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Material Memristive Device Circuits with Synaptic Plasticity: Learning and Memory

机译:具有突触可塑性的材料忆阻器件电路:学习和记忆

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摘要

An important endeavor in modern materials science is the synthesis of adaptive assemblies with information processing capabilities similar to those of biological neural systems. Recent developments concern materials functionally similar to the memristor, a notional electrical circuit whose conductivity is dependent on past activity. This feature is analogous to synaptic plasticity: the ability of neurons to modify their synaptic connections as a result of accumulated experience—the basis of learning and the formation of memory. In this paper, we present the first evidence that memristive device-based organic materials show adaptive behavior similar to biological cognitive systems, using learning in the feeding neural network of the pond snail, Lymnaea stagnalis, as a specific biological reference. The synthetic reproduction of synaptic plasticity reported here can create new paradigms for novel computing systems and give impetus to the search for bio-inspired nanoscale molecular architectures capable of learning and decision making.
机译:现代材料科学的一项重要工作是合成具有信息处理能力的自适应组件,该功能类似于生物神经系统。最近的发展涉及功能类似于忆阻器的材料,忆阻器是一种概念电路,其电导率取决于过去的活动。此功能类似于突触可塑性:由于积累的经验(学习的基础和记忆的形成),神经元改变其突触连接的能力。在本文中,我们提供了第一个证据,以忆阻器为基础的有机材料显示了类似于生物学认知系统的适应性行为,利用池塘蜗牛的饲喂神经网络中的学习,田鼠(Lymnaea stagnalis)作为特定的生物学参考。本文报道的突触可塑性的合成复制可以为新型计算系统创造新的范例,并推动寻找能够学习和决策的受生物启发的纳米级分子结构。

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