Contribution of systemic factors in the pathophysiology of repeated blast-induced neurotrauma.
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Summary
The data showed an increase in the activation of platelets at 4h after repeated blast exposures, indicating changes in platelet phenotype in blast neurotrauma, and suggests that repeated blast exposure leads to acute activation of Platelets/leukocytes which can augment the pathological effects of brain injury.
- Type
- article
- Published
- 2013-02-28
- Cited by
- 25
- References
- 31
- Access
- Open access
- OpenAlex
- https://openalex.org/W23370286
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:27230191
Keywords
Wildlife, Geography, Cover (algebra), Forest cover, Forestry
References
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- The bioactive phospholipid lysophosphatidic acid is released from activated platelets.
- The Importance of Systemic Response in the Pathobiology of Blast-Induced Neurotrauma
- Low-level blasts raise intracranial pressure and impair cognitive function in rats.
- Regional specific alterations in brain acetylcholinesterase activity after repeated blast exposures in mice.
- Intracranial Pressure Increases during Exposure to a Shock Wave
- A Mouse Model of Blast Injury to Brain: Initial Pathological, Neuropathological, and Behavioral Characterization
- Neurobiology of suicidal behaviour
- WARTIME TRAUMATIC CEREBRAL VASOSPASM: RECENT REVIEW OF COMBAT CASUALTIES
- Traumatic Brain Injury-Associated Coagulopathy
- Blast Overpressure in Rats: Recreating a Battlefield Injury in the Laboratory
- Blockage of lysophosphatidic acid signaling improves spinal cord injury outcomes.
- Explosive Blast Neurotrauma
- The pathobiology of blast injuries and blast-induced neurotrauma as identified using a new experimental model of injury in mice.
- MECHANISM OF PULMONARY VASOCONSTRICTION AFTER INJECTION OF 5-HYDROXYTRYPTAMINE IN THE DOG
- Platelet activation and atherothrombosis.
- Myeloperoxidase: friend and foe
- Platelet serotonin concentration and suicidal behavior in combat related posttraumatic stress disorder.
Cited by
- Understanding the Effects of Blast Wave on the Intracranial Pressure and Traumatic Brain Injury in Rodents and Humans Using Experimental Shock Tube and Numerical Simulations
- Repeated Blast Exposures Cause Brain DNA Fragmentation in Mice
- Repeated Primary Blast Injury Causes Delayed Recovery, but not Additive Disruption, in an In Vitro Blood–Brain Barrier Model
- Vascular and Inflammatory Factors in the Pathophysiology of Blast-Induced Brain Injury
- Mechanisms of Traumatic Brain Injury
- Elucidating the Severity of Preclinical Traumatic Brain Injury Models: A Role for Functional Assessment?
- Traumatic Brain Injury Using Mouse Models
- Effects of Antioxidant Treatment on Blast-Induced Brain Injury
- Selective vulnerability of the cerebral vasculature to blast injury in a rat model of mild traumatic brain injury
- Assessing Neuro-Systemic & Behavioral Components in the Pathophysiology of Blast-Related Brain Injury
- Neuropathology and neurobehavioral alterations in a rat model of traumatic brain injury to occupants of vehicles targeted by underbody blasts
- Blood-Brain Barrier Dysfunction and Repair after Blast-Induced Traumatic Brain Injury
- Understanding blast-induced neurotrauma: how far have we come?
- Modeling the Long-Term Consequences of Repeated Blast-Induced Mild Traumatic Brain Injuries
- A Comprehensive Review of Experimental Rodent Models of Repeated Blast TBI
- Repetitive mild traumatic brain injury alters diurnal locomotor activity and response to the light change in mice
- Neurological Effects of Repeated Exposure to Military Occupational Levels of Blast: A Review of Scientific Literature
- Sex as a Biological Variable in Preclinical Modeling of Blast-Related Traumatic Brain Injury
- Repeated Low-Level Blast Acutely Alters Brain Cytokines, Neurovascular Proteins, Mechanotransduction, and Neurodegenerative Markers in a Rat Model
- Gulf War and Health: Long-Term Effects of Blast Exposures.
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