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Cellular Automata Analysis on Self-assembly Properties in DNA Tile Computing

机译:DNA瓦片计算中自组装属性的元胞自动机分析

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An Analysis on the self-assembly process in DNA tile computing is presented using the cellular automata approach. It is known that a cellular automata model can simulate various complex systems by updating the states of calculation cells based on the local interaction rules. Generally DNA computing is operated through the local interaction between complimentary strands. Therefore the cellular automata approach is suitable to investigate qualitative features of such systems. Focusing on the cryptosystem using a DNA motif called a triple crossover (TX) tile, we construct a new cellular automata model. Our objective is to find a solution to improve the fragmentation problem in the self-assembly process of a calculation sheet of TX tiles, because the fragmentation prevents the system from realizing the sufficient performance. Our results suggest that such fragmentation occurs when the error correction function is lost due to the strong stability of local interaction. It is expected that these findings using cellular automata simulations provide effective information to solve the problems to develop practical applications of DNA-based computation.
机译:利用细胞自动机方法对DNA瓦片计算中的自组装过程进行了分析。众所周知,元胞自动机模型可以通过基于局部交互规则更新计算单元的状态来模拟各种复杂的系统。通常,DNA计算是通过互补链之间的局部相互作用进行的。因此,细胞自动机方法适合研究此类系统的定性特征。着眼于使用称为三重交叉(TX)瓦片的DNA主题的密码系统,我们构建了一个新的细胞自动机模型。我们的目标是找到一种解决方案,以改善TX瓦片计算表的自组装过程中的碎片问题,因为碎片会阻止系统实现足够的性能。我们的结果表明,由于本地交互的强大稳定性而导致错误纠正功能丢失时,会发生此类碎片。预期使用细胞自动机模拟的这些发现将提供有效的信息,以解决这些问题,从而发展基于DNA的计算的实际应用。

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