The mechanics of active fin-shape control in ray-finned fishes

Author:

Alben Silas1,Madden Peter G2,Lauder George V2

Affiliation:

1. Division of Engineering and Applied Sciences, Harvard UniversityCambridge, MA 02138, USA

2. Department of Organismic and Evolutionary Biology, Harvard UniversityCambridge, MA 02138, USA

Abstract

We study the mechanical properties of fin rays, which are a fundamental component of fish fin structure. We derive a linear elasticity model that predicts the shape of fin rays, given the input muscle actuation and external loading. We then test the model using experiments that measure (i) the ray deflection for a given actuation at the muscular interface, and (ii) the force–displacement response under conditions of actuation and non-actuation. The model agrees well with the experiment; both show a concentration of curvature at the ray base or at the point of an externally applied force, and a variation in ray stiffness over more than an order of magnitude depending on actuation at the bases of the fin rays.

Publisher

The Royal Society

Subject

Biomedical Engineering,Biochemistry,Biomaterials,Bioengineering,Biophysics,Biotechnology

Reference15 articles.

1. Antman S.S. 2005 Nonlinear problems of elasticity. 2nd edn. New York NY:Springer.

2. Batchelor G.K. 1967 An introduction to fluid dynamics. 1st edn. Cambridge UK:Cambridge University Press.

3. Smoothing noisy data with spline functions

4. Function of pectoral fins in rainbow trout: behavioral repertoire and hydrodynamic forces

5. The relation between structure and bending properties of teleost fin rays;Geerlink P.J;Neth. J. Zool,1987

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