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Highly sensitive magneto-motive photoacoustic and ultrasound (PAUS) imaging with cyclic excitations

机译:具有循环激励的高灵敏磁动力光声和超声(PAUS)成像

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摘要

Highly specific molecular imaging with photoacoustics (PA) must suppress background endogenous signals while maintaining signals from target nanoagents. Magneto-motive PA was introduced to perform motion-based background suppression using a low frequency magnetic field. Previous studies show suppression based on displacement magnitude can suffer if significant physiological motion is present. This limitation can be overcome using cyclic magneto-motive PA (cmmPA), where multiple cycles of an ac magnetic field are used and the coherence of detected displacements is the retrieved information. In this paper, we show a method to enhance the magnetic response of an electromagnet specifically for cmmPA. Several magnetic frequencies were tested and a simple model is proposed to describe displacement frequency dependence. By choosing optimal parameters based on this model, we show that the technique can detect a low number of tagged cells using either US-based or PA-based displacement estimation. In addition, robustness to physiological motion is demonstrated in a moving phantom.
机译:使用光声(PA)进行高度特异性的分子成像必须抑制背景内源性信号,同时保持来自目标纳米剂的信号。引入了磁动功率放大器,以利用低频磁场执行基于运动的背景抑制。先前的研究表明,如果存在明显的生理运动,则基于位移幅度的抑制会受到影响。使用循环磁动PA(cmmPA)可以克服此限制,其中使用了多个交流磁场周期,并且检测到的位移的相干性是检索到的信息。在本文中,我们展示了一种增强cmmPA专用电磁体磁响应的方法。测试了多个磁频率,并提出了一个简单的模型来描述位移频率依赖性。通过基于此模型选择最佳参数,我们表明该技术可以使用基于US或基于PA的位移估计来检测少量的标记细胞。另外,在运动的体模中证明了对生理运动的鲁棒性。

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