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A computational model of bidirectional axonal growth in micro-tissue engineered neuronal networks (micro-TENNs)
A computational model of bidirectional axonal growth in micro-tissue engineered neuronal networks (micro-TENNs) is a research paper published in In Silico Biology (2020). On theSindex it has a DataRank of 0. It has been cited 6 times.
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Scored on demand from live citation data
Open Access6 citations
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›Methodology & internals
Pipeline:MetadataData-paper checkEnrichmentCitation networkScoring
Enrichment:Funding (1 grants)Impact (FWCI 0.23)OA: goldTopics (25)IDs (PubMed, OpenAlex)
FAIR Checklist
Context only (not used in score)Findable (1/2)
- Has DOI
Accessible (1/2)
- Open Access
Interoperable (0/2)
Reusable (0/3)
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Authors (6)
Live enrichment
NINDS NIH HHS
Grant: U01 NS094340
FWCI
0.23
Citation Percentile
0.4%
Citation Trend
2019
2020
2021
2023
2024
2025
goldLicense: cc-by-nc
Fields of Study
3D Printing in Biomedical ResearchCellular Mechanics and InteractionsNeuroscience and Neural EngineeringAnimalsAxonsBrainComputational BiologyMiceNeuronsRatsTissue EngineeringUnited States
MeSH Terms
AnimalsAxonsBrainNeuronsUnited StatesComputational BiologyTissue EngineeringMiceRats
Keywords
NeuroscienceComputer scienceComputational biologyBiology