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Computation of decision problems within messages in DNA-tile-based molecular nanonetworks

机译:基于DNA-tile的分子纳米网络中消息内决策问题的计算

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Akyildiz et al. envisioned the use of nanonetworks as a new paradigm for computation and communication on a very small scale.We present a new approach to implement nanonetworks with molecular communication using tile-based self-assembly systems on the basis of DNA. In this model, the medium of communication is filled with DNA-based molecules. Furthermore, some nanobots are capable of creating or releasing said molecules. Once present, they can be detected by other nanobots and interpreted as messages. Some DNA-based molecule systems are capable of universal computation. We show that it is possible to construct systems, in which the evaluation to TRUE of an arbitrary decision problem is a precondition for the assembly of a message molecule. We relocate computations from nanobots into message molecules, thereby revolutionizing the paradigm for computation in nanonetworks. This approach can be interpreted as computation inside the communication channel. We further present message molecules that only assemble if a marker has been detected at least k times, as a proof of concept. (C) 2019 Elsevier B.V. All rights reserved.
机译:Akyildiz等。设想将纳米网络用作在很小的规模上进行计算和通信的新范例。我们提出了一种新的方法,该方法使用基于图块的基于DNA的自组装系统与分子通信来实现纳米网络。在此模型中,通讯介质充满了基于DNA的分子。此外,一些纳米机器人能够产生或释放所述分子。一旦存在,它们就可以被其他纳米机器人检测到并解释为消息。一些基于DNA的分子系统能够进行通用计算。我们表明,有可能构建一个系统,其中对任意决策问题的TRUE求值是组装消息分子的前提。我们将计算从纳米机器人重新定位到消息分子中,从而彻底改变了纳米网络中的计算范式。这种方法可以解释为通信通道内部的计算。作为概念的证明,我们还提出了仅在至少检测到k次标记的情况下才会组装的消息分子。 (C)2019 Elsevier B.V.保留所有权利。

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