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Blast-induced phenotypic switching in cerebral vasospasm
Patrick W. Alford
, Borna E. Dabiri
, Josue A. Goss
, Matthew A. Hemphill
, Mark D. Brigham
, Kevin Kit Parker
Biomedical Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
117
Scopus citations
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Keyphrases
Phenotypic Switching
100%
Vasospasm
100%
Cerebral Vasospasm
100%
Blast-induced Traumatic Brain Injury (bTBI)
80%
Subarachnoid Hemorrhage
40%
Traumatic Brain Injury Patients
40%
Hypercontraction
40%
Vasculature
20%
Early Onset
20%
Vascular Remodeling
20%
Vascular Smooth muscle Cells
20%
High Velocity
20%
Mechanical Force
20%
In Vitro Model
20%
Afghanistan
20%
Combat Trauma
20%
Lamellae
20%
Endothelin-1 (ET-1)
20%
Increased Incidence
20%
Blunt Trauma
20%
Iraq
20%
Force-dependent
20%
Injured Tissue
20%
Genetic Switch
20%
Cerebrovasculature
20%
Hypercontractivity
20%
Smooth muscle Phenotype
20%
Blast Injury
20%
Blast Force
20%
Intracellular Calcium Dynamics
20%
Mechanical Insult
20%
Immunology and Microbiology
Dynamics
100%
Vascularization
100%
Calcium Cell Level
100%
Pulse Rate
100%
Vascular Smooth Muscle
100%
Hypersensitivity
100%
Endothelin
100%
In Vitro
100%
Trauma
100%
Biochemistry, Genetics and Molecular Biology
Dynamics
100%
Genetics
100%
Vascularization
100%
Calcium Cell Level
100%
Pulse Rate
100%
Erethism
100%
Endothelin 1
100%
Medicine and Dentistry
Vasospasm
100%
Brain Vasospasm
100%
Experimental Traumatic Brain Injury
80%
Subarachnoid Hemorrhage
40%
Vascular Smooth Muscle
20%
In Vitro
20%
Vascularity
20%
Vascular Remodeling
20%
Pulse Rate
20%
Hypersensitivity
20%
Intracellular Calcium
20%
Endothelin 1
20%
Battle Injury
20%
Blast Injury
20%
Pharmacology, Toxicology and Pharmaceutical Science
Brain Vasospasm
100%
Vasospasm
100%
Experimental Traumatic Brain Injury
80%
Subarachnoid Hemorrhage
40%
Erethism
20%
Vascular Remodeling
20%
Battle Injury
20%
Endothelin 1
20%
Blast Injury
20%