DocumentCode :
3684232
Title :
Relationship between inter-stimulus-intervals and intervals of autonomous activities in a neuronal network
Author :
Hidekatsu Ito;Wataru Minoshima;Suguru N. Kudoh
Author_Institution :
Graduated school of Kwansei gakuin university, Science and Technology, Gakuen 2-1, Sanda-city, Hyogo, Japan
fYear :
2015
Firstpage :
1536
Lastpage :
1539
Abstract :
To investigate relationships between neuronal network activity and electrical stimulus, we analyzed autonomous activity before and after electrical stimulus. Recordings of autonomous activity were performed using dissociated culture of rat hippocampal neurons on a multi-electrodes array (MEA) dish. Single stimulus and pared stimuli were applied to a cultured neuronal network. Single stimulus was applied every 1 min, and paired stimuli was performed by two sequential stimuli every 1 min. As a result, the patterns of synchronized activities of a neuronal network were changed after stimulus. Especially, long range synchronous activities were induced by paired stimuli. When 1 s inter-stimulus-intervals (ISI) and 1.5 s ISI paired stimuli are applied to a neuronal network, relatively long range synchronous activities expressed in case of 1.5 s ISI. Temporal synchronous activity of neuronal network is changed according to inter-stimulus-intervals (ISI) of electrical stimulus. In other words, dissociated neuronal network can maintain given information in temporal pattern and a certain type of an information maintenance mechanism was considered to be implemented in a semi-artificial dissociated neuronal network. The result is useful toward manipulation technology of neuronal activity in a brain system.
Keywords :
"Biological neural networks","Synchronization","Neurons","Indium tin oxide","Electrodes","Arrays"
Publisher :
ieee
Conference_Titel :
Engineering in Medicine and Biology Society (EMBC), 2015 37th Annual International Conference of the IEEE
ISSN :
1094-687X
Electronic_ISBN :
1558-4615
Type :
conf
DOI :
10.1109/EMBC.2015.7318664
Filename :
7318664
Link To Document :
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