3[1]Ellington C P, van den Berg C,Willmott A P. Leading edge vortices in insect flight[J]. Nature, 1996, 384: 626-630.
4[2]Birch J M,Dickinson M H. Spanwise flow and the attachment of the leading-edge vortex on insect wings[J]. Nature, 2001, 412: 729-733.
5[3]Dickinson M H, Lehman F O,Sane S P. Wing rotation and the aerodynamic basis of insect flight[J]. Science, 1999, 284: 1954-1960.
6[4]Sun M. Tang J. Unsteady aerodynamic force generation by a model fruit fly wing in flapping motion[J]. J Exp Biol, 2002, 205: 55-70.
7[5]Sane S P,Dickinson M H. The control of flight force by a flapping wing: lift and drag production[J]. J Exp Biol, 2001, 204: 2607-2626.
8[6]Lehmann F O, Dickinson H D. The changes in power requirements and muscle efficiency during elevated force production in the fruit fly Drosophila melanogaster[J]. J Exp Biol, 1997, 200: 1133-1143.
9[7]Sun M, Tang J. Lift and power requirements of hovering flight in Drosophila[J]. J Exp Biol, 2002, 205(16):2413-2427.
10[8]Ellington C P. The aerodynamics of hovering insect flight Ⅳ Aerodynamic mechanisms[J]. Phil Trans R Soc Lond B, 1984b, 305: 79-113.