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Published on: September 21, 2017
Factors Affecting Child Injury Risk in Motor-Vehicle Crashes
Marco Benedetti1, Kathleen D Klinich1, Miriam A Manary1
1University of Michigan Transportation Research Institute.
Insights
Using the latest data, this study confirms that proper child restraint systems (CRS) significantly reduce pediatric injury risk in car crashes. Unrestrained children face 4.9-5.6 times higher odds of injury, highlighting the importance of age-appropriate restraint use.
Area of Science:
- Traffic Safety Research
- Pediatric Injury Prevention
- Biomedical Engineering
Background:
- Current child restraint system (CRS) recommendations rely on pre-2011 data.
- Recent data is needed to validate and update pediatric occupant protection guidelines.
- Motor vehicle crashes remain a leading cause of injury and death for children.
Purpose of the Study:
- To analyze recent US police-reported crashes (2010-2015) involving children under 13.
- To identify factors associated with pediatric injury risk in motor vehicle crashes.
- To support or refine existing recommendations for child restraint use.
Main Methods:
- Utilized weighted data from the National Automotive Sampling System General Estimates System (NASS-GES) for crash years 2010-2015.
- Categorized injury outcomes as CO (possible/no injury) or KAB (killed/incapacitating/non-incapacitating injury).
- Classified restraint use as optimal, suboptimal, or unrestrained based on best practice recommendations.
Main Results:
- Pediatric injury risk is significantly associated with restraint type, child age, driver injury, driver alcohol use, seating position, and crash direction.
- Unrestrained children had 4.9 to 5.6 times higher odds of injury compared to optimally restrained children.
- Suboptimally restrained children had 1.1 to 1.9 times higher odds of injury, with effects diminishing with age.
Conclusions:
- Results strongly support current best practice recommendations for child restraint systems.
- Emphasizes using each stage of CRS (rear-facing, forward-facing harnessed, booster seat, lap/shoulder belt) for as long as possible.
- Highlights the critical role of appropriate restraint in mitigating pediatric injuries in motor vehicle crashes.
Abstract:
Current recommendations for restraining child occupants are based on biomechanical testing and data from national and international field studies primarily conducted prior to 2011. We hypothesized that analysis to identify factors associated with pediatric injury in motor-vehicle crashes using a national database of more recent police-reported crashes in the United States involving children under age 13 where type of child restraint system (CRS) is recorded would support previous recommendations. Weighted data were extracted from the National Automotive Sampling System General Estimates System (NASS-GES) for crash years 2010 to 2015. Injury outcomes were grouped as CO (possible and no injury) or KAB (killed, incapacitating injury, nonincapacitating injury). Restraint was characterized as optimal, suboptimal, or unrestrained based on current best practice recommendations. Analysis used survey methods to identify factors associated with injury. Factors with significant effect on pediatric injury risk include restraint type, child age, driver injury, driver alcohol use, seating position, and crash direction. Compared to children using optimal restraint, unrestrained children have 4.9 (13-year-old) to 5.6 (< 1-year-old) times higher odds of injury, while suboptimally restrained children have 1.1 (13-year-old) to 1.9 (< 1-year-old) times higher odds of injury. As indicated by the differences in odds ratios, effects of restraint type attenuate with age. Results support current best practice recommendations to use each stage of child restraint (rear-facing CRS, forward-facing harnessed CRS, belt-positioning booster seat, lap and shoulder belt) as long as possible before switching to the next step.
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