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Bridget E Hawkins

Explore the profile of Bridget E Hawkins including associated specialties, affiliations and a list of published articles. Areas
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Articles 22
Citations 397
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Recent Articles
1.
Huie J, Nielson J, Wolfsbane J, Andersen C, Spratt H, DeWitt D, et al.
Front Bioeng Biotechnol . 2023 Jan; 10:887898. PMID: 36704298
Understanding recovery from TBI is complex, involving multiple systems and modalities. The current study applied modern data science tools to manage this complexity and harmonize large-scale data to understand relationships...
2.
Chou A, Torres-Espin A, Huie J, Krukowski K, Lee S, Nolan A, et al.
Neurotrauma Rep . 2022 Apr; 3(1):139-157. PMID: 35403104
Traumatic brain injury (TBI) is a major public health problem. Despite considerable research deciphering injury pathophysiology, precision therapies remain elusive. Here, we present large-scale data sharing and machine intelligence approaches...
3.
Tzeng H, Hawkins B, Howard A, Woodfox-Ryan S, Chacin A, Marquez-Bhojani M, et al.
Nurs Rep . 2021 Dec; 11(3):728-740. PMID: 34968346
Background: Patient-centered outcomes research seeks to answer patient-centered questions. The process includes varied locations and individuals throughout the care continuum to address individual differences and constraints in implementation and dissemination....
4.
Sowers J, Sowers M, Shavkunov A, Hawkins B, Wu P, DeWitt D, et al.
iScience . 2021 Oct; 24(10):103108. PMID: 34622161
The release of excess glutamate following traumatic brain injury (TBI) results in glutamate excitotoxicity and metabolic energy failure. Endogenous mechanisms for reducing glutamate concentration in the brain parenchyma following TBI...
5.
LaPlaca M, Huie J, Alam H, Bachstetter A, Bayir H, Bellgowan P, et al.
J Neurotrauma . 2020 Dec; 38(10):1399-1410. PMID: 33297844
Traumatic brain injury (TBI) is an extremely complex condition due to heterogeneity in injury mechanism, underlying conditions, and secondary injury. Pre-clinical and clinical researchers face challenges with reproducibility that negatively...
6.
Andersen C, Wolf J, Jennings K, Prough D, Hawkins B
J Neurotrauma . 2020 Aug; 38(4):435-445. PMID: 32829672
Traumatic brain injury (TBI) induces cognitive deficits clinically and in animal models. Learning and memory testing is critical when evaluating potential therapeutic strategies and treatments to manage the effects of...
7.
Rodriguez U, Zeng Y, Parsley M, Hawkins B, Prough D, DeWitt D
J Vis Exp . 2019 Apr; (146). PMID: 30985764
Though there have been studies on the histopathological and behavioral effects of blast exposure, fewer have been dedicated to blast's cerebral vascular effects. Impact (i.e., non-blast) traumatic brain injury (TBI)...
8.
Hawkins B, Huie J, Almeida C, Chen J, Ferguson A
J Neurotrauma . 2019 Feb; 37(22):2414-2423. PMID: 30794049
Translation of traumatic brain injury (TBI) research findings from bench to bedside involves aligning multi-species data across diverse data types including imaging and molecular biomarkers, histopathology, behavior, and functional outcomes....
9.
Andersen C, Hawkins B, Prough D
Crit Care Med . 2019 Feb; 47(3):480-483. PMID: 30768509
No abstract available.
10.
DeWitt D, Hawkins B, Dixon C, Kochanek P, Armstead W, Bass C, et al.
J Neurotrauma . 2018 May; 35(23):2737-2754. PMID: 29756522
Despite the large number of promising neuroprotective agents identified in experimental traumatic brain injury (TBI) studies, none has yet shown meaningful improvements in long-term outcome in clinical trials. To develop...