Analysis of Skeletal Muscle System Loads for the Most Optimal Positions During Lifting in Different Load Distances
Author:
Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/978-3-319-97286-2_20
Reference33 articles.
1. Arjmand, N., Ekrami, O., Shirazi-Adl, A., Plamondon, A., Parnianpour, M.: Relative performances of artificial neural network and regression mapping tools in evaluation of spinal loads and muscle forces during static lifting. J. Biomech. 46, 1454–1462 (2013). https://doi.org/10.1016/j.jbiomech.2013.02.026
2. Arjmand, N., Gagnon, D., Plamondon, A., Shirazi-Adl, A., Larivière, C.: A comparative study of two trunk biomechanical models under symmetric and asymmetric loadings. J. Biomech. 43, 485–491 (2010). https://doi.org/10.1016/j.jbiomech.2009.09.032
3. Arjmand, N., Plamondon, A., Shirazi-Adl, A., Larivière, C., Parnianpour, M.: Predictive equations to estimate spinal loads in symmetric lifting tasks. J. Biomech. 44, 84–91 (2011). https://doi.org/10.1016/j.jbiomech.2010.08.028
4. Arjmand, N., Plamondon, A., Shirazi-Adl, A., Parnianpour, M., Larivière, C.: Predictive equations for lumbar spine loads in load-dependent asymmetric one- and two-handed lifting activities. Clin. Biomech. 27, 537–544 (2012). https://doi.org/10.1016/j.clinbiomech.2011.12.015
5. Bassani, T., Stucovitz, E., Qian, Z., Briguglio, M., Galbusera, F.: Validation of the AnyBody full body musculoskeletal model in computing lumbar spine loads at L4L5 level. J Biomech. (2017). https://doi.org/10.1016/j.jbiomech.2017.04.025
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