Firing dynamics and its energy property of neuron are crucial for exploring the mechanism of intricate information processing within the nervous system. However, the energy analysis of discrete neuron is significantly lacking in comparison to the vast literature and mature theory available on continuous neuron, thereby necessitating a focused effort in this underexplored realm. In this paper, we introduce a Chaivlo neuron map by employing a flux-controlled memristor to simulate electromagnetic radiation (EMR), and a detailed analysis of its firing dynamics is conducted based on an equivalent Hamiltonian energy approach. Our observations reveal that a range of energy-based firing behaviors, such as spike firing, coexistence firing, mixed-mode firing, and chaotic bursting firing, can be induced by EMR and injected current. To delve deeper into the synchronous firing dynamics, we establish a Chaivlo network by electrically coupling two memristive EMR-based Chaivlo neurons. Subsequently, we experimentally evaluate the synchronization behavior of this network by quantifying both the synchronization factor and the average difference of equivalent Hamiltonian energy. Our findings conclusively demonstrate that both EMR and coupling strength positively contribute to the network's synchronization ability.

Download full-text PDF

Source
http://dx.doi.org/10.1063/5.0229072DOI Listing

Publication Analysis

Top Keywords

firing dynamics
16
firing
9
memristive emr-based
8
emr-based chaivlo
8
chaivlo neuron
8
energy approach
8
equivalent hamiltonian
8
hamiltonian energy
8
neuron
5
energy
5

Similar Publications

Adapting to change: an analysis of midwives' job satisfaction in the post-pandemic workplace.

BMC Health Serv Res

January 2025

Faculty of Health Sciences, University of Primorska, Polje 42, 6310, Izola, Slovenia.

Background: Midwifery faces global workforce shortages exacerbated by the pandemic. Understanding job satisfaction drivers is vital for creating supportive work environments. This study explored the multifaceted nature of job satisfaction of midwives in the post-COVID era in order to understand the elements that contribute and the ones that don't to midwives' sense of fulfilment and engagement at work.

View Article and Find Full Text PDF

Cortical interneurons generated from ganglionic eminence via a long-distance journey of tangential migration display evident cellular and molecular differences across brain regions, which seeds the heterogeneous cortical circuitry in primates. However, whether such regional specifications in interneurons are intrinsically encoded or gained through interactions with the local milieu remains elusive. Here, we recruit 685,692 interneurons from cerebral cortex and subcortex including ganglionic eminence within the developing human and macaque species.

View Article and Find Full Text PDF

Aim: This study aimed to identify the heterogeneous trajectories of frailty and determine the predictors of distinct trajectories in patients with heart failure.

Design: A longitudinal study.

Methods: A total of 253 patients with heart failure were recruited at the cardiology department of a tertiary hospital between February and December 2023.

View Article and Find Full Text PDF

Chronic pain is a wide-spread condition that is debilitating and expensive to manage, costing the United States alone around $600 billion in 2010. In a common symptom of chronic pain called allodynia, non-painful stimuli produce painful responses with highly variable presentations across individuals. While the specific mechanisms remain unclear, allodynia is hypothesized to be caused by the dysregulation of excitatory-inhibitory (E-I) balance in pain-processing neural circuitry in the dorsal horn of the spinal cord.

View Article and Find Full Text PDF

Spiking neural networks seek to emulate biological computation through interconnected artificial neuron and synapse devices. Spintronic neurons can leverage magnetization physics to mimic biological neuron functions, such as integration tied to magnetic domain wall (DW) propagation in a patterned nanotrack and firing tied to the resistance change of a magnetic tunnel junction (MTJ), captured in the domain wall-magnetic tunnel junction (DW-MTJ) device. Leaking, relaxation of a neuron when it is not under stimulation, is also predicted to be implemented based on DW drift as a DW relaxes to a low energy position, but it has not been well explored or demonstrated in device prototypes.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!