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首页> 外文期刊>Journal of Bioinformatics and Computational Biology >THEORETICALLY MODELING MICROARRAY WITH THE CHEMICAL EQUILIBRIUM AND THERMODYNAMICS
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THEORETICALLY MODELING MICROARRAY WITH THE CHEMICAL EQUILIBRIUM AND THERMODYNAMICS

机译:用化学平衡和热力学理论模拟微阵列

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To date, the idea that microarray may shed the light on cellular processes by identifying groups of genes that appear to be co-expressed seems to remain a dream. This is partly because that there are some blank (meaning the knowledge is unavailable) or even erroneous areas in the fundamental theory in this field. This paper attempts to present the digest of microarray hybridization system with chemical thermodynamics, theoretically clarifying some misunderstandings and looking for answers to some critical questions around this technology, such as the mechanisms and conditions of quantitative measuring by hybridization reaction, the reasons of inconsistency of the data and the analysis results and the solutions, how to analyze the data, etc. A theoretical model for the next generation of microarray is proposed. We believe that this model is universal, laying the foundation for microarray technology from array design through the data analysis.
机译:迄今为止,微阵列可以通过识别似乎共表达的基因组来揭示细胞过程的想法似乎仍然是一个梦想。部分原因是该领域的基础理论中存在一些空白(意味着知识不可用)甚至是错误的领域。本文试图介绍具有化学热力学特性的微阵列杂交系统的摘要,从理论上澄清一些误解,并寻求有关该技术的一些关键问题的答案,例如通过杂交反应进行定量测量的机理和条件,分析方法不一致的原因。数据,分析结果,解决方案,数据分析方法等。提出了下一代微阵列的理论模型。我们相信该模型是通用的,为从阵列设计到数据分析的微阵列技术奠定了基础。

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