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Long-Term Homeostatic Properties Complementary to Hebbian Rules in CuPc-Based Multifunctional Memristor

机译:基于CuPc的多功能忆阻器的Hebbian规则的长期稳态特性

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摘要

Most simulations of neuroplasticity in memristors, which are potentially used to develop artificial synapses, are confined to the basic biological Hebbian rules. However, the simplex rules potentially can induce excessive excitation/inhibition, even collapse of neural activities, because they neglect the properties of long-term homeostasis involved in the frameworks of realistic neural networks. Here, we develop organic CuPc-based memristors of which excitatory and inhibitory conductivities can implement both Hebbian rules and homeostatic plasticity, complementary to Hebbian patterns and conductive to the long-term homeostasis. In another adaptive situation for homeostasis, in thicker samples, the overall excitement under periodic moderate stimuli tends to decrease and be recovered under intense inputs. Interestingly, the prototypes can be equipped with bio-inspired habituation and sensitization functions outperforming the conventional simplified algorithms. They mutually regulate each other to obtain the homeostasis. Therefore, we develop a novel versatile memristor with advanced synaptic homeostasis for comprehensive neural functions.
机译:忆阻器中神经可塑性的大多数模拟都可能被用于发展人工突触,但仅限于基本的希伯来生物规则。但是,单纯形规则可能会导致过度的兴奋/抑制,甚至破坏神经活动,因为它们忽略了现实神经网络框架中涉及的长期稳态的特性。在这里,我们开发了基于有机CuPc的忆阻器,其兴奋性和抑制性电导率可以实现Hebbian规则和稳态可塑性,与Hebbian模式互补,并且可以长期保持稳态。在动态平衡的另一种自适应情况下,在较厚的样本中,在周期性适度刺激下的总体兴奋度倾向于降低,并在强烈的投入下得以恢复。有趣的是,原型可以配备优于传统简化算法的,具有生物启发性的习惯化和敏化功能。它们相互调节以获得稳态。因此,我们开发了一种新型的具有先进突触稳态功能的多功能忆阻器,用于全面的神经功能。

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