DempseyP. G.1999. Utilizing criteria for assessing multiple-task manual materials handling jobs. International Journal of Industrial Ergonomics, 24, 405-416.
2.
FerrariA.BenedettiM. G.PavanE.FrigoC.BettinelliD.RabuffettiM.CrennaP.LeardiniA. (2008). Quantitative comparison of five current protocols in gait analysis. Gait Posture, 28, 207-216.
3.
GargA.KapelluschJ. M. (2009). Applications of biomechanics for prevention of work-related musculoskeletal disorders. Ergonomics, 52, 36-59.
4.
HarariY.BecharA.RaschkeU.RiemerR. (2017). Automated simulation-based workplace design that considers ergonomics and productivity. International Journal of Simulation Modelling, 16, 5-18.
5.
HoozemansM. J.KingmaI.de VriesW. H.van DieënJ. H. (2008). Effect of lifting height and load mass on low back loading. Ergonomics, 51, 1053-1063.
6.
LeardiniA.BiagiF.BelvedereC.BenedettiM. G. (2009). Quantitative comparison of current models for trunk motion in human movement analysis. Clinical Biomechanics, 24, 542-550.
7.
MarrasW. S.DavisK. G.JorgensenM. (2002). Spine loading as a function of gender. Spine, 27(22), 2514-2520.
8.
RoseJ.MendelE.MarrasW. (2013). Carrying and spine loading. Ergonomics, 56, 1722-1732.
9.
SeayJ.SelbieW. S.HamillJ. (2008). In vivo lumbo-sacral forces and moments during constant speed running at different stride lengths. Journal of Sports Sciences, 26, 1519-1529.
10.
StrakerL.StevensonM.TwomeyL.SmithL. (1997). A comparison of risk assessment of single and combination manual handling tasks: 3. Biomechanical measures. Ergonomics, 40, 708-728.
11.
WinterD. A. (2009). Biomechanics and motor control of human movement. Hoboken, NJ: John Wiley & Sons.
12.
XuR. (2003). Measuring explained variation in linear mixed effects models. Statistics in Medicine, 22, 3527-3541.