Title
Q-Nerve: Propagating signal of a damaged nerve using quantum networking
Abstract
Aiding paralyzed people through using technology to transmit signals from brain to paralized part of a body has been a matter of great interest in recent times. Classical approaches in this regard still experience several limitations and sometimes become hazardous to living bodies. Besides, existing literature points out that there are many nerve signals that are not amenable to the classical approaches, however, can be amenable to quantum approaches. By addressing these two points, we propose a new system to propagate signal of a damaged nerve using quantum networking. We name our proposed system Q-Nerve. Q-Nerve exploits quantum network based artificial connection between brain and other organs to bypass a damaged nerve. Subsequently, we propose a more sophisticated version of Q-Nerve that aims to exploiting a synergy between the ability of quantum computing to accumulate neural signal and the ability of quantum networking to pass the signal instantaneously. Further, we extend the proposed system for other brain and nerve related problems that require numerous logical computations.
Year
DOI
Venue
2015
10.1109/NSysS.2015.7042944
NSysS
Keywords
Field
DocType
medical signal detection,medical signal processing,neurophysiology,quantum computing,artificial brain-organ connection,brain-related problems,damaged nerve signal propagation,instant signal transmission,nerve signals,nerve-related problems,neural signal accumulation,paralyzed people,quantum approaches,quantum computing ability,quantum network exploitation,quantum networking,sophisticated q-nerve version,photonics,quantum entanglement
Quantum,Telecommunications,Quantum entanglement,Computer science,Quantum computer,Quantum imaging,Exploit,Photonics,Computer engineering,Quantum network,Computation
Conference
Citations 
PageRank 
References 
0
0.34
1
Authors
7