Research Project:
Communication Theoretical Foundations of Nervous System Towards BIO-inspired Nanonetworks and ICT-inspired Neuro Treatment

dc.contributor.departmentDepartment of Electrical and Electronics Engineering
dc.contributor.departmentDepartment of Electrical and Electronics Engineering
dc.contributor.schoolcollegeinstituteCollege of Engineering
dc.contributor.schoolcollegeinstituteCollege of Engineering
dc.date.accessioned2024-12-29T10:37:45Z
dc.date.available2024-12-29
dc.description.publisherscopeInternational
dc.identifierEC.00069
dc.identifier.urihttps://hdl.handle.net/20.500.14288/24125
dc.relation.affiliationKoç University
dc.relation.collectionKoç University Projects Collection
dc.relation.relatedpublicationsAnarchy versus cooperation on internet of molecular things
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dc.relation.relatedpublicationsAn information theoretical analysis of human insulin-glucose system toward the internet of bio-nano things
dc.relation.relatedpublicationsA communication theoretical modeling of axonal propagation in hippocampal pyramidal neurons
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dc.relation.relatedpublicationsFluorescent molecules as transceiver nanoantennas: the first practical and high-rate information transfer over a nanoscale communication channel based on FRET
dc.relation.relatedpublicationsTheoretical limits on multiuser molecular communication in internet of nano-bio things
dc.relation.relatedpublicationsControlled information transfer through an in vivo nervous system
dc.relation.relatedpublicationsThe internet of molecular things based on FRET
dc.relation.relatedpublicationsAn information theoretical analysis of multi-terminal neuro-spike communication network in spinal cord
dc.relation.relatedpublicationsMaximum likelihood detection with Ligand receptors for diffusion-based molecular communications in internet of bio-nano things
dc.relation.relatedpublicationsInternet of Everything (IoE) - from molecules to the universe
dc.relation.relatedpublicationsSelective signal detection with ligand receptors under interference in molecular communications
dc.relation.relatedpublicationsRate of information flow across layered neuro-spike network in the spinal cord
dc.relation.relatedpublicationsInformation and communication theoretical understanding and treatment of spinal cord injuries: state-of-the-art and research challenges
dc.relation.relatedpublicationsImpacts of spike shape variations on synaptic communication
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dc.relation.relatedpublicationsOn the capacity of diffusion-based molecular communications with SiNW FET-based receiver
dc.relation.relatedpublicationsSum rate analysis of multiple-access neuro-spike communication channel with dynamic spiking threshold
dc.relation.relatedpublicationsA queueing-theoretical delay analysis for intra-body nervous nanonetwork
dc.relation.relatedpublicationsModeling convection-diffusion-reaction systems for microfluidic molecular communications with surface-based receivers in Internet of Bio-Nano Things
dc.relation.relatedpublicationsModeling and analysis of SiNW FET-based molecular communication receiver
dc.relation.relatedpublicationsSynaptic channel model including effects of spike width variation
dc.relation.relatedpublicationsN(4)sim: the first nervous NaNonetwork simulator with synaptic molecular communications
dc.relation.relatedpublicationsFundamentals of molecular information and communication science
dc.relation.relatedpublicationsInformation capacity of vesicle release in neuro-spike communication
dc.relation.relatedpublicationsSum rate of MISO neuro-spike communication channel with constant spiking threshold
dc.relation.relatedpublicationsInformation and communication theoretical understanding and treatment of spinal cord injuries: state-of-the-art and research challenges
dc.relation.relatedpublicationsOn the physical design of molecular communication receiver based on nanoscale biosensors
dc.relation.relatedpublicationsChannel sensing in molecular communications with single type of ligand receptors
dc.relation.relatedpublicationsDetection in molecular communications with ligand receptors under molecular interference
dc.relation.relatedpublicationsInformation theoretical analysis of synaptic communication for nanonetworks
dc.relation.relatedpublicationsDiversity in diffusion-based molecular communication channel with drift
dc.relation.relatedpublicationsModeling and analysis of SiNW BioFET as molecular antenna for bio-cyber interfaces towards the internet of bio-nanothings
dc.relation.relatedpublicationsFabrication and microfluidic analysis of graphene-based molecular communication receiver for Internet of Nano Things (IoNT)
dc.relation.relatedpublicationsModulation in molecular communications: a look on methodologies
dc.titleCommunication Theoretical Foundations of Nervous System Towards BIO-inspired Nanonetworks and ICT-inspired Neuro Treatment
dc.title.alternativeMINERVA
dspace.entity.typeProject
local.contributor.kuauthorAkan, Özgür Barış
local.project.contractnumber616922
local.project.endDate2017-02-28
local.project.startDate2014-03-02
local.project.templateEC.FP07.IDEA.ERCCON
project.funder.identifierEC - FP7
project.funder.nameEuropean Commission
project.investigatorAkan, Özgür Barış
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