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用于生物医学应用的自旋电子学平台。

Spintronic platforms for biomedical applications.

机构信息

Instituto de Engenharia de Sistemas e Computadores-Microsistemas e Nanotecnologias, Rua Alves Redol, 9, 1000-029 Lisbon, Portugal.

出版信息

Lab Chip. 2012 Feb 7;12(3):546-57. doi: 10.1039/c1lc20791a. Epub 2011 Dec 7.


DOI:10.1039/c1lc20791a
PMID:22146898
Abstract

Since the fundamental discovery of the giant magnetoresistance many spintronic devices have been developed and implemented in our daily life (e.g. information storage and automotive industry). Lately, advances in the sensors technology (higher sensitivity, smaller size) have potentiated other applications, namely in the biological area, leading to the emergence of novel biomedical platforms. In particular the investigation of spintronics and its application to the development of magnetoresistive (MR) biomolecular and biomedical platforms are giving rise to a new class of biomedical diagnostic devices, suitable for bench top bioassays as well as point-of-care and point-of-use devices. Herein, integrated spintronic biochip platforms for diagnostic and cytometric applications, hybrid systems incorporating magnetoresistive sensors applied to neuroelectronic studies and biomedical imaging, namely magneto-encephalography and magneto-cardiography, are reviewed. Also lab-on-a-chip MR-based platforms to perform biological studies at the single molecule level are discussed. Overall the potential and main characteristics of such MR-based biomedical devices, comparing to the existing technologies while giving particular examples of targeted applications, are addressed.

摘要

自巨磁电阻效应的基本发现以来,许多自旋电子器件已经在我们的日常生活中得到了开发和应用(例如信息存储和汽车工业)。最近,传感器技术的进步(更高的灵敏度、更小的尺寸)推动了其他应用的发展,特别是在生物领域,导致了新型生物医学平台的出现。特别是自旋电子学的研究及其在磁阻(MR)生物分子和生物医学平台开发中的应用,正在引发一类新的生物医学诊断设备,适用于台式生物分析以及即时诊断和即时使用设备。在此,本文综述了用于诊断和细胞计量学应用的集成自旋电子生物芯片平台、将磁阻传感器应用于神经电子学研究和生物医学成像(即脑磁图和心磁图)的混合系统,还讨论了基于芯片的基于 MR 的平台,用于在单分子水平上进行生物学研究。总体而言,讨论了这些基于 MR 的生物医学设备的潜力和主要特点,以及与现有技术相比,同时给出了针对特定应用的实例。

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