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  4. A Voltage Mode Fully Differential Implementation of Mihalas-Niebur Neuron with Biological-Timescale
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A Voltage Mode Fully Differential Implementation of Mihalas-Niebur Neuron with Biological-Timescale

Author(s)
Kongpoon, Metha
Leelavattananon, Kritsapon
Date Issued
July 2, 2018
Type
Conference Paper
DOI
10.1109/IEECON.2018.8712245
Abstract
This paper presents an implementation of the Mihalas-Niebur neuron model using voltage mode differential \mathbf{g}-{\mathbf{m} {\pmb{-}}} C filter based on a multiple input transconductor. The transconductance linearization technique was employed to achieve the biologically realistic time constant. With the moderate value of the bias current and the small size capacitors, the proposed neuron can exhibit different spiking and bursting patterns on the biological timescale.
Citation
Ieecon 2018 6th International Electrical Engineering Congress, 2018
Subjects

biological timescale

filter

Mihalas-Niebur neuron...

transconductance line...

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