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The Preliminary Study Of Giant Magnetoresistance SensorFor Detection Of Oxygen In Human Blood

机译:巨型磁阻传感器检测人血氧气的初步研究

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In recent years, there has been great progress for applications of nanomaterials in medicine field. Human body consists of many atoms and they can be treated like as nanomaterials. One of them is oxygen. Oxygen is always found in the human blood. Its concentration in human blood gives information about the metabolism in the body. The purpose of this study was to look for a possibility for developing tool to detect the concentration of oxygen in blood. In this study, the giant-magneto-resistance (GMR) sensor is implemented. The GMR sensor has many attractive features, for example: reduced size, low-power consumption, low price, as compared to other magnetic sensors and its electric and magnetic properties can be varied in very wide range. In this experiment, we developed the structure of GMR materials NiCoFe/Cu/NiCoFe sandwich as a GMR sensor. The NiCoFe/Cu/NiCoFe sandwiches were grown onto Si (111) substrates by the dc-opposed target magnetron sputtering (dc-OTMS) technique. The sputtering targets were NiCoFe and Cu. To achieve the aims of this study, the blood transports in human will be simulated using a simple experimental model. This model has some parameters representing those in blood transport. Furthermore, the nanomagnetic material will be made as a contaminant particle in blood. Using this material some properties of the transport will be investigated.
机译:近年来,出现了在医药领域的纳米材料应用的巨大进步。人体由许多原子组成,它们可以像纳米材料进行处理。其中之一是氧气。氧总是在人的血液中发现。它在人体血液中浓度给出了关于在体内代谢的信息。这项研究的目的是寻求开发工具来检测血液中氧的浓度的可能性。在这项研究中,巨磁电阻(GMR)传感器实现。 GMR传感器具有许多吸引人的特征,例如:减小的尺寸,低功率消耗,低价格,相对于其他的磁传感器和它的电和磁属性可以在很宽的范围内变化。在这个实验中,我们开发了GMR材料NiCoFe /铜/ NiCoFe三明治的结构作为GMR传感器。的NiCoFe /铜/ NiCoFe三明治生长在Si(111)由DC-相对靶磁控溅射基板(DC-OTMS)技术。溅射目标是NiCoFe和铜。为了实现这个研究的目的,在人体血液中传输将通过一个简单的实验模型来模拟。这种模式有较那些在血液运输的一些参数。此外,纳米磁性材料将被制成作为血液中的污染颗粒。使用这种材料运输的一些性质进行调查。

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