摘要 粘贴模型(sticker model)是DNA计算中一个很重要的模型.其主要原理就是采用单双链混合型DNA分子进行编码,其优点在于在生物操作过程中不需要DNA链的延伸,不...
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In thisdissertation, we introduce a new biologic molecule-PNA to sticker model, and attemptto reduce the number of experiment steps.
本文通过将一种新的生物分子-PNA 引入到粘贴模型中,尝试减少计算过程中的分子操作次数。
参考来源 - 若干DNA计算粘贴模型的研究·2,447,543篇论文数据,部分数据来源于NoteExpress
最后我们利用粘贴模型的基本原理,运用荧光标记技术,提出了最小顶点覆盖问题的表面技术解决方案。
Finally, the solution of the minimal covering problem on surface using fluorescence marking technology is proposed based on the principle of sticker model.
基于粘贴模型的巨大并行性,给出了一类禁位排列问题的粘贴DNA算法,分别使用扩展的分离操作和扩展的多级分离操作实现了该算法。
A sticker DNA algorithm is proposed based on the vast parallelism of sticker model, and be carried out it by extended separate and extended multi-separate respectively.
此外,我们想要完全地从逻辑模型分析出那些实现细节,并且在代码生成过程中将它们这些细节作为参数“粘贴进来”。
Furthermore, we would like to factor out those implementation details completely from the logical model and have them details "pasted in" as parameters during the code generation process.
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