Biomaterial strategies for creating in vitro astrocyte cultures resembling in vivo astrocyte morphologies and phenotypes is a research paper published in Current Opinion in Biomedical Engineering (2020). On theSindex it has a DataRank of 0. It has been cited 32 times.
Scored on demand from live citation data
Linked data & code
DataRank reads this dataset's downstream impact straight off the citation graph — no black box, no proprietary weighting. How is this computed?
FAIR checklist signals are shown for context only and do not affect DataRank scoring.
We only score data papers we can read in full — never from an abstract alone.
National Institutes of Health
Grant: NS092754
National Institutes of Health
Grant: C32245GG
Craig H. Neilsen Foundation
Grant: 468116
Paralyzed Veterans of America
Grant: 3171
NINDS NIH HHS
Grant: R01 NS092754
National Institutes of Health
Grant: 5R01NS092754-05
Enhanced Neuroprotection Following Acute SCI Using Fibrous Materials
Council on Graduate Medical Education, New York State Department of Health
FWCI
1.27
Citation Percentile
0.8%
Citation Trend
Fields of Study
Keywords
Sustainable Development Goals
Additional file 8 of Microglial inflammation after chronic spinal cord injury is enhanced by reactive astrocytes via the fibronectin/β1 integrin pathway
Additional file 8 of Microglial inflammation after chronic spinal cord injury is enhanced by reactive astrocytes via the fibronectin/β1 integrin pathway
Additional file 7 of Microglial inflammation after chronic spinal cord injury is enhanced by reactive astrocytes via the fibronectin/β1 integrin pathway
Additional file 7 of Microglial inflammation after chronic spinal cord injury is enhanced by reactive astrocytes via the fibronectin/β1 integrin pathway
Additional file 6 of Microglial inflammation after chronic spinal cord injury is enhanced by reactive astrocytes via the fibronectin/β1 integrin pathway
Additional file 6 of Microglial inflammation after chronic spinal cord injury is enhanced by reactive astrocytes via the fibronectin/β1 integrin pathway
Additional file 5 of Microglial inflammation after chronic spinal cord injury is enhanced by reactive astrocytes via the fibronectin/β1 integrin pathway
Additional file 5 of Microglial inflammation after chronic spinal cord injury is enhanced by reactive astrocytes via the fibronectin/β1 integrin pathway
Additional file 4 of Microglial inflammation after chronic spinal cord injury is enhanced by reactive astrocytes via the fibronectin/β1 integrin pathway
Additional file 4 of Microglial inflammation after chronic spinal cord injury is enhanced by reactive astrocytes via the fibronectin/β1 integrin pathway
Additional file 3 of Microglial inflammation after chronic spinal cord injury is enhanced by reactive astrocytes via the fibronectin/β1 integrin pathway
Additional file 3 of Microglial inflammation after chronic spinal cord injury is enhanced by reactive astrocytes via the fibronectin/β1 integrin pathway
Additional file 2 of Microglial inflammation after chronic spinal cord injury is enhanced by reactive astrocytes via the fibronectin/β1 integrin pathway
Additional file 2 of Microglial inflammation after chronic spinal cord injury is enhanced by reactive astrocytes via the fibronectin/β1 integrin pathway
Additional file 1 of Microglial inflammation after chronic spinal cord injury is enhanced by reactive astrocytes via the fibronectin/β1 integrin pathway
Additional file 1 of Microglial inflammation after chronic spinal cord injury is enhanced by reactive astrocytes via the fibronectin/β1 integrin pathway
Additional file 1 of Isolation methods and characterization of primary rat neurovascular cells
Additional file 1 of Isolation methods and characterization of primary rat neurovascular cells