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As a consequence, this neuron is well suited for computational purposes.
This suggests that an invariant description of connectivity can be cast in terms of potential synapses, which are locations in the neuropil where an axon branch of one neuron is proximal to a dendritic branch of another neuron.
The proposed spiking neuron is compact, low power, and robust.
Our observations demonstrate that the ability of a neuron to support a spike-time code can be actively controlled by varying the properties of the neuron and its input.
Experimental results confirm the expected flexibility of the synthetic neuron.
It can be used for investigation about the energy coding in the neuron even the neuron networks.
The tunable temporary location of the skyrmion in our artificial neuron behaves like the analog membrane potential of a biological neuron.
It is no longer appropriate to consider solely neuron–neuron connections; we also need to develop a view of the intricate web of active connections among glial cells, and between glia and neurons.

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