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Numerical Analysis of the Risk of Neck Injuries Caused By IED Explosion under the Vehicle in Military Environments Cover

Numerical Analysis of the Risk of Neck Injuries Caused By IED Explosion under the Vehicle in Military Environments

Open Access
|Dec 2016

References

  1. 1. Bambach M.R., Grzebieta R.H., McIntosh A.S., Mattos G.A. (2013), Cervical and thoracic spine injury from interactions with vehicle roofs in pure rollover crashes, Accident Analysis and Prevention 50, 34–43.10.1016/j.aap.2012.10.006
  2. 2. Brzozowski R., Guła P., Sanak T. (2014), The army security in the aspect of threats resulting from the use of improvised explosive devices, Red.: S. Kowalkowski, B. Bębenek, T. Całkowski, Postexplosion soft tissue injuries, National Defence University Publishing House, Warsaw (in polish).
  3. 3. Cronin D. (2014), Finite element modeling of potential cervical spine pain sources in neutral position low speed rear impact, Journal of the mechanical behavior of biomedical materials, 33, 55–66.10.1016/j.jmbbm.2013.01.006
  4. 4. Cusick J.F., Yoganandan N. (2002), Biomechanics of the cervical spine 4: major injuries, Clinical Biomechanics, 17, 1–20.10.1016/S0268-0033(01)00101-2
  5. 5. Daffner R.H., Sciulli R.L., Rodriguez S.A., Protech J. (2006), Imaging for evaluation of suspected cervical spine trauma: a 2-year analysis, Injury: International Journal of the Care of the Injured, 37(7), 652–658.10.1016/j.injury.2006.01.01816504194
  6. 6. Denis, F. (1983), The three column spine and its significance in the classification of acute thorocolumbar spinal injuries, Spine, 8(8), 817–831.10.1097/00007632-198311000-000036670016
  7. 7. DeWit J.A., Cronin D.S. (2012), Cervical spine segment finite element model for traumatic injury prediction, Journal of the Mechanical Behavior of Biomedical Materials, 10, 138–150.10.1016/j.jmbbm.2012.02.01522520426
  8. 8. Heider N, Denefeld V, Holzwarth A. (2010), Methods for the analysis of global IED effects on military vehicles, 5th European Survivability Workshop, Alesund Norway.
  9. 9. Hryciów Z., Borkowski W., Wysocki J., Rybak P., Wiśniewski A. (2013), Experimental researches of safety of armoured personnel carrier crew during collision with obstacle, The Archives of Automotive Engineering, 61, 87-96.
  10. 10. Ivancic, P.C., Pearson, A.M., Panjabi, M.M., Ito, S. (2004), Injury of the anterior longitudinal ligament during whiplash simulation, European Spine Journal, 13(1), 61–68.10.1007/s00586-003-0590-3346803914618382
  11. 11. Krzystała E., Mężyk A., Kciuk S. (2011a), Analysis of the influence of the blast on wheeled military vehicle and their crew, Fast Tracked Vehicles, 28(2), 99-110.
  12. 12. Krzystała E., Mężyk A., Kciuk S. (2011b), Analysis of threat to crew posed by explosion of charge placed under wheeled armoured vehicle, Jouranl of Science of the Gen. Tadeusz Kosciuszko Military Academy of Land Forcs, 1(159), 145-154.10.5604/01.3001.0002.2892
  13. 13. Leahy P.D., Puttlitz Ch.M. (2012), The effects of ligamentous injury in the human lower cervical spine, Journal of Biomechanics, 45, 2668–2672.10.1016/j.jbiomech.2012.08.012351791022939289
  14. 14. Levine R.S. (1994), Head and Neck Injury, Society of Automotive Engineers, USA.
  15. 15. Nilakantan G. Tabiei A. (2009), Computational Assessment of occupant Injury Caused by Mine Blasts underneath Infantry Vehicles, Int. J. Vehicle Structures & Systems, 1(1-3), 50-5.
  16. 16. Operating Instructions, description and use (2005), 8x8 Wheeled Armored ROSOMAK Tower HITFIST 30 mm, Wojskowe Zakłady Mechaniczne S.A, Siemianowice Slaskie.
  17. 17. Panjabi, M.M., Maak, T.G., Ivancic, P.C., Ito, S. (2006), Dynamic intervertebral foramen narrowing during simulated rear impact, Spine, 31(5), 128–134.10.1097/01.brs.0000201243.81745.ba16508536
  18. 18. Pintar F.A., Yoganandan N., Voo L. (1998), Effect of age and loading rate on human cervical spine injury threshold, Spine Sep, 15;23(18), 1957-62.10.1097/00007632-199809150-000079779527
  19. 19. Protocol HFM-090/TG-25 (2007), The mine detonation process and occupant loading.
  20. 20. Ramasamy A., Masouros S.D., Newell N., Hill A.M. (2011), Proud W.G., Brown K.A., Bull A.M.J., Clasper J.C., In-vehicle extremity injuries from improvised explosive devices: current and future foci, Phil. Trans. R. Soc., 366, 160–170.
  21. 21. Robertson A., Branfoot T., Barlow I.F., Giannoudies P.V. (2002), Spinal injury patterns resulting from car and motorcycle accidents, Spine, 27(24), 2825–2830.10.1097/00007632-200212150-0001912486355
  22. 22. Schmitt K.-U., Niederer P., Muser M., Walz F. (2010), Trauma Biomechanics, Third Edition, Springer, Berlin.10.1007/978-3-642-03713-9
  23. 23. Sławiński G. (2012), Pictures of AMV Rosomak after IED explosion, Afghanistan - own resources.
  24. 24. Sławiński G., Niezgoda T., Barnat W. (2013), Numerical analysis of the influence of blast wave on human body, Journal of KONES Powertrain and Transport, 20(3), 113-122.
  25. 25. Wojtkowski M., Ziółek J., Płomiński J., Waliński T. (2014), The army security in the aspect of threats resulting from the use of improvised explosive devices, Red.: S. Kowalkowski, B. Bębenek, T. Całkowski, Postexplosion analysis musculoskeletal injuries of Polish soldiers in military contingents - preliminary, National Defence University Publishing House, Warsaw (in polish).
  26. 26. Yang Y., Liou W.W., Sheng, J. Gorsich, D., Arepally, S., (2013) Shock wave impact simulation of a vehicle occupant using fluid/structure/dynamics interactions, International Journal of Impact Engineering, 52, 11-22.10.1016/j.ijimpeng.2012.09.002
  27. 27. Yoganandan N., Stemper B.D., Pintar F.A., Maiman D.J., McEntire B.J., (2013), Chancey V.C., Cervical spine injury biomechanics: Applications for under body blast loadings in military environments, Clinical Biomechanics, 28, 602–609.
DOI: https://doi.org/10.1515/ama-2016-0039 | Journal eISSN: 2300-5319 | Journal ISSN: 1898-4088
Language: English
Page range: 258 - 264
Submitted on: Nov 11, 2015
Accepted on: Nov 16, 2016
Published on: Dec 28, 2016
Published by: Bialystok University of Technology
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2016 Agnieszka Mackiewicz, Grzegorz Sławiński, Tadeusz Niezgoda, Romuald Będziński, published by Bialystok University of Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.