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ParAlleL: A Novel Population-Based Approach to Biological Logic Gates

机译:ParAlleL:一种新颖的基于人口的生物逻辑门方法

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摘要

In vivo logic gates have proven difficult to combine into larger devices. Our cell-based logic system, ParAlleL, decomposes a large circuit into a collection of small subcircuits working in parallel, each subcircuit responding to a different combination of inputs. A final global output is then generated by a combination of the responses. Using ParAlleL, for the first time a completely functional 3-bit full adder and full subtractor were generated using Escherichia coli cells, as well as a calculator-style display that shows a numeric result, from 0 to 7, when the proper 3 bit binary inputs are introduced into the system. ParAlleL demonstrates the use of a parallel approach for the design of cell-based logic gates that facilitates the generation and analysis of complex processes, without the need for complex genetic engineering.
机译:体内逻辑门已被证明难以组合成更大的设备。我们基于单元的逻辑系统ParAlleL将大型电路分解为并行工作的小型子电路的集合,每个子电路对输入的不同组合做出响应。然后,通过响应的组合生成最终的全局输出。使用ParAlleL,首次使用大肠杆菌细胞生成了功能齐全的3位全加法器和全减法器,以及当显示正确的3位二进制数时以计算器形式显示的数字结果(从0到7)。输入被引入系统。 ParAlleL演示了如何使用并行方法来设计基于单元的逻辑门,从而无需复杂的基因工程即可促进复杂过程的生成和分析。

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