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An arbitrary waveform magnetic nanoparticle relaxometer with an asymmetrical three-section gradiometric receive coil

机译:具有非对称三段梯度接收线圈的任意波形磁性纳米粒子松弛仪

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Magnetic nanoparticles MNPs have a wide range of clinical applications for imaging, therapy, and biosensing. Superparamagnetic MNPs can be directly visualized with high spatiotemporal resolution using the magnetic particle imaging MPI modality. The image resolution of MPI depends on the relaxation properties of the MNPs. Therefore, characterization of MNP response under alternating magnetic field excitation is necessary to predict MPI imaging performance and develop optimized MNPs. Biosensing applications also make use of the change in the relaxation response of MNPs after binding to a target agent. As MNP relaxation properties change with temperature and viscosity, noninvasive probing of these microenvironmental properties is possible. In this work, we present an untuned relaxometer to measure the relaxation properties of the MNPs in a wide frequency and amplitude range. The developed relaxometer can produce above 80 mTpp magnetic field at up to 60 kHz frequency, and above 14 mTpp at up to 150 kHz frequency. An asymmetrical three-section gradiometer receive coil is used to cancel the direct coupled signal from the transmit coil. The position of one of the receive coil sections is manually tuned using a rotating knob for improved decoupling. The tuning coil section has a lower number of turns compared to the other sections to decrease the sensitivity to mechanical movement. By tuning the knob, the transmit-receive coupling can be decreased below ?80 dB. We analyzed the x-space image resolution, harmonic levels, and effect of the number of used harmonics on the resolution for two different commercially available superparamagnetic iron oxide MNPs Perimag and Synomag-D in a multifrequency/multiamplitude measurement scheme. The magnetization properties of MNPs for arbitrary waveforms can be measured efficiently using the developed relaxometer.
机译:磁性纳米颗粒MnPS具有广泛的成像,治疗和生物传感临床应用。使用磁性粒子成像MPI模态,可以通过高时的刚性分辨率直接可视化超顺磁MNP。 MPI的图像分辨率取决于MNP的弛豫特性。因此,需要在交替磁场激励下进行MNP响应的表征,以预测MPI成像性能并开发优化的MNP。生物传感应用还利用在与靶剂结合后MNP的弛豫响应的变化。随着MNP弛豫性能随温度和粘度的变化,可以进行这些微环境属性的非侵入性探测。在这项工作中,我们介绍了一个未提升的放松表,以测量宽频和幅度范围的MNP的放松特性。发达的松弛仪可以以高于80 kHz频率的80 kHz磁场产生高于80 kHz的磁场,高于14 MTPP,高达150 kHz频率。不对称的三截面梯度计接收线圈用于取消来自发射线圈的直接耦合信号。使用旋转旋钮手动调谐接收线圈部分之一的位置,以改善去耦。与其他部分相比,调谐线圈部分具有较低的匝数,以降低对机械运动的灵敏度。通过调谐旋钮,发射接收耦合可以减小?80 dB。我们分析了在多频/多功能/多态测量方案中的两种不同市售的超顺磁性氧化铁MNPS周围和Synomag-D的分辨率的X空间图像分辨率,谐波水平和效果。可以使用显影的松弛计有效地测量任意波形的MNP的磁化性能。

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