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Relationship of mechanical impact magnitude to neurologic dysfunction severity in a rat traumatic brain injury model.

TH Hsieh | JW Kang | JH Lai | YZ Huang | A Rotenberg | KY Chen | JY Wang | SY Chan | SC Chen | YH Chiang | CW Peng
PloS one | 2017

Traumatic brain injury (TBI) is a major brain injury type commonly caused by traffic accidents, falls, violence, or sports injuries. To obtain mechanistic insights about TBI, experimental animal models such as weight-drop-induced TBI in rats have been developed to mimic closed-head injury in humans. However, the relationship between the mechanical impact level and neurological severity following weight-drop-induced TBI remains uncertain. In this study, we comprehensively investigated the relationship between physical impact and graded severity at various weight-drop heights.

Pubmed ID: 28552947

TBI Model

  • Weight-drop model
  • Marmarou’s impact acceleration model
  • Animal Information

  • Species: rat
  • Strain: Sprague-Dawley
  • Age (weeks): 10 - 12
  • Weight (grams): 364 - 425
  • Assessments

    Beam walk test, Western blot, accelerometer, modified Neurological Severity Score (mNSS)

    TBI model parameters

  • Impact Depth (mm): No information available
  • Impact Duration (ms): No information available
  • Impact Velocity (m/s): No information available
  • Impactor Tip: No information available
  • Device Name

    No information available

    Associated Datasets

    No information available

    Associated Protocols

    No information available