학술논문

Parallel Distribution of an Inner Hair Cell and Auditory Nerve Model for Real-Time Application
Document Type
Periodical
Source
IEEE Transactions on Biomedical Circuits and Systems IEEE Trans. Biomed. Circuits Syst. Biomedical Circuits and Systems, IEEE Transactions on. 12(5):1018-1026 Oct, 2018
Subject
Bioengineering
Components, Circuits, Devices and Systems
Biological system modeling
Mathematical model
Computer architecture
Hair
Hardware
Computational modeling
Microprocessors
Neuromorphic computing
auditory pathway modeling
inner hair cell
auditory nerve
SpiNNaker
real-time simulation
Language
ISSN
1932-4545
1940-9990
Abstract
This paper summarizes recent efforts in implementing a model of the ear's inner hair cell and auditory nerve on a neuromorphic hardware platform, the SpiNNaker machine. This exploits the massive parallelism of the target architecture to obtain real-time modeling of a biologically realistic number of human auditory nerve fibres. We show how this model can be integrated with additional modules that simulate previous stages of the early auditory pathway running on the same hardware architecture, thus producing a full-scale spiking auditory nerve output from a single sound stimulus. The results of the SpiNNaker implementation are shown to be comparable with a MATLAB version of the same model algorithms, while removing the inherent performance limitations associated with an increase in auditory model scale that are seen in the conventional computer simulations. Finally, we outline the potential for using this system as part of a full-scale, real-time digital model of the complete human auditory pathway on the SpiNNaker platform.