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Magneto-thermal-acoustic differential-frequency imaging of magnetic nanoparticle with magnetic spatial localization: A theoretical prediction

机译:具有磁性空间定位的磁性纳米粒子的磁热声差分频率成像:理论预测

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The magneto-thermo-acoustic effect that we predicted in 2013 refers to the generation of acoustic-pressure wave from magnetic nanoparticle (MNP) when thermally mediated under an alternating magnetic field (AMF) at a pulsed or frequency-chirped application. Several independent experimental studies have since validated magneto-thermo- acoustic effect, and a latest report has discovered acoustic-wave generation from MNP at the second-harmonic frequency of the AMF when operating continuously. We propose that applying two AMFs with differing frequencies to MNP will produce acoustic-pressure wave at the summation and difference of the two frequencies, in addition to the two second-harmonic frequencies. Analysis of the specific absorption dynamics of the MNP when exposed to two AMFs of differing frequencies has shown some interesting patterns of acoustic-intensity at the multiple frequency components. The ratio of the acoustic-intensity at the summation-frequency over that of the difference-frequency is determined by the frequency-ratio of the two AMFs, but remains independent of the AMF strengths. The ratio of the acoustic-intensity at the summation- or difference-frequency over that at each of the two second-harmonic frequencies is determined by both the frequency-ratio and the field-strength-ratio of the two AMFs. The results indicate a potential strategy for localization of the source of a continuous-wave magneto-thermal- acoustic signal by examining the frequency spectrum of full-field non-differentiating acoustic detection, with the field-strength ratio changed continuously at a fixed frequency-ratio. The practicalities and challenges of this magnetic spatial localization approach for magneto-thermo-acoustic imaging using a simple envisioned set of two AMFs arranged in parallel to each other are discussed.
机译:我们在2013年预测的磁热声效应是指当在脉冲磁场或chi频率的应用中,在交变磁场(AMF)下热介导时,磁性纳米粒子(MNP)产生声压波。此后进行了几项独立的实验研究,验证了磁热效应,并且最新报告发现,连续运行时,MNP会在AMF的第二谐波频率处产生声波。我们建议将具有不同频率的两个AMF应用于MNP,除了两个二次谐波频率之外,还将在两个频率的总和和差处产生声压波。当暴露于两个不同频率的AMF时,MNP的比吸收动力学分析表明,在多个频率分量处,有一些有趣的声强模式。求和频率处的声强度与差频率处的声强度之比由两个AMF的频率比确定,但与AMF强度无关。求和或差频处的声强与两个二次谐波频率中的声强之比由两个AMF的频率比和场强比共同决定。结果表明,通过检查全场非差分声学检测的频谱,可以确定连续波磁热声信号源的潜在策略,其中场强比在固定频率下连续变化,比。讨论了使用简单的设想的两个彼此平行排列的AMF进行​​磁热声成像的这种磁空间定位方法的实用性和挑战。

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