Impact sites representing potential bruising locations associated with bed falls in children
Raymond Dsouza1, Gina Bertocci1
1Injury Risk Assessment and Prevention (iRAP) Laboratory, Bioengineering Department, University of Louisville, KY, USA.
Insights
Simulating child falls with an anthropomorphic test device (ATD) identified specific body planes likely to sustain bruises. This research aids in distinguishing accidental injuries from abusive trauma in children.
Area of Science:
- Pediatric Traumatology
- Biomechanics
- Forensic Science
Background:
- Bruises in children can indicate accidental or abusive trauma.
- Bruise location is crucial for differentiating abuse from accidents.
- Simulating falls can help predict bruising patterns.
Purpose of the Study:
- To predict potential bruising locations in simulated pediatric falls.
- To differentiate accidental fall injuries from abusive trauma.
- To utilize an anthropomorphic test device (ATD) with force-sensing skin.
Main Methods:
- An ATD simulating a 12-month-old child was used.
- Custom force-sensing skin mapped impact data.
- Simulated bed falls occurred from 61cm and 91cm heights, in forward and rearward positions.
Main Results:
- Bruising was predicted primarily on two body planes of the ATD.
- One plane showed majority contact and higher forces.
- Contact patterns varied with fall height and initial position.
Conclusions:
- Simulated falls indicate predictable bruising patterns on specific body planes.
- Findings may assist in evaluating injury mechanisms in children.
- ATD limitations require consideration in interpreting results.
Abstract:
Bruising can occur as a result of accidental or abusive trauma in children. Bruises are an early sign of child abuse and their locations on the body can be an effective delineator of abusive trauma. Since falls are often reported as false histories in abuse, the ability to predict potential bruising locations in falls could be valuable when attempting to differentiate between abuse and accident. In our study we used an anthropomorphic test device (ATD), a surrogate representing a 12 month old child, adapted with a custom developed force sensing skin to predict potential bruising locations during simulated bed falls. The sensing skin is made of custom resistive force sensors integrated into a conformable skin, adapted to fit the contours of the ATD. The sensing skin measured and displayed recorded force data on a computerized body image mapping system when sensors were activated. Simulated bed fall experiments were performed from two initial positions (FF - facing forward and FR - facing rearward) and two fall heights of 61cm (24 in) and 91cm (36 in) onto a padded carpet impact surface. Findings indicated potential bruising primarily in two planes of the ATD body. The majority of contact regions and greater forces were recorded in one plane, with fewer regions of contact and decreased force exhibited in an adjoining second plane. Additionally, no contact was recorded in the two planes opposite the impact planes. Differences in contact regions were observed for varying heights and initial position. Limitations of ATD biofidelity and soft tissue properties must be considered when interpreting these findings.
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