DocumentCode :
1948289
Title :
System Identification for the Hodgkin-Huxley Model using Artificial Neural Networks
Author :
Saggar, Manish ; Meriçli, Tekin ; Andoni, Sari ; Miikkulainen, Risto
Author_Institution :
Univ. of Texas, Austin
fYear :
2007
fDate :
12-17 Aug. 2007
Firstpage :
2239
Lastpage :
2244
Abstract :
A single biological neuron is able to perform complex computations that are highly nonlinear in nature, adaptive, and superior to the perceptron model. A neuron is essentially a nonlinear dynamical system. Its state depends on the interactions among its previous states, its intrinsic properties, and the synaptic input it receives. These factors are included in Hodgkin-Huxley (HH) model, which describes the ionic mechanisms involved in the generation of an action potential. This paper proposes training of an artificial neural network to identify and model the physiological properties of a biological neuron, and mimic its input-output mapping. An HH simulator was implemented to generate the training data. The proposed model was able to mimic and predict the dynamic behavior of the HH simulator under novel stimulation conditions; hence, it can be used to extract the dynamics (in vivo or in vitro) of a neuron without any prior knowledge of its physiology. Such a model can in turn be used as a tool for controlling a neuron in order to study its dynamics for further analysis.
Keywords :
feature extraction; learning (artificial intelligence); nonlinear dynamical systems; Hodgkin-Huxley model; artificial neural networks; biological neuron; information extraction; input-output mapping; nonlinear dynamical system; perceptron model; system identification; Artificial neural networks; Biological system modeling; Biology computing; Data mining; High performance computing; Neurons; Nonlinear dynamical systems; Predictive models; System identification; Training data;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Neural Networks, 2007. IJCNN 2007. International Joint Conference on
Conference_Location :
Orlando, FL
ISSN :
1098-7576
Print_ISBN :
978-1-4244-1379-9
Electronic_ISBN :
1098-7576
Type :
conf
DOI :
10.1109/IJCNN.2007.4371306
Filename :
4371306
Link To Document :
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