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Full-Text Articles in Medicine and Health Sciences
Quench Assisted (Quest) Mri Used As A Novel Approach To Identify Reactive Oxygen Species As A Result Of Experimental Tbi, Ethan M. Cohen, Eric Chang, Michael C. Schneider, Abigail Teitelbaum, Alexander R. Woznicki, Rachel E. Godfrey, Robert H. Podolsky, Karen L. Childers, Robin Roberts, Bruce A. Berkowitz, Kelly E. Bosse, Alana C. Conti
Quench Assisted (Quest) Mri Used As A Novel Approach To Identify Reactive Oxygen Species As A Result Of Experimental Tbi, Ethan M. Cohen, Eric Chang, Michael C. Schneider, Abigail Teitelbaum, Alexander R. Woznicki, Rachel E. Godfrey, Robert H. Podolsky, Karen L. Childers, Robin Roberts, Bruce A. Berkowitz, Kelly E. Bosse, Alana C. Conti
Medical Student Research Symposium
Introduction:
Traumatic brain injury (TBI) generates reactive oxygen species (ROS), promoting inflammatory processes and impeding TBI recovery. Within the VA population, over 70% of military personnel that sustain a TBI receive opioid-based pain relief, however, opiates may actually exacerbate post-TBI complications through its documented recruitment of oxidative and inflammatory systems. Thus, we hypothesize that TBI and opioid treatment act synergistically to worsen post-TBI oxidative stress.
Methods:
Mice were exposed to either TBI or sham injury and administered morphine or saline in the acute post-injury period. Afterwards, neuroimaging was conducted using a novel technique, QUEnch assiSTed (QUEST) MRI, which compares standard …