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Characterizing the reliability of a bioMEMS-based cantilever sensor.

机译:表征基于生物MEMS的悬臂传感器的可靠性。

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摘要

The cantilever-based BioMEMS sensor represents one instance from many competing ideas of biosensor technology based on Micro Electro Mechanical Systems. The advancement of BioMEMS from laboratory-scale experiments to applications in the field will require standardization of their components and manufacturing procedures as well as frameworks to evaluate their performance.; Reliability, the likelihood with which a system performs its intended task, is a compact mathematical description of its performance. The mathematical and statistical foundation of systems-reliability has been applied to the cantilever-based BioMEMS sensor. The sensor is designed to detect one aspect of human ovarian cancer, namely the over-expression of the folate receptor surface protein (FR-alpha). Even as the application chosen is clinically motivated, the objective of this study was to demonstrate the underlying systems-based methodology used to design, develop and evaluate the sensor. The framework development can be readily extended to other BioMEMS-based devices for disease detection and will have an impact in the rapidly growing {dollar}30 bn industry.; The Unified Modeling Language (UML) is a systems-based framework for design and development of object-oriented information systems which has potential application for use in systems designed to interact with biological environments. The UML has been used to abstract and describe the application of the biosensor, to identify key components of the biosensor, and the technology needed to link them together in a coherent manner. The use of the framework is also demonstrated in computation of system reliability from first principles as a function of the structure and materials of the biosensor.; The outcomes of applying the systems-based framework to the study are the following: (1) Characterizing the cantilever-based MEMS device for disease (cell) detection. (2) Development of a novel chemical interface between the analyte and the sensor that provides a degree of selectivity towards the disease. (3) Demonstrating the performance and measuring the reliability of the biosensor prototype, and (4) Identification of opportunities in technological development in order to further refine the proposed biosensor.; Application of the methodology to design develop and evaluate the reliability of BioMEMS devices will be beneficial in the streamlining the growth of the BioMEMS industry, while providing a decision-support tool in comparing and adopting suitable technologies from available competing options.
机译:基于悬臂的BioMEMS传感器代表了许多基于微机电系统的生物传感器技术相互竞争的例子。 BioMEMS从实验室规模的试验发展到该领域的应用,将需要对其组件和制造程序以及评估其性能的框架进行标准化。可靠性(系统执行其预期任务的可能性)是对其性能的紧凑数学描述。系统可靠性的数学和统计基础已应用于基于悬臂的BioMEMS传感器。该传感器旨在检测人类卵巢癌的一个方面,即叶酸受体表面蛋白(FR-alpha)的过度表达。即使所选的应用程序具有临床动机,该研究的目的仍是证明用于设计,开发和评估传感器的基于系统的基本方法。框架的开发可以很容易地扩展到其他基于BioMEMS的疾病检测设备,并将对迅速发展的300亿美元的产业产生影响。统一建模语言(UML)是用于设计和开发面向对象的信息系统的基于系统的框架,该框架在设计用于与生物环境进行交互的系统中具有潜在的应用程序。 UML已被用来抽象和描述生物传感器的应用,识别生物传感器的关键组件以及将它们以连贯的方式链接在一起的技术。该框架的使用还证明了根据第一原理根据生物传感器的结构和材料来计算系统可靠性。将基于系统的框架应用于研究的结果如下:(1)表征用于疾病(细胞)检测的基于悬臂的MEMS设备。 (2)在分析物和传感器之间开发了一种新颖的化学界面,该界面为疾病提供了一定程度的选择性。 (3)演示生物传感器原型的性能并测量其可靠性,以及(4)识别技术发展中的机会,以进一步完善所提出的生物传感器。将方法论应用于设计开发和评估BioMEMS器件的可靠性,将有助于简化BioMEMS工业的增长,同时提供一个决策支持工具,用于比较和采用现有竞争产品中的合适技术。

著录项

  • 作者

    Bhalerao, Kaustubh D.;

  • 作者单位

    The Ohio State University.;

  • 授予单位 The Ohio State University.;
  • 学科 Engineering Materials Science.; Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 135 p.
  • 总页数 135
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;生物医学工程;
  • 关键词

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