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微流控芯片应用进展 被引量:7

Progress of Application of Microfluidic Chip
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摘要 微机械加工技术的发展促进了微全分析系统(μTAS)的广泛发展。芯片实验室具有多种单元技术灵活组合和大规模集成的特点,并且反应时间快,样品消耗小,反应速率高,从而广泛应用于各个研究领域。本文将主要从微流控芯片在蛋白质、核酸、细胞培养、临床诊断等方面的应用进行综述。 With progresses of micromachining and microsystem, kinds of available micro-manufacture technologies were developed and improved,which promoted the abroad progress of micro total analysis system (μTAS). Lab on a chip is a flexible combination and mass integration of a number of units. It takes less time and requires fewer samples,and is applied widely in various research areas. This paper is intended as an introduction and early compendium for the application of μTAS.
出处 《化学通报》 CAS CSCD 北大核心 2010年第10期892-899,共8页 Chemistry
基金 国家自然科学基金项目(20905007) 教育部新世纪优秀人才支持计划项目(NCET-08-0048)资助
关键词 微全分析系统 微流控 芯片实验室 μTAS Microfluidic chip Lab-on-a-Chip
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