Modulation of pectoralis muscle function in budgerigars Melopsitaccus undulatus and zebra finches Taeniopygia guttata in response to changing flight speed
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[1] V. Tucker. Respiratory Exchange and Evaporative Water Loss in the Flying Budgerigar , 1968 .
[2] R. Marsh. Contractile properties of muscles used in sound production and locomotion in two species of gray tree frog. , 1999, The Journal of experimental biology.
[3] R. Marsh,et al. Power output of sound-producing muscles in the tree frogs Hyla versicolor and Hyla chrysoscelis. , 1999, The Journal of experimental biology.
[4] R. Josephson. Mechanical Power output from Striated Muscle during Cyclic Contraction , 1985 .
[5] R. Marsh. The Nature of the Problem: Muscles and Their Loads , 2022 .
[6] Jeremy M. V. Rayner,et al. Bounding and undulating flight in birds , 1985 .
[7] John D. Altringham,et al. Modelling Muscle Power Output in a Swimming Fish , 1990 .
[8] Tobalske,et al. NEUROMUSCULAR CONTROL AND KINEMATICS OF INTERMITTENT FLIGHT IN BUDGERIGARS (MELOPSITTACUS UNDULATUS) , 1994, The Journal of experimental biology.
[9] W. Nachtigall,et al. Metabolic power, mechanical power and efficiency during wind tunnel flight by the European starling Sturnus vulgaris. , 2001, The Journal of experimental biology.
[10] Tobalske. Neuromuscular control and kinematics of intermittent flight in the European starling (Sturnus vulgaris) , 1995, The Journal of experimental biology.
[11] Benjamin W. C. Rosser,et al. The avian pectoralis : histochemical characterization and distribution of muscle fiber types , 1986 .
[12] Bret W. Tobalske,et al. How cockatiels (Nymphicus hollandicus) modulate pectoralis power output across flight speeds , 2003, Journal of Experimental Biology.
[13] R. Marsh,et al. The effects of length trajectory on the mechanical power output of mouse skeletal muscles. , 1997, The Journal of experimental biology.
[14] G. Cavagna,et al. Mechanical work in terrestrial locomotion: two basic mechanisms for minimizing energy expenditure. , 1977, The American journal of physiology.
[15] D. Ellerby,et al. Modulation of flight muscle power output in budgerigars Melopsittacus undulatus and zebra finches Taeniopygia guttata: in vitro muscle performance , 2007, Journal of Experimental Biology.
[16] Thomas J Roberts,et al. Mechanical power output during running accelerations in wild turkeys. , 2002, The Journal of experimental biology.
[17] D. Ellerby,et al. The mechanical power requirements of avian flight , 2007, Biology Letters.
[18] Matthew W Bundle,et al. Does the metabolic rate–flight speed relationship vary among geometrically similar birds of different mass? , 2007, Journal of Experimental Biology.
[19] T J Roberts,et al. Muscular Force in Running Turkeys: The Economy of Minimizing Work , 1997, Science.
[20] J. Videler,et al. Energetic advantages of burst-and-coast swimming of fish at high speeds. , 1982, The Journal of experimental biology.
[21] R. Marsh,et al. The mechanical power output of the pectoralis muscle of blue-breasted quail (Coturnix chinensis): the in vivo length cycle and its implications for muscle performance. , 2001, The Journal of experimental biology.
[22] G. V. Lauder,et al. How swimming fish use slow and fast muscle fibers: implications for models of vertebrate muscle recruitment , 1994, Journal of Comparative Physiology A.
[23] R. M. Alexander,et al. Mechanics of animal movement , 2005, Current Biology.
[24] R. Josephson,et al. Strain, Muscle Length and Work Output in a Crab Muscle , 1989 .
[25] J. Rayner. Estimating power curves of flying vertebrates. , 1999, The Journal of experimental biology.
[26] R. Josephson. Dissecting muscle power output. , 1999, The Journal of experimental biology.
[27] J. Murray,et al. Scale Effects in Animal Locomotion. , 1978 .
[28] D. Ellerby,et al. Slow muscle power output of yellow- and silver-phase European eels (Anguilla anguilla L.): changes in muscle performance prior to migration. , 2001, The Journal of experimental biology.
[29] R. Josephson. Short Communication Power Output from Skeletal Muscle During Linear and Sinusoidal Shortening , 1989 .
[30] D. Ellerby,et al. Fish swimming: patterns in muscle function. , 1999, The Journal of experimental biology.
[31] R. James,et al. The mechanical properties of fast and slow skeletal muscles of the mouse in relation to their locomotory function. , 1995, The Journal of experimental biology.
[32] R. Marsh,et al. The energetic costs of trunk and distal-limb loading during walking and running in guinea fowl Numida meleagris , 2006, Journal of Experimental Biology.
[33] G. E. Goslow,et al. Pectoralis muscle force and power output during flight in the starling , 1992 .
[34] Jonas Rubenson,et al. The energetic costs of trunk and distal-limb loading during walking and running in guinea fowl Numida meleagris , 2006, Journal of Experimental Biology.
[35] Bret W Tobalske,et al. Contractile activity of the pectoralis in the zebra finch according to mode and velocity of flap-bounding flight , 2005, Journal of Experimental Biology.
[36] R. Josephson,et al. THE MECHANICAL POWER OUTPUT OF A CRAB RESPIRATORY MUSCLE , 1988 .
[37] James M Wakeling,et al. Motor units are recruited in a task-dependent fashion during locomotion , 2004, Journal of Experimental Biology.
[38] N. Polunin,et al. Algal food supply and grazer demand in a very productive coral-reef zone , 1992 .
[39] R. Marsh,et al. Optimal shortening velocity (V/Vmax) of skeletal muscle during cyclical contractions: length-force effects and velocity-dependent activation and deactivation. , 1998, The Journal of experimental biology.
[40] T. Roberts,et al. Mechanical function of two ankle extensors in wild turkeys: shifts from energy production to energy absorption during incline versus decline running , 2004, Journal of Experimental Biology.
[41] R. Josephson. Contraction dynamics and power output of skeletal muscle. , 1993, Annual review of physiology.