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Pediatric material properties: a review of human child and animal surrogates
Melanie Franklyn1, Sujanie Peiris, Christina Huber
1Monash University, Melbourne, Victoria, Australia.
Insights
Limited pediatric tissue data hinders accurate automotive safety testing for children. This review evaluates available human and animal surrogate data, identifying critical gaps in thorax, abdomen, and spine research.
Area of Science:
- Biomechanics
- Pediatric Injury Research
- Automotive Safety
Background:
- Pediatric tissue is scarce, leading to extensive adult biomechanical data but limited pediatric data.
- Animal surrogates (piglets, chimpanzees) are used, but their tissue properties may not accurately reflect human children.
- Current child anthropomorphic test devices (ATDs) rely on scaled adult data, with unproven accuracy due to data scarcity.
Purpose of the Study:
- To evaluate existing mechanical test data for pediatric human and animal surrogate tissues.
- To identify knowledge gaps and highlight areas requiring further research in pediatric biomechanics.
Main Methods:
- Literature review of published mechanical testing data on pediatric human and animal surrogate tissues.
- Evaluation of data availability across different body regions.
Main Results:
- Most available pediatric data focuses on the head, neck, cervical spine, and extremities.
- Significant data limitations exist for the thorax, abdomen, thoracic and lumbar spines, and fetal tissues.
- Head and neck regions show some testing, likely due to their critical injury relevance.
Conclusions:
- A substantial lack of pediatric biomechanical data persists, impacting the accuracy of child ATDs and injury assessment.
- Further mechanical testing is critically needed for under-researched pediatric body regions, particularly the torso and spine.
- Addressing these data gaps is essential for improving child safety in automotive environments.
Abstract:
Because pediatric tissue is difficult for researchers to obtain, the biomechanical responses of adult humans have been studied much more extensively than those of children. Piglets, chimpanzees, and other animals have been used as child surrogates, but the tissue properties and responses to impact forces obtained from these animals may not directly correlate with the human child, and this correlation is not well understood. Consequently, only a handful of human pediatric tissue properties are known. Child anthropomorphic test devices employed in automotive safety have been developed largely by scaling data obtained from adult human cadaveric tests, where various scaling methods have been used to account for differences in geometry, material properties, or a combination of these two parameters. Similar scaling techniques have also been implemented to develop injury assessment reference values for child anthropomorphic test devices. Nevertheless, these scaling techniques have not yet proven to be accurate, in part because of the lack of pediatric data. In this review, the properties of pediatric human and animal surrogate tissue that have been mechanically tested are evaluated. It was found that most of the pediatric tissue that has previously been tested pertains to the head, neck, cervical spine, and extremities. It is evident that some body regions, such as the head and neck, have been tested to some extent since injuries to these regions are critical from an injury perspective. On the other hand, there is limited pediatric data available for the thorax, abdomen, thoracic and lumbar spines and fetal-related tissue. This review presents the pediatric data available in the literature and highlights the body regions where further testing is needed.
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