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A Room Temperature Ultrasensitive Magnetoelectric Susceptometer for Quantitative Tissue Iron Detection

机译:用于定量组织铁检测的室温超灵敏磁电计

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摘要

Iron is a trace mineral that plays a vital role in the human body. However, absorbing and accumulating excessive iron in body organs (iron overload) can damage or even destroy an organ. Even after many decades of research, progress on the development of noninvasive and low-cost tissue iron detection methods is very limited. Here we report a recent advance in a room-temperature ultrasensitive biomagnetic susceptometer for quantitative tissue iron detection. The biomagnetic susceptometer exploits recent advances in the magnetoelectric (ME) composite sensors that exhibit an ultrahigh AC magnetic sensitivity under the presence of a strong DC magnetic field. The first order gradiometer based on piezoelectric and magnetostrictive laminate (ME composite) structure shows an equivalent magnetic noise of 0.99 nT/rt Hz at 1 Hz in the presence of a DC magnetic field of 0.1 Tesla and a great common mode noise rejection ability. A prototype magnetoelectric liver susceptometry has been demonstrated with liver phantoms. The results indicate its output signals to be linearly responsive to iron concentrations from normal iron dose (0.05 mg Fe/g liver phantom) to 5 mg Fe/g liver phantom iron overload (100X overdose). The results here open up many innovative possibilities for compact-size, portable, cost-affordable, and room-temperature operated medical systems for quantitative determinations of tissue iron.
机译:铁是微量矿物质,在人体中起着至关重要的作用。但是,在人体器官中吸收和积累过多的铁(铁过载)会损坏甚至破坏器官。即使经过数十年的研究,非侵入性和低成本组织铁检测方法的开发进展仍然非常有限。在这里,我们报告了室温超灵敏生物磁感应计用于组织铁定量检测的最新进展。生物磁感受器利用了磁电(ME)复合传感器的最新进展,该传感器在强DC磁场的作用下具有超高的AC磁灵敏度。基于压电和磁致伸缩层压板(ME复合材料)结构的一阶梯度仪在存在0.1 Tesla直流磁场的情况下,在1 Hz处显示0.99 nT / rt Hz的等效磁噪声,并且具有出色的共模噪声抑制能力。肝脏体模已证明了原型磁电肝敏感性测量法。结果表明,其输出信号对铁浓度呈线性响应,从正常铁剂量(0.05 mg Fe / g肝幻影)到5 mg Fe / g肝幻影铁超负荷(过量100倍)。此处的结果为用于组织铁定量测定的紧凑型,便携式,价格合理和室温操作的医疗系统提供了许多创新的可能性。

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