首页> 外文会议>International Conference of Computational Methods in Sciences and Engineering 2005 >Introducing Chemical Engineering Processes into Optimal Design of Measuring Systems Equipped with Biosensors
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Introducing Chemical Engineering Processes into Optimal Design of Measuring Systems Equipped with Biosensors

机译:将化学工程流程引入配备生物传感器的测量系统的最佳设计

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Biosensors as 'dip in and register' devices, generically offer simplified reagentless analyses for a range of biomedical and industrial applications and for this reason this area has continued to develop into an ever-expanding and multidisciplinary field during the last decades. Just moving from the proof-of-concept stage to field testing and commercialization, they require the establishment of chemical engineering processes for their advancement to measuring equipments. This work presents a decision support system for the selection of sample treatment to precede biosensing, in order to minimize interference. The proposed system is comprised of (a) a Knowledge Base developed through rules based reasoning from four separate databases relating to biosensors, treatment processes, samples and application environment, used to provide the alternatives that are re-evaluated through case-based reasoning by a separate whole cases database and (b) an integrated fuzzy multicriteria analysis method (FMCA) to provide the optimal solutions, tailor-made by the authors to help researchers engaged in biosensor development to select the best biosensor-pretreatment method suited for a specific application while fulfilling a set of technoeconomic criteria. The algorithmic procedure developed by the authors for the realization of the selection procedure has been implemented in the case of reduced glutathione measurement in serum.
机译:生物传感器作为'DIP进入和登记设备的设备,通常提供一系列生物医学和工业应用的简化无可文体分析,因此该地区在过去几十年中,该地区继续发展成为一个不断扩大的多学科领域。刚刚从概念证明阶段迁移到现场测试和商业化,他们要求建立化学工程过程,以实现对测量设备的进步。这项工作提出了一种决策支持系统,用于选择样品处理,以便最大限度地减少干扰。所提出的系统由(a)通过与生物传感器,治疗过程,样本和应用环境相关的四个单独的数据库通过基于规则的推理制定的知识库,用于提供通过基于案例的推理重新评估的替代方案单独的整个情况数据库和(b)一个集成的模糊多轨道分析方法(FMCA)提供最佳解决方案,由作者量身定制,帮助从事生物传感器开发的研究人员选择适合特定应用的最佳生物传感器预处理方法履行一系列技术经济标准。作者开发的算法过程用于实现选择过程的情况下在血清中降低的谷胱甘肽测量的情况下已经实施。

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