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Coughlin, D. J., Valdes, L. and Rome, L. C (1996). Muscle length changes during fish swimming: a comparison of sonomicrometry and anatomical-high speed cine techniques. J. Exp. Biol 199, 459-.[Abstract]

Hammond, L., Altringham, J. D. and Wardle, C. S (1998). Myotomal slow muscle function of rainbow trout Oncorhynchus mykiss during steady swimming. J. Exp. Biol 201, 1659-.[Abstract]

Jayne, B. C. and Lauder, G. V (1995). Speed effects on midline kinematics during steady undulatory swimming of largemouth bass, Micropterus salmoides. J. Exp. Biol 198, 585-.[Abstract]

Jayne, B. C. and Lauder, G. V (1995). Red muscle motor patterns during steady swimming in largemouth bass: effects of speed and correlations with axial kinematics. J. Exp. Biol 198, 1575-.[Abstract]

Johnson, T. P. and Johnston, I. A (1991). Power output of fish muscle fibres performing oscillatory work: effects of acute and seasonal temperature change. J. Exp. Biol 157, 409-.[Abstract/Free Full Text]

Josephson, R. K (1993). Contraction dynamics and power output of skeletal muscle. Annu. Rev. Physiol 55, 527-.[Medline]

Marsh, R. L (1990). Deactivation rate and shortening velocity as determinants of contractile frequency. Am. J. Physiol 259, 223-.

Olson, J. M. and Marsh, R. L (1993). Contractile properties of the striated adductor muscle in the bay scallop Argopecten irradians at several temperatures. J. Exp. Biol 176, 175-.[Abstract]

Rall, J. A. and Woledge, R. C (1990). Influence of temperature on mechanics and energetics of muscle contraction. Am. J. Physiol 259, 197-.

Rome, L. C (1982). The energetic cost of running with different muscle temperatures in savannah monitor lizards. J. Exp. Biol 97, 411-.[Abstract/Free Full Text]

Rome, L. C (1990). The influence of temperature on muscle recruitment and function in vivo. Am. J. Physiol 259, 210-.

Rome, L. C (1995). A device for synchronizing physiological data to cine film. J. Biomech 28, 333-.[Medline]

Rome, L. C., Choi, I., Lutz, G. and Sosnicki, A. A (1992). The influence of temperature on muscle function in fast swimming scup. I. Shortening velocity and muscle recruitment during swimming. J. Exp. Biol 163, 259-.[Abstract/Free Full Text]

Rome, L. C., Funke, R. P. and Alexander, R. McN (1990). The influence of temperature on muscle velocity and sustained performance in swimming carp. J. Exp. Biol 154, 163-.[Abstract/Free Full Text]

Rome, L. C., Loughna, P. T. and Goldspink, G (1984). Muscle fiber recruitment as a function of swim speed and muscle temperature in carp. Am. J. Physiol 247, 272-.

Rome, L. C. and Sosnicki, A. A (1991). Myofilament overlap in swimming carp. II. Sarcomere length changes during swimming. Am. J. Physiol 260, 289-.

Rome, L. C., Sosnicki, A. A. and Choi, I (1992). The influence of temperature on muscle function in the fast swimming scup. II. The mechanics of red muscle. J. Exp. Biol 163, 281-.[Abstract/Free Full Text]

Rome, L. C. and Swank, D (1992). The influence of temperature on power output of scup red muscle during cyclical length changes. J. Exp. Biol 171, 261-.[Abstract/Free Full Text]

Rome, L. C., Swank, D. and Corda, D (1993). How fish power swimming. Science 261, 340-.[Abstract/Free Full Text]

Rome, L. C., Swank, D. and Coughlin, D (2000). The influence of temperature on power production during swimming. II. Mechanics of red muscle fibres in vivo. J. Exp. Biol 203, 333-.[Abstract]

Swank, D., Zhang, G. and Rome, L. C (1997). Contraction kinetics of red muscle in scup: mechanism for variation in relaxation rate. J. Exp. Biol 200, 1297-.[Abstract]

Swoap, S. J., Johnson, T. P., Josephson, R. K. and Bennett, A. F (1993). Temperature, muscle power output and limitations on burst locomotory performance of the lizard Dipsosaurus dorsalis. J. Exp. Biol 174, 185-.[Abstract]

Wardle, C. S., Videler, J. J. and Altringham, J. D (1995). Tuning in to fish swimming waves: body form, swimming mode and muscle function. J. Exp. Biol 198, 1629-.[Abstract]

Williams, T. L., Grillner, S., Smoljaninov, V. V., Wallen, P., Kashin, S. and Rossignol, S (1989). Locomotion in lamprey and trout: the relative timing of activation and movement. J. Exp. Biol 143, 559-.[Free Full Text]




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