DocumentCode :
2005656
Title :
Diverse background activities hidden in power-law spontaneous activity of hippocampal CA3 slice culture
Author :
Samura, Toshiharu ; Sato, Y.D. ; Ikegaya, Yuji ; Hayashi, H. ; Aihara, Takuma
Author_Institution :
Tamagawa Univ. Brain Sci. Inst., Tokyo, Japan
fYear :
2012
fDate :
20-24 Nov. 2012
Firstpage :
321
Lastpage :
325
Abstract :
The hippocampal CA3 slice culture causes a power-law distributed neuronal activity spontaneously. In computer simulations, we reproduce three stochastic properties (synchrony size, spike-count rate and inter-spike interval) of the spontaneous activity observed from the CA3 slice cultures. When the background activity of a neuron, that is not the activity driven by synaptic inputs, is uniform in every neuron, the stochastic properties are not reproduced at the same time. However, when the background activity of a neuron differs in every neuron, the stochastic properties are simultaneously reproduced. These results suggest that the diverse background activities hide in the spontaneous activity of hippocampal CA3 slice culture. It has been suggested that a neuronal network causing power-law distributed neuronal activity optimizes input/output processing. The hippocampal CA3 slice culture causing power-law spontaneous activity may optimize input/output processing on the diverse background activities.
Keywords :
brain; neural nets; neurophysiology; optimisation; stochastic processes; computer simulations; diverse background activities; hippocampal CA3 slice culture; input-output processing optimisation; inter-spike interval; neuronal network; power-law distributed neuronal activity; power-law spontaneous activity; spike-count rate; spontaneous neuronal activity; stochastic properties; synchrony size;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Soft Computing and Intelligent Systems (SCIS) and 13th International Symposium on Advanced Intelligent Systems (ISIS), 2012 Joint 6th International Conference on
Conference_Location :
Kobe
Print_ISBN :
978-1-4673-2742-8
Type :
conf
DOI :
10.1109/SCIS-ISIS.2012.6505225
Filename :
6505225
Link To Document :
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