在这研究, DNA 逻辑计算模型基于自己组装的 DNA 和海滨分支移植的方法被建立。由增加信号海滨,预编程的信号与起始的集会结构瓦解被释放。然后,计算结果能被胶化电气泳动检测。整个进程自动地被控制并且 parallely,甚至由输入信号的混合被触发。另外,极、双极的单身者的概念被介绍进系统设计,它导致同步和模块化。认出特定的信号 DNA 搁浅,计算模型由胶化实验给所有正确结果。
In this study, the DNA logic computing model is established based on the methods of DNA self-assembly and strand branch migration. By adding the signal strands, the preprogrammed signals are released with the disintegrating of initial assembly structures Then, the computing results are able to be detected by gel electrophoresis. The whole process is controlled automatically and parallely, even triggered by the mixture of input signals. In addition, the conception of single polar and bipolar is introduced into system designing, which leads to synchronization and modularization. Recognizing the specific signal DNA strands, the computing model gives all correct results by gel experiment.