Logical gates in ensembles of proteinoid microspheres

Logical gates in ensembles of proteinoid microspheres
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类蛋白微球集合中的逻辑门

DOI:
10.1101/2023.07.19.549774
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发表时间:
2023
期刊:
--
影响因子:
--
通讯作者:
Mougkogiannis P
Mougkogiannis P
中科院分区:
--
文献类型:
--
作者:
Mougkogiannis P

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类蛋白质是热蛋白质,其在水溶液中溶胀成微球。类蛋白的集合体产生类似于神经元的电尖峰活动。我们介绍了一种新的方法来实现逻辑门的合奏类蛋白微球使用计时电流法。计时电流法是一种涉及向类蛋白微球施加电压脉冲并测量其电流响应的技术。我们已经观察到,类蛋白表现出不同的电流模式,与各种逻辑输出。我们识别四种类型的逻辑门:AND,OR,XOR和NAND。这些门由类蛋白微球的电流响应决定。此外,我们证明了类蛋白微球有能力随着时间的推移修改其电流响应,这是由他们以前的暴露电压的影响。这表明他们具有学习能力,能够适应环境。我们的研究展示了类蛋白微球通过其固有的电特性进行逻辑运算和计算的能力。
Proteinoids are thermal proteins which swell into microspheres in aqueous solution. Ensembles of proteinoids produce electrical spiking activity similar to that of neurons. We introduce a novel method for implementing logical gates in the ensembles of proteinoid microspheres using chronoamperometry. Chronoamperometry is a technique that involves applying a voltage pulse to proteinoid microspheres and measuring their current response. We have observed that proteinoids exhibit distinct current patterns that align with various logical outputs. We identify four types of logical gates: AND, OR, XOR, and NAND. These gates are determined by the current response of proteinoid microspheres. Additionally, we demonstrate that proteinoid microspheres have the ability to modify their current response over time, which is influenced by their previous exposure to voltage. This indicates that they possess a capacity for learning and are capable of adapting to their environment. Our research showcases the ability of proteinoid microspheres to perform logical operations and computations through their inherent electrical properties.
莫勒库勒
DOI: --
发表时间: 2019
期刊: Physik
影响因子: --
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DOI: --
发表时间: 2003
期刊:
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DOI: 10.1002/ange.200906705
发表时间: 2010
期刊: Angewandte Chemie
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通讯作者: Uwe Pischel
DOI: 10.21203/rs.3.rs-2432080/v1
发表时间: 2023
期刊: --
影响因子: --
作者:
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DOI: 10.1016/s0006-3495(91)82343-8
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影响因子: 3.4
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