Research Project: Communication Theoretical Foundations of Nervous System Towards BIO-inspired Nanonetworks and ICT-inspired Neuro Treatment
| dc.contributor.department | Department of Electrical and Electronics Engineering | |
| dc.contributor.department | Department of Electrical and Electronics Engineering | |
| dc.contributor.schoolcollegeinstitute | College of Engineering | |
| dc.contributor.schoolcollegeinstitute | College of Engineering | |
| dc.date.accessioned | 2024-12-29T10:37:45Z | |
| dc.date.available | 2024-12-29 | |
| dc.description.publisherscope | International | |
| dc.identifier | EC.00069 | |
| dc.identifier.uri | https://hdl.handle.net/20.500.14288/24125 | |
| dc.relation.affiliation | Koç University | |
| dc.relation.collection | Koç University Projects Collection | |
| dc.relation.relatedpublications | Anarchy versus cooperation on internet of molecular things | |
| dc.relation.relatedpublications | Impact of long term plasticity on information transmission over neuronal networks | |
| dc.relation.relatedpublications | An information theoretical analysis of human insulin-glucose system toward the internet of bio-nano things | |
| dc.relation.relatedpublications | A communication theoretical modeling of axonal propagation in hippocampal pyramidal neurons | |
| dc.relation.relatedpublications | Transmitter and receiver architectures for molecular communications: a survey on physical design with modulation, coding, and detection techniques | |
| dc.relation.relatedpublications | Fluorescent molecules as transceiver nanoantennas: the first practical and high-rate information transfer over a nanoscale communication channel based on FRET | |
| dc.relation.relatedpublications | Theoretical limits on multiuser molecular communication in internet of nano-bio things | |
| dc.relation.relatedpublications | Controlled information transfer through an in vivo nervous system | |
| dc.relation.relatedpublications | The internet of molecular things based on FRET | |
| dc.relation.relatedpublications | An information theoretical analysis of multi-terminal neuro-spike communication network in spinal cord | |
| dc.relation.relatedpublications | Maximum likelihood detection with Ligand receptors for diffusion-based molecular communications in internet of bio-nano things | |
| dc.relation.relatedpublications | Internet of Everything (IoE) - from molecules to the universe | |
| dc.relation.relatedpublications | Selective signal detection with ligand receptors under interference in molecular communications | |
| dc.relation.relatedpublications | Rate of information flow across layered neuro-spike network in the spinal cord | |
| dc.relation.relatedpublications | Information and communication theoretical understanding and treatment of spinal cord injuries: state-of-the-art and research challenges | |
| dc.relation.relatedpublications | Impacts of spike shape variations on synaptic communication | |
| dc.relation.relatedpublications | A fast algorithm for analysis of molecular communication in artificial synapse | |
| dc.relation.relatedpublications | Diffusion-based model for synaptic molecular communication channel | |
| dc.relation.relatedpublications | On the capacity of diffusion-based molecular communications with SiNW FET-based receiver | |
| dc.relation.relatedpublications | Sum rate analysis of multiple-access neuro-spike communication channel with dynamic spiking threshold | |
| dc.relation.relatedpublications | A queueing-theoretical delay analysis for intra-body nervous nanonetwork | |
| dc.relation.relatedpublications | Modeling convection-diffusion-reaction systems for microfluidic molecular communications with surface-based receivers in Internet of Bio-Nano Things | |
| dc.relation.relatedpublications | Modeling and analysis of SiNW FET-based molecular communication receiver | |
| dc.relation.relatedpublications | Synaptic channel model including effects of spike width variation | |
| dc.relation.relatedpublications | N(4)sim: the first nervous NaNonetwork simulator with synaptic molecular communications | |
| dc.relation.relatedpublications | Fundamentals of molecular information and communication science | |
| dc.relation.relatedpublications | Information capacity of vesicle release in neuro-spike communication | |
| dc.relation.relatedpublications | Sum rate of MISO neuro-spike communication channel with constant spiking threshold | |
| dc.relation.relatedpublications | Information and communication theoretical understanding and treatment of spinal cord injuries: state-of-the-art and research challenges | |
| dc.relation.relatedpublications | On the physical design of molecular communication receiver based on nanoscale biosensors | |
| dc.relation.relatedpublications | Channel sensing in molecular communications with single type of ligand receptors | |
| dc.relation.relatedpublications | Detection in molecular communications with ligand receptors under molecular interference | |
| dc.relation.relatedpublications | Information theoretical analysis of synaptic communication for nanonetworks | |
| dc.relation.relatedpublications | Diversity in diffusion-based molecular communication channel with drift | |
| dc.relation.relatedpublications | Modeling and analysis of SiNW BioFET as molecular antenna for bio-cyber interfaces towards the internet of bio-nanothings | |
| dc.relation.relatedpublications | Fabrication and microfluidic analysis of graphene-based molecular communication receiver for Internet of Nano Things (IoNT) | |
| dc.relation.relatedpublications | Modulation in molecular communications: a look on methodologies | |
| dc.title | Communication Theoretical Foundations of Nervous System Towards BIO-inspired Nanonetworks and ICT-inspired Neuro Treatment | |
| dc.title.alternative | MINERVA | |
| dspace.entity.type | Project | |
| local.contributor.kuauthor | Akan, Özgür Barış | |
| local.project.contractnumber | 616922 | |
| local.project.endDate | 2017-02-28 | |
| local.project.startDate | 2014-03-02 | |
| local.project.template | EC.FP07.IDEA.ERCCON | |
| project.funder.identifier | EC - FP7 | |
| project.funder.name | European Commission | |
| project.investigator | Akan, Özgür Barış | |
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