In vivo muscle force-length behavior during steady-speed hopping in tammar wallabies.
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[1] D. E. Goldman,et al. Measurement of High‐Frequency Sound Velocity in Mammalian Soft Tissues , 1954 .
[2] D. E. Goldman,et al. Tabular Data of the Velocity and Absorption of High‐Frequency Sound in Mammalian Tissues , 1956 .
[3] E. Kaplan. Muscles Alive. Their Functions Revealed by Electromyography. J. V. Basmajian. Baltimore, The Williams and Wilkins Co., 1962. $8.50 , 1962 .
[4] J. Basmajian. Muscles Alive—their functions revealed by electromyography , 1963 .
[5] C. R. Taylor,et al. Energetic Cost of Locomotion in Kangaroos , 1973, Nature.
[6] P. Rack,et al. The short range stiffness of active mammalian muscle. , 1973, The Journal of physiology.
[7] G A Cavagna,et al. Effect of stretching on the elastic characteristics and the contractile component of frog striated muscle , 1974, The Journal of physiology.
[8] G. Cavagna,et al. Mechanical work in terrestrial locomotion: two basic mechanisms for minimizing energy expenditure. , 1977, The American journal of physiology.
[9] R. Alexander,et al. Storage of elastic strain energy in muscle and other tissues , 1977, Nature.
[10] F. W. Flitney,et al. Cross‐bridge detachment and sarcomere 'give' during stretch of active frog's muscle. , 1978, The Journal of physiology.
[11] U. Proske,et al. Measurements of muscle stiffness and the mechanism of elastic storage of energy in hopping kangaroos. , 1978, The Journal of physiology.
[12] R. F. Ker. Dynamic tensile properties of the plantaris tendon of sheep (Ovis aries). , 1981, The Journal of experimental biology.
[13] N. Heglund,et al. Energetics and mechanics of terrestrial locomotion. I. Metabolic energy consumption as a function of speed and body size in birds and mammals. , 1982, The Journal of experimental biology.
[14] G. Cavagna,et al. Energetics and mechanics of terrestrial locomotion. IV. Total mechanical energy changes as a function of speed and body size in birds and mammals. , 1982, The Journal of experimental biology.
[15] G E Loeb,et al. Activity of spindle afferents from cat anterior thigh muscles. I. Identification and patterns during normal locomotion. , 1985, Journal of neurophysiology.
[16] R. Josephson. Mechanical Power output from Striated Muscle during Cyclic Contraction , 1985 .
[17] R. F. Ker,et al. Mechanical properties of various mammalian tendons , 1986 .
[18] G. Loeb,et al. Electromyography for Experimentalists , 1986 .
[19] R. F. Ker,et al. The spring in the arch of the human foot , 1987, Nature.
[20] R. Griffiths. Ultrasound transit time gives direct measurement of muscle fibre length in vivo , 1987, Journal of Neuroscience Methods.
[21] H. Sugi,et al. Stiffness changes in frog skeletal muscle during contraction recorded using ultrasonic waves. , 1988, The Journal of physiology.
[22] N. Heglund,et al. Speed, stride frequency and energy cost per stride: how do they change with body size and gait? , 1988, The Journal of experimental biology.
[23] R. Griffiths,et al. The Mechanics of the Medial Gastrocnemius Muscle in the Freely Hopping Wallaby (Thylogale Billardierii) , 1989 .
[24] A. Biewener. Scaling body support in mammals: limb posture and muscle mechanics. , 1989, Science.
[25] Rodger Kram,et al. Energetics of running: a new perspective , 1990, Nature.
[26] R. Shadwick,et al. Elastic energy storage in tendons: mechanical differences related to function and age. , 1990, Journal of applied physiology.
[27] N C Heglund,et al. Cross-bridge cycling theories cannot explain high-speed lengthening behavior in frog muscle. , 1990, Biophysical journal.
[28] R. Griffiths. Shortening of muscle fibres during stretch of the active cat medial gastrocnemius muscle: the role of tendon compliance. , 1991, The Journal of physiology.
[29] R. Baudinette,et al. Energetic cost of locomotion in the tammar wallaby. , 1992, The American journal of physiology.
[30] R. Marsh,et al. Mechanical performance of scallop adductor muscle during swimming , 1992, Nature.
[31] R. Baudinette,et al. In vivo muscle force and elastic energy storage during steady-speed hopping of tammar wallabies (Macropus eugenii) , 1995, The Journal of experimental biology.
[32] M. B. Bennett,et al. Scaling of elastic strain energy in kangaroos and the benefits of being big , 1995, Nature.
[33] T J Roberts,et al. Muscular Force in Running Turkeys: The Economy of Minimizing Work , 1997, Science.
[34] A. Biewener,et al. Muscle-tendon stresses and elastic energy storage during locomotion in the horse. , 1998, Comparative biochemistry and physiology. Part B, Biochemistry & molecular biology.