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In vivo pulsed magneto-motive ultrasound imaging using high-performance magnetoactive contrast nanoagents

机译:体内脉冲magneto-motive超声波成像使用高性能磁活化的对比nanoagents

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Previously, pulsed magneto-motive ultrasound (pMMUS) imaging has been introduced as a contrast-agent-assisted ultrasound-based imaging modality capable of visualizing biological events at the cellular and molecular level. In pMMUS imaging, a high intensity pulsed magnetic field is used to excite cells or tissue labeled with magnetic nanoparticles. Then, ultrasound (US) imaging is used to monitor the mechanical response of the tissue to an externally applied magnetic field (i.e., tissue displacement). Signal to noise ratio (SNR) in pMMUS imaging can be improved by using superparamagnetic nanoparticles with larger saturation magnetization. Metal-doped magnetic nanoparticles with enhanced tunable nanomagnetism are suitable candidates to improve the SNR and, therefore, sensitivity of pMMUS imaging, which is essential for in vivo pMMUS imaging. In this study, we demonstrate the capability of pMMUS imaging to identify the presence and distribution of zinc-doped iron oxide nanoparticles in live nude mice bearing A431 (human epithelial carcinoma) xenograft tumors.
机译:此前,脉冲magneto-motive超声波(pMMUS)成像已经被引入contrast-agent-assisted ultrasound-based成像形态可视化生物事件的能力在细胞和分子水平。成像、高强度的脉冲磁场是用来激发细胞或组织标记磁性纳米粒子。成像用于监控机械反应组织的外部应用磁场(即组织位移)。信号噪声比(信噪比)pMMUS成像通过使用超顺磁的得到改善纳米粒子与较大的饱和磁化。与增强的可调nanomagnetism是合适的候选人来提高信噪比,因此,pMMUS成像的敏感性,这是至关重要的为体内pMMUS成像。演示pMMUS成像的能力确定的存在和分布zinc-doped氧化铁纳米粒子在裸体生活老鼠轴承A431(人类上皮癌)异种移植肿瘤。

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