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Investigation of Pelvic Injuries on Eighteen Post Mortem Human Subjects Submitted to Oblique Lateral Impacts
- Source :
- SAE Technical Paper Series.
- Publication Year :
- 2016
- Publisher :
- SAE International, 2016.
-
Abstract
- The aim of this study was to investigate the sacroiliac joint injury mechanism. Two test configurations were selected from full scale car crashes conducted with the WorldSID 50th dummy resulting in high sacroiliac joint loads and low pubic symphysis force, i.e. severe conditions for the sacroiliac joint. The two test conditions were reproduced in laboratory using a 150-155 kg guided probe propelled respectively at 8 m/s and 7.5 m/s and with different shapes and orientations for the plate impacting the pelvis. Nine Post Mortem Human Subject (PMHS) were tested in each of the two configurations (eighteen PMHS in total). In order to get information on the time of fracture, eleven strain gauges were glued on the pelvic bone of each PMHS. Results - In the first configuration, five PMHS out of nine sustained AIS2+ pelvic injuries. All five presented sacroiliac joint injuries associated with pubic area injuries. In the second configuration, four specimens out of nine sustained AIS2+ pelvic injuries. Two of them presented sacroiliac joint fractures associated with pubic area injuries. The other two presented injuries at the pubic area and acetabulum only. The strain gauges signals suggested that the pubic fractures occurred before the sacroiliac joint fractures in the great majority of the cases (five cases out of seven). Conclusions - Even in the oblique impact conditions of the present study, the pubic symphysis area was observed to be the weakest zone of the pelvis and its failure the predominant cause of sacroiliac joint injuries. It was hypothesized that the failure of the pubic rami allowed the hemi-pelvis to rotate inward, and that this closing-book motion induced the failure of the sacroiliac joint.
- Subjects :
- Male
musculoskeletal diseases
medicine.medical_specialty
020209 energy
Pubic symphysis
02 engineering and technology
Oblique lateral
Models, Biological
Fractures, Bone
0203 mechanical engineering
Cadaver
0202 electrical engineering, electronic engineering, information engineering
medicine
Humans
Pelvic Bones
Pelvis
Aged
Aged, 80 and over
Sacroiliac joint
Orthodontics
business.industry
Accidents, Traffic
Sacroiliac Joint
Middle Aged
Acetabulum
Biomechanical Phenomena
Surgery
body regions
020303 mechanical engineering & transports
medicine.anatomical_structure
Pubic Area
Female
business
Subjects
Details
- ISSN :
- 01487191
- Database :
- OpenAIRE
- Journal :
- SAE Technical Paper Series
- Accession number :
- edsair.doi.dedup.....8e165f52b6ec4c2b820ac43caaecfe16