DocumentCode :
329
Title :
A Physical Channel Model for Nanoscale Neuro-Spike Communications
Author :
Balevi, E. ; Akan, Ozgur B.
Author_Institution :
Dept. of Electr. & Electron. Eng., Koc Univ., Istanbul, Turkey
Volume :
61
Issue :
3
fYear :
2013
fDate :
Mar-13
Firstpage :
1178
Lastpage :
1187
Abstract :
Nanoscale communications is an appealing domain in nanotechnology. Novel nanoscale communications techniques are currently being devised inspired by some naturally existing phenomena such as the molecular communications governing cellular signaling mechanisms. Among these, neuro-spike communications, which governs the communications between neurons, is a vastly unexplored area. The ultimate goal of this paper is to accurately investigate nanoscale neuro-spike communications characteristics through the development of a realistic physical channel model between two neurons. The neuro-spike communications channel is analyzed based on the probability of error and delay in spike detection at the output. The derived communication theoretical channel model may help designing novel artificial nanoscale communications methods for the realization of future practical nanonetworks, which are the interconnections of nanomachines.
Keywords :
bioelectric phenomena; nanotechnology; neurophysiology; artificial nanoscale communications methods; cellular signaling mechanisms; communication theoretical channel model; delay probability; error probability; interconnections; molecular communications; nanomachines; nanoscale communications techniques; nanoscale neuro-spike communications characteristics; nanotechnology; naturally existing phenomena; neuro-spike communications channel; neurons; practical nanonetworks; realistic physical channel model; spike detection; Channel models; Nanoscale devices; Nerve fibers; Neurotransmitters; Noise; Stochastic processes; Nanoscale communications; neuro-spike communications; physical channel model;
fLanguage :
English
Journal_Title :
Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
0090-6778
Type :
jour
DOI :
10.1109/TCOMM.2012.010213.110093
Filename :
6403870
Link To Document :
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