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- W1601496676 endingPage "280" @default.
- W1601496676 startingPage "241" @default.
- W1601496676 abstract "Publisher Summary Axial undulation is a common mechanism for powering slow and continuous movements in fishes, and, because it derives power from a musculature that may comprise 50% or more of the body mass, this propulsive system can produce high thrust forces for fast swimming and high acceleration. Forward undulatory swimming depends on the coordinated action of lateral muscles to propagate a propulsive wave that travels with increasing amplitude from head to tail along the body. The three‐dimensional structure of the musculotendinous system provides the mechanical linkage that translates the muscle action into waves of body undulation, and is thus essential for a complete biomechanical analysis. This chapter discusses the structure of the musculotendinous system that provides the power for locomotion, and the relationship between muscle and body kinematics in steady swimming. Patterns of muscle activation and strain in different undulatory modes are summarized, as are recent studies on specializations related to high-performance swimming in tunas and lamnid sharks." @default.
- W1601496676 created "2016-06-24" @default.
- W1601496676 creator A5034740233 @default.
- W1601496676 creator A5064671153 @default.
- W1601496676 date "2005-01-01" @default.
- W1601496676 modified "2023-09-26" @default.
- W1601496676 title "Structure, Kinematics, And Muscle Dynamics In Undulatory Swimming" @default.
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