Literature DB >> 26414315

Cerebral Blood Flow Alterations in Acute Sport-Related Concussion.

Yang Wang1,2, Lindsay D Nelson3,4, Ashley A LaRoche3, Adam Y Pfaller3, Andrew S Nencka1,2, Kevin M Koch1,2, Michael A McCrea3,4.   

Abstract

Sport-related concussion (SRC) is a major health problem, affecting millions of athletes each year. While the clinical effects of SRC (e.g., symptoms and functional impairments) typically resolve within several days, increasing evidence suggests persistent neurophysiological abnormalities beyond the point of clinical recovery after injury. This study aimed to evaluate cerebral blood flow (CBF) changes in acute SRC, as measured using advanced arterial spin labeling (ASL) magnetic resonance imaging (MRI). We compared CBF maps assessed in 18 concussed football players (age, 17.8 ± 1.5 years) obtained within 24 h and at 8 days after injury with a control group of 19 matched non-concussed football players. While the control group did not show any changes in CBF between the two time-points, concussed athletes demonstrated a significant decrease in CBF at 8 days relative to within 24 h. Scores on the clinical symptom (Sport Concussion Assessment Tool 3, SCAT3) and cognitive measures (Standardized Assessment of Concussion [SAC]) demonstrated significant impairment (vs. pre-season baseline levels) at 24 h (SCAT, p < 0.0001; SAC, p < 0.01) but returned to baseline levels at 8 days. Two additional computerized neurocognitive tests, the Automated Neuropsychological Assessment Metrics and Immediate Post-Concussion and Cognitive Testing, showed a similar pattern of changes. These data support the hypothesis that physiological changes persist beyond the point of clinical recovery after SRC. Our results also indicate that advanced ASL MRI methods might be useful for detecting and tracking the longitudinal course of underlying neurophysiological recovery from concussion.

Entities:  

Keywords:  MRI; arterial spin labeling; cerebral blood flow; concussion; recovery

Mesh:

Substances:

Year:  2015        PMID: 26414315      PMCID: PMC4931342          DOI: 10.1089/neu.2015.4072

Source DB:  PubMed          Journal:  J Neurotrauma        ISSN: 0897-7151            Impact factor:   5.269


  73 in total

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Review 2.  A Physiologically Based Approach to Prescribing Exercise Following a Sport-Related Concussion.

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3.  Multi-parametric analysis reveals metabolic and vascular effects driving differences in BOLD-based cerebrovascular reactivity associated with a history of sport concussion.

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Review 4.  Sensation-Seeking and Impulsivity in Athletes with Sport-Related Concussion.

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5.  Quantitative Susceptibility Mapping after Sports-Related Concussion.

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6.  A Mild Traumatic Brain Injury in Mice Produces Lasting Deficits in Brain Metabolism.

Authors:  Danielle N Lyons; Hemendra Vekaria; Teresa Macheda; Vikas Bakshi; David K Powell; Brian T Gold; Ai-Ling Lin; Patrick G Sullivan; Adam D Bachstetter
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7.  Cerebral blood flow in acute concussion: preliminary ASL findings from the NCAA-DoD CARE consortium.

Authors:  Yang Wang; Andrew S Nencka; Timothy B Meier; Kevin Guskiewicz; Jason P Mihalik; M Alison Brooks; Andrew J Saykin; Kevin M Koch; Yu-Chien Wu; Lindsay D Nelson; Thomas W McAllister; Steven P Broglio; Michael A McCrea
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8.  Compromised resting cerebral metabolism after sport-related concussion: A calibrated MRI study.

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9.  Mapping brain recovery after concussion: From acute injury to 1 year after medical clearance.

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10.  Preliminary Use of the Physical and Neurological Examination of Subtle Signs for Detecting Subtle Motor Signs in Adolescents With Sport-Related Concussion.

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