth, we propose a combined passive and active drive field feed‐through compensation approach. This cancellation technique further allows the direct detection of the SPIONs' signal at the fundamental excitation frequency. Results A combined feed‐through suppression of up to ?125?dB is reported, which allows to adjust the drive field frequency from 500?Hz to 20?kHz. Initial spectroscopic measurements and images are shown that demonstrate the concept of multifrequency excitation and prove the imaging capability of the presented scanner. A mean signal‐to‐noise ratio (SNR) enhancement by the factor of 1.7 was shown when the first harmonic is used for measurement‐based image reconstruction compared to when it is omitted. Conclusions In this paper, the first one‐dimensional multifrequency magnetic particle imaging (mf‐MPI) that features adjustable excitation frequencies from 500?Hz to 20?kHz is presented. The device will be used to study the principle of multiparameter estimation by employing multifrequency excitation.
机译:目的磁粒子成像(MPI)允许快速成像超顺磁性氧化铁基纳米粒子(酱)的空间分布。最近的研究表明,MPI进一步承诺为温度或粘度的散氏环境参数提供。各种医疗应用作为纳米胺,干细胞的疗法或磁体热疗可以受益于MPI的体内多次估计。获得功能参数的一种可能的方法是多个频率的粒子激发。为了能够进行提及的方法,需要一种能够进行多频激励的新型MPI器件。方法MPI通常采用模拟带式停止滤波器以取消驱动场馈电,这是高于粒子信号的大小。为了在宽带宽度上实现驱动场频率灵活性,我们提出了组合的被动和有源驱动场馈送方法补偿方法。该取消技术进一步允许在基本励磁频率下直接检测散斑信号。结果报告了最多抑制的组合馈送抑制率125?DB,这允许将驱动场频率从500ΩHz调整为20?KHz。示出了初始光谱测量和图像,其展示了多频激励的概念并证明了所提出的扫描仪的成像能力。当第一谐波用于基于测量的图像重建时,示出了根据1.7因子的平均信噪比(SNR)增强,而基于测量的图像重建。本文结论,提出了具有500ΩHz至20ΩkHz的可调节激励频率的第一一维多频磁粒子成像(MF-MPI)。该装置将用于通过采用多频激励来研究多射门估计的原理。

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