Literature DB >> 19577388

Comparative multibody dynamics analysis of falls from playground climbing frames.

M A Forero Rueda1, M D Gilchrist.   

Abstract

This paper shows the utility of multibody dynamics in evaluating changes in injury related parameters of the head and lower limbs of children following falls from playground climbing frames. A particular fall case was used as a starting point to analyze the influence of surface properties, posture of the body at impact, and intermediate collisions against the climbing frame before impacting the ground. Simulations were made using the 6-year-old pedestrian MADYMO rigid body model and scaled head contact characteristics. Energy absorbing surfaces were shown to reduce injury severity parameters by up to 30-80% of those of rigid surfaces, depending on impact posture and surface. Collisions against components of a climbing frame during a fall can increase injury severity of the final impact of the head with the ground by more than 90%. Negligible changes are associated with lower limb injury risks when different surfacing materials are used. Computer reconstructions of actual falls that are intended to quantify the severity of physical injuries rely on accurate knowledge of initial conditions prior to falling, intermediate kinematics of the fall and the orientation of the body when it impacts against the ground. Multibody modelling proved to be a valuable tool to analyze the quality of eyewitness information and analyze the relative injury risk associated with changes in components influencing fall injuries from playground climbing frames. Such simulations can also support forensic investigations by evaluating alternative hypotheses for the sequence of kinematic motion of falls which result in known injuries.

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Year:  2009        PMID: 19577388     DOI: 10.1016/j.forsciint.2009.06.007

Source DB:  PubMed          Journal:  Forensic Sci Int        ISSN: 0379-0738            Impact factor:   2.395


  4 in total

1.  Effects of fall conditions and biological variability on the mechanism of skull fractures caused by falls.

Authors:  Anissa Hamel; Maxime Llari; Marie-Dominique Piercecchi-Marti; Pascal Adalian; Georges Leonetti; Lionel Thollon
Journal:  Int J Legal Med       Date:  2011-10-09       Impact factor: 2.686

2.  Femur loading in feet-first fall experiments using an anthropomorphic test device.

Authors:  Angela Thompson; Gina Bertocci; Craig Smalley
Journal:  J Forensic Leg Med       Date:  2018-03-31       Impact factor: 1.614

3.  Slip and tilt: modeling falls over railings.

Authors:  H Muggenthaler; M Hubig; A Meierhofer; G Mall
Journal:  Int J Legal Med       Date:  2020-10-09       Impact factor: 2.686

4.  The dynamics of electric powered wheelchair sideways tips and falls: experimental and computational analysis of impact forces and injury.

Authors:  Brett Erickson; Masih A Hosseini; Parry Singh Mudhar; Maryam Soleimani; Arina Aboonabi; Siamak Arzanpour; Carolyn J Sparrey
Journal:  J Neuroeng Rehabil       Date:  2016-03-02       Impact factor: 4.262

  4 in total

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