« Previous
Next »
Gait & Posture
Volume 23, Issue 2
, Pages 149-158
, February 2006
Validation and influence of anthropometric and kinematic models of obese teenagers in vertical jump performance and mechanical internal energy expenditure
References
- Exercise and weight loss in obese older adults with knee osteoarthritis: a preliminary study. J Am Geriatr Soc. 2000;48:1062–1072
- . Obesity and osteoarthritis of the knee: hypotheses concerning the relationship between ground reaction forces and quadriceps fatigue in long-duration walking. Med Hypotheses. 2000;54:182–185
- Biomechanical gait analyses in obese men. Arch Phys Med Rehabil. 1972;72:1065–1070
- . Gait characteristics of obese children. Arch Phys Med Rehabil. 1991;7:403–407
- . Obesity is not associated with increased knee joint torque and power during level walking. J Biomech. 1991;36:1355–1363
- Biomechanical analysis of sit-to-stand movement in normal and obsess subjects. Clin Biomech. 2003;18:745–750
- . Biomechanics of Human Movement. New York: Wiley, Inc.; 1979;
- Hanavan E.P. A mathematical model of the human body. A.F. Base Ohio; Aero Medical Research Laboratories Technical Report: 1964.
- Dempster W.T. Space requirements of the seated operator. Dayton, OH, Wright-Patterson Air Force Base; Wright Air Development Center Technical Report; 1955.
- . A comparison of muscular mechanical energy expenditure and internal work in cycling. J. Biomech. 1994;27:1459–1467
- . Kinetics of human motion.. Hum Kinet Champaign. 2002;
- . Smoothing and differentiation of data by simplified least squares procedures. Anal Chem. 1964;36:1627–1639
- . Validity and reliability of methods for testing vertical jumping performance. J Appl Biomech. 1998;14:127–140
- . On-line computational scheme for mechanical manipulators. Trans ASME. J Dyn Syst Meas Control. 1980;102:69–76
- . A kinematic notation for lower pair mechanism based on matrices.. Trans ASME J Appl Mech. 1955;22:215–221
- . Travail des efforts internes en analyse du geste sportif: étude comparative de divers bilans. 16e Congrès Français de Mécanique Nice. 2003;16
- Détermination des efforts articulaires exercés au cours de trois types d’élan en barre fixe. Sci Sports. 2002;17:26–30
- El Mouahid K. Les tests d’évaluation de “l’explosivité” des athlètes revisités; contribution à la mécanique de manipulation de charges à des fins d’entraînement Thesis Poitiers: université de Poitiers, 2001.
- In: Allard P, Blanchi JP editor. Analyse du mouvement humain par la biomécanique. Québec: Decarie; 1996;
- . Standard mechanical energy analyses do not correlate with muscle work in cycling. J Biomech. 1998;31:239–245
- Mechanical power in running: a comparison of different approaches. J Biomech. 2000;33:457–463
- . Comments on energy mechanical work and muscular efficiency in swing through gait with elbow crutches. J Biomech. 1997;30(8):861
- In: Taylor JC editors. Incertitude et analyse des erreurs dans les mesures physiques. Paris: Dunod; 2000;
- . Effect of normalisation and phase angle calculations on continuous relatives phase. J Biomech. 2002;35:369–374
- In: Duboy J, Junqua A, Lacouture P editor. Mécanique humaine: élément d’une analyse des gestes sportifs en deux dimensions. Paris: Revue EPS; 1994;
- Barbier F. Modélisation et analyse de la marche normale et pathologique: application à la rééducation. Thesis. Valenciennes: université de Valenciennes 1994.
PII: S0966-6362(05)00006-8
doi: 10.1016/j.gaitpost.2005.01.002
© 2005 Elsevier B.V. All rights reserved.
« Previous
Next »
Gait & Posture
Volume 23, Issue 2
, Pages 149-158
, February 2006
