An Ultrasensitive Magnetoelectric Sensor System For the Quantitative Detection of Liver Iron.

Hao Xi, Meng-Chien Lu, Xiaoshi Qian, Q M Zhang, Sebastian Rupprecht, Qing X Yang
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引用次数: 2

Abstract

Ultrasensitive magnetoelectric (ME) sensors have been developed using magnetostrictive/piezoelectric laminate heterostructures. This paper discusses a highly interdisciplinary design of a room temperature biomagnetic liver susceptometry system (BLS) based on the ME sensors. The ME-sensor based BLS maintains the ultrahigh sensitivity to detect the weak AC biomagnetic signals and introduces a low equivalent magnetic noise. The results reveal a "turning point" and successfully indicate the output signals to be linearly responsive to iron concentrations from normal iron level (0.05 mgFe/gliver phantom) to 5 mgFe/gliver phantom iron overload level (100X overdose). Further, the introduction of the water-bag technique shows the promise on the automatic deduction of the background (tissue) signal, enabling an even higher sensitivity and better signal-to-noise (SNR). With these improvements, it becomes feasible to get improved characterization flexibility and the field distribution mapping potential via signal processing from the correlations of multiple sensors in the system. Considering the wide presence of biomagnetic signals in human organs, the potential impact of such biomagnetic devices on medicine and health care could be enormous and far-reaching.

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用于肝铁定量检测的超灵敏磁电传感器系统。
利用磁致伸缩/压电叠层异质结构研制了超灵敏磁电传感器。本文讨论了一种基于ME传感器的室温生物磁肝电纳测量系统(BLS)的跨学科设计。基于me传感器的BLS保持了对微弱交流生物磁信号的超高灵敏度,并引入了较低的等效磁噪声。结果揭示了一个“转折点”,并成功地表明输出信号与铁浓度线性响应,从正常铁水平(0.05 mgFe/gliver phantom)到5 mgFe/gliver phantom铁过载水平(100倍过量)。此外,水袋技术的引入显示了自动扣除背景(组织)信号的前景,实现了更高的灵敏度和更好的信噪比(SNR)。有了这些改进,通过对系统中多个传感器的相关性进行信号处理,获得更高的表征灵活性和场分布映射潜力成为可能。考虑到生物磁信号在人体器官中的广泛存在,这种生物磁装置对医学和卫生保健的潜在影响可能是巨大而深远的。
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