Gregory M. Constantine

Affiliations: 
University of Pittsburgh, Pittsburgh, PA, United States 
Area:
Mathematics
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"Gregory Constantine"
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Publications

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Constantine G, Buliga M, Mi Q, et al. (2016) Dynamic Profiling: Modeling the Dynamics of Inflammation and Predicting Outcomes in Traumatic Brain Injury Patients. Frontiers in Pharmacology. 7: 383
Abboud A, Mi Q, Puccio A, et al. (2016) Inflammation Following Traumatic Brain Injury in Humans: Insights from Data-Driven and Mechanistic Models into Survival and Death. Frontiers in Pharmacology. 7: 342
Brown D, Namas RA, Almahmoud K, et al. (2015) Trauma in silico: Individual-specific mathematical models and virtual clinical populations. Science Translational Medicine. 7: 285ra61
Azhar N, Mi Q, Ziraldo C, et al. (2013) Integrating data-driven and mechanistic models of the inflammatory response in sepsis and trauma Complex Systems and Computational Biology Approaches to Acute Inflammation. 143-157
Vodovotz Y, Azhar N, Miskov-Zivanov N, et al. (2013) Modeling host-vector-pathogen immuno-inflammatory interactions in malaria Complex Systems and Computational Biology Approaches to Acute Inflammation. 265-279
Constantine GM, Buliga M, Vodovotz Y, et al. (2010) TWO AUTOCOVARIANCE-BASED MEASURES OF BALANCE IN PARKINSONIANS AND NORMAL CONTROLS. International Journal of Pure and Applied Mathematics : Ijpam. 63: 269-278
Mi Q, Li NY, Ziraldo C, et al. (2010) Translational systems biology of inflammation: potential applications to personalized medicine. Personalized Medicine. 7: 549-559
Vodovotz Y, Constantine G, Faeder J, et al. (2010) Translational systems approaches to the biology of inflammation and healing. Immunopharmacology and Immunotoxicology. 32: 181-95
Torres A, Bentley T, Bartels J, et al. (2009) Mathematical modeling of posthemorrhage inflammation in mice: studies using a novel, computer-controlled, closed-loop hemorrhage apparatus. Shock (Augusta, Ga.). 32: 172-8
Vodovotz Y, Constantine G, Rubin J, et al. (2009) Mechanistic simulations of inflammation: current state and future prospects. Mathematical Biosciences. 217: 1-10
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