Froude number corrections in anthropological studies.
暂无分享,去创建一个
[1] A. Minetti,et al. Biomechanical and physiological aspects of legged locomotion in humans , 2002, European Journal of Applied Physiology.
[2] M. J. Myers,et al. Morphological conservation of limb natural pendular period in the domestic dog (Canis familiaris): Implications for locomotor energetics , 1997, Journal of morphology.
[3] W. Sellers,et al. Comparison of inverse-dynamics musculo-skeletal models of AL 288-1 Australopithecus afarensis and KNM-WT 15000 Homo ergaster to modern humans, with implications for the evolution of bipedalism. , 2004, Journal of human evolution.
[4] D. Raichlen. Convergence of forelimb and hindlimb Natural Pendular Period in baboons (Papio cynocephalus) and its implication for the evolution of primate quadrupedalism. , 2004, Journal of human evolution.
[5] J. Donelan,et al. The effect of reduced gravity on the kinematics of human walking: a test of the dynamic similarity hypothesis for locomotion. , 1997, The Journal of experimental biology.
[6] J. Vilensky,et al. Effects of size on Vervet (Cercopithecus aethiops) gait parameters: A cross‐sectional approach , 1988 .
[7] P. Willems,et al. The energy cost of walking in children , 2000, Pflügers Archiv.
[8] K. Steudel,et al. Does limb length predict the relative energetic cost of locomotion in mammals , 1995 .
[9] K. Schmidt-Nielsen,et al. The metabolic cost of swimming in ducks. , 1970, The Journal of experimental biology.
[10] W. J. Duncan. Physical similarity and dimensional analysis : an elementary treatise , 1953 .
[11] Y. Bhambhani,et al. Metabolic and cinematographic analysis of walking and running in men and women. , 1985, Medicine and science in sports and exercise.
[12] C. Vaughan,et al. Froude and the contribution of naval architecture to our understanding of bipedal locomotion. , 2005, Gait & posture.
[13] K. Steudel,et al. Scaling of cursoriality in mammals , 1993, Journal of morphology.
[14] T. McMahon,et al. Ballistic walking: an improved model , 1980 .
[15] A. Minetti,et al. Mechanical and metabolic profile of locomotion in adults with childhood-onset GH deficiency. , 2000, European journal of endocrinology.
[16] Theodore Garland,et al. Does metatarsal/femur ratio predict maximal running speed in cursorial mammals? , 1993 .
[17] P. Kramer,et al. Modelling the locomotor energetics of extinct hominids. , 1999, The Journal of experimental biology.
[18] A. Minetti,et al. Pygmy locomotion , 2004, European Journal of Applied Physiology and Occupational Physiology.
[19] R. Alexander,et al. Estimates of speeds of dinosaurs , 1976, Nature.
[20] J. Donelan,et al. Exploring dynamic similarity in human running using simulated reduced gravity. , 2000, The Journal of experimental biology.
[21] D. F. Hoyt,et al. Biomechanical and energetic determinants of the walk–trot transition in horses , 2004, Journal of Experimental Biology.
[22] Robert Brown. On Size and Life , 1985, The Yale Journal of Biology and Medicine.
[23] P. Kramer,et al. Locomotor energetics and leg length in hominid bipedality. , 2000, Journal of human evolution.
[24] R. M. Alexander,et al. Stride length and speed for adults, children, and fossil hominids. , 1984, American journal of physical anthropology.
[25] G. Cavagna,et al. External, internal and total work in human locomotion. , 1995, The Journal of experimental biology.
[26] L G Pugh,et al. The relation of oxygen intake and velocity of walking and running, in competition walkers , 1968, The Journal of physiology.
[27] R. M. Alexander. How Dinosaurs Ran , 1991 .
[28] J. E. Cotes,et al. The energy expenditure and mechanical energy demand in walking. , 1960 .
[29] G. Cavagna,et al. Mechanical work in terrestrial locomotion: two basic mechanisms for minimizing energy expenditure. , 1977, The American journal of physiology.
[30] J. Booyens,et al. The expenditure of energy by men and women walking , 1957, The Journal of physiology.
[31] H. B. Falls,et al. Energy cost of running and walking in young women. , 1976, Medicine and science in sports.
[32] Karen L Steudel-Numbers,et al. The effect of lower limb length on the energetic cost of locomotion: implications for fossil hominins. , 2004, Journal of human evolution.
[33] Herman Pontzer,et al. Climbing and the daily energy cost of locomotion in wild chimpanzees: implications for hominoid locomotor evolution. , 2004, Journal of human evolution.
[34] C. T. Farley,et al. Biomechanics of quadrupedal walking: how do four-legged animals achieve inverted pendulum-like movements? , 2004, Journal of Experimental Biology.