Biochemical sensors

生化传感器
  • 文章类型: Journal Article
    尽管近年来基于可穿戴设备的移动健康发展迅速,缺乏生化检测仍然是大多数商业可穿戴设备面临的重要挑战,这阻碍了为疾病控制策略提供有效的电子健康记录(EHR),进一步制约了个性化精准医疗的发展。在这里,我们提出了一种将生化检测功能移植到商业手镯上的策略。不同于传统的设计一种全新的可穿戴生化设备的开发过程,我们更喜欢升级现有的商业可穿戴设备,以实现更简单的,更快,以及更有效的研究和商业化过程。一个经济实惠和用户友好的生化按钮模块已被设计,能够集成敏感,具体,和快速生化检测功能进入手镯表带上的闲置空间,而不会增加主体的尺寸。这个“智能手链加”显示了同时监测物理和生化信号的能力,并将作为一个可靠和系统的个人诊断和监测平台,为疾病控制策略提供实时EHR,并提高医疗保健系统的效率。
    Despite the rapid development of mobile health based on wearable devices in recent years, lack of access to biochemical detection remains a vital challenge for most commercial wearable devices, which hinders the provision of effective electronic health records (EHRs) for disease control strategies, and further constraining the development of personalized precision medicine. Herein, we propose a strategy to graft biochemical detection function onto commercial bracelet. Different from the conventional development process of designing a completely new wearable biochemical device, we prefer to upgrade existing commercial wearable device to achieve simpler, faster, and more effective research and commercialization processes. An affordable and user-friendly biochemical button module has been designed that enables to integrate sensitive, specific, and rapid biochemical detection function into the idle space on the strap of the bracelet without increasing the size of the main body. This \"Smart Bracelet Plus\" shows the ability to simultaneously monitor physical and biochemical signals, and will serve as a reliable and systematic personal diagnostics and monitoring platform for providing real-time EHRs for disease control strategies and improving the efficiency of the healthcare system.
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  • 文章类型: Journal Article
    由于其生物相容性,石墨烯在生物医学应用中仍然受到极大的关注。与人类感官有关的疾病会干扰生活满意度和幸福感。因此,人工器官或感觉装置的修复可能会通过患者感觉的恢复带来光明的未来。在这次审查中,我们更新了基于石墨烯的传感器的最新进展,用于模仿人类感官,例如用于图像传感器的人造视网膜,人造耳膜,气体传感器,化学传感器,和触觉传感器。讨论了基于常规晶体管以及与忆阻器相关的神经形态计算的类脑处理器。脑机接口被引入用于提供单个路径。此外,基于石墨烯的人造肌肉被总结为执行器的手段,以便对物理世界做出反应。未来的机会仍然是提高人类传感器的性能及其临床应用。
    Graphene remains of great interest in biomedical applications because of biocompatibility. Diseases relating to human senses interfere with life satisfaction and happiness. Therefore, the restoration by artificial organs or sensory devices may bring a bright future by the recovery of senses in patients. In this review, we update the most recent progress in graphene based sensors for mimicking human senses such as artificial retina for image sensors, artificial eardrums, gas sensors, chemical sensors, and tactile sensors. The brain-like processors are discussed based on conventional transistors as well as memristor related neuromorphic computing. The brain-machine interface is introduced for providing a single pathway. Besides, the artificial muscles based on graphene are summarized in the means of actuators in order to react to the physical world. Future opportunities remain for elevating the performances of human-like sensors and their clinical applications.
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  • 文章类型: Journal Article
    纳米生化传感器在检测与人类疾病相关的生物标志物中发挥着重要作用,碳纳米管(CNTs)以其特殊的结构和优异的电子性能成为推动该领域蓬勃发展的重要因素。本文主要研究碳纳米管场效应晶体管(CNT-FET)生化传感器在生物标志物检测中的应用。首先,制备方法,介绍了碳纳米管的物理和电子性质以及功能改性。然后,介绍了CNT-FET的结构和传感机理。最后,核酸检测的最新进展,蛋白质,细胞,总结了基于气体和离子的CNT-FET传感器。
    Nano biochemical sensors play an important role in detecting the biomarkers related to human diseases, and carbon nanotubes (CNTs) have become an important factor in promoting the vigorous development of this field due to their special structure and excellent electronic properties. This paper focuses on applying carbon nanotube field-effect transistor (CNT-FET) biochemical sensors to detect biomarkers. Firstly, the preparation method, physical and electronic properties and functional modification of CNTs are introduced. Then, the configuration and sensing mechanism of CNT-FETs are introduced. Finally, the latest progress in detecting nucleic acids, proteins, cells, gases and ions based on CNT-FET sensors is summarized.
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  • 文章类型: Journal Article
    本文综述了基于石墨烯的纳米电子生化传感器的最新发展。由单层共轭碳原子组成,石墨烯具有出色的高载流子迁移率和低固有电噪声,而是化学惰性的表面。因此,表面功能化对于解开石墨烯灵敏度和用于检测目标分析物的选择性至关重要。为了实现用于生化传感的石墨烯晶体管的最佳性能,突出了通过表面功能化和钝化调节石墨烯表面性质,以及通过利用多频双极配置和高频测量方案来克服德拜筛选以实现低噪声和高灵敏度检测,从而调谐其电气操作。超灵敏石墨烯电子生化传感器的潜在应用和前景,包括环境监测和食品安全,医疗保健和医疗诊断,生命科学研究,也被介绍了。
    This review provides a critical overview of current developments on nanoelectronic biochemical sensors based on graphene. Composed of a single layer of conjugated carbon atoms, graphene has outstanding high carrier mobility and low intrinsic electrical noise, but a chemically inert surface. Surface functionalization is therefore crucial to unravel graphene sensitivity and selectivity for the detection of targeted analytes. To achieve optimal performance of graphene transistors for biochemical sensing, the tuning of the graphene surface properties via surface functionalization and passivation is highlighted, as well as the tuning of its electrical operation by utilizing multifrequency ambipolar configuration and a high frequency measurement scheme to overcome the Debye screening to achieve low noise and highly sensitive detection. Potential applications and prospectives of ultrasensitive graphene electronic biochemical sensors ranging from environmental monitoring and food safety, healthcare and medical diagnosis, to life science research, are presented as well.
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