⚡ 本页包含 AI 生成的分析内容,仅供参考
该论文从信息技术的角度重新审视化学系统,提出将生物化学视为一种信息处理技术,并探讨了利用DNA等生物分子进行编程和自组织的可能性。论文旨在将生物学的信息处理原理引入集成电路设计领域,以启发新的计算范式。
the transistor in 1947, with transistor counts roughly doubling every two years and now exceeding 100 billion on a single chip. One reason this was possible is that computers are an information technology, which permits engineering methods that manage the inherent complexity. Biology establishes that chemistry also is an information technology: all biomolecules are produced according to instructions encoded in DNA, and the resulting biochemical algorithms guide the self-organization of each organism. The potential design space of chemical systems includes all of biology as well as other forms of information-based chemistry that have yet to be explored. Will the engineering of information-based chemical systems follow in the footsteps of information-based electronic systems, with the design complexity increasing exponentially for decades? What lessons do the early years of the computer revolution offer to this field, especially
California Institute of Technology, Pasadena, CA, Solid-state electronic circuits have grown at an astounding rate since the invention of