2[2]Talmadge RJ,et al. Electrophoretic seperation of rat skeletal muscle myosin heavy-chain isoforms, J Appl Physiol,1993,75(5):2337-2340
3[3]Bottinelli RS,et al.Force-velocity relations and myosin heavy chain isoform compositions of skinned fibres from rat skeletal muscle.J Physiol,Lond,1991,437:655-673
4[4]Biral D,et al.Myosin heavy chain composition of single fibres from normal human muscle.Biochem J,1998,250:307-308
5[5]Klitgaard H,et al. Myosin heavy chain composition of single fibres from m、biceps brachii of male body builders、Acta Physiol Scand,1990,140:175-180
6[6]Stron RS.Correlation between myofibrillar ATPase activity and myosin heavy chain composition in single human muscle fibres. Histochem,1991,96:12-24
7[7]Klitgaard H,et al.Co-Existance of myosin heavy chain I and Ia isoforms in human skeletal muscle fibres with endurance training. Pflugers Arch,1990,416:470-472
8[8]Sullivan VK,et al. Myosin heavy chain composition in young and old rat skeletal muscle:effects of endurance training,J Appl Physiol,1995,78(6):2115-2120
9[9]Andersen JL,et al. Myosin heavy chain isoforms in single fibres from m.vastus lateralis of sprinters:influence of training ,ActaPhysiol Scand,1994,151:135-142
10[10]Adams G,et al.Skeletal muscle myosin heavy chain composition and resistance training, J Appl Physiol,1993,74(2)911-915
4Nguyen H T, et al. Molecular characterization of two myosin heavy chain genes expressed in he adult heart[J]. Acad. Sci. U.S.A. Natur. 1982,297(24):659-664.
5Kenneth M. Baldwin, Fadia Haddad. Plasticity in Skeletal, Cardiac, and Smooth Muscle Invited Rewiew: Effects of different activity and inactivity paradigmson myosin heavy chain gene expression in striated muscle[J]. J. Appl. physiol. 2001,90(1) : 345-- 357.
6Lompre. AM, Mercadie JJ, Wisnewsky C, Bouveret P,Pantaloni C.D'Albis A. and Schwartz K. Species- and age - dependent changes in the relative amounts of cardiac myosin isoenzymes in mammals[J]. Dev Biol. 1981,84:286--290.
7Yang SY, Alnaqeeb M, Simpson H, Goldspink G. Molecular cloning, regulation and mRNA processing of an insulin - like growth factor Ⅰ which is expressed in skeletal muscle induced to undergo rapid growth[J]. J Muscle Res Cell Motil. 1996,17:487--97.
8Goldspink. G,. Selective gene expression during adaptation of muscle in response to different physiological demands[J]. Comp biochem Physiol B Biochem Mol Biol.1998,120:5--15.
9Schiaffino. S. and Reggiani C. Molecular diversity of myofibrillar proteins: gene regulatin and functional significance[ J ]. Physiol Rev 76 : 371 -- 423.
10Talmadge. RJ. Myosin heavy chain isoform expression following reduced neuromuscular activity:potential regulatory mechanisms[J]. Muscle Nerve. 2000,23:661 --679.