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Titlebook: Bio-mechanisms of Swimming and Flying; Fluid Dynamics, Biom Naomi Kato,Shinji Kamimura Conference proceedings 2008 Springer-Verlag Tokyo 20

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Modeling, Simulation and Optimization of Anguilliform Swimmersing speed are pre-specified and the motion of the body is obtained through an evolutionary algorithm. The results support the hypothesis that anguilliform swimmers modify their kinematics according to different objectives.
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3-D Unsteady Computations of Flapping Flight in Insects, Fish, and Unmanned Vehicles built and their performance is described. As vehicle size decreases there has also been a need for incorporation of novel materials, sensors, and control systems. Computational challenges for coupling novel sensor designs, vehicle timevarying force and moment computations, and self-consistent vehicle trajectory computations are discussed.
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https://doi.org/10.1007/978-4-431-66990-6 negligible because of the cell size and the motion is expected to be symmetrical. However, asymmetrical characteristics between forward and backward motions were observed. The asymmetry observed in trajectory, swimming speed, and residence time appears only when a cell swims close to a surface. In
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https://doi.org/10.1057/9781403915924hode. In this article, we propose a novel physical scheme for Paramecium galvanotaxis to provide a quantitative explanation, using a bottom-up approach based on systems theory. We analytically derived the torque produced with respect to the cell angle and constructed equations of translational and r
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Japanese Environmental Foreign Policy performance. In this paper, the caudal skeletal structure and mechanical properties on the caudal fin of bluefin tuna (Thunnus thynnus) were examined. The Young’s modulus of fin rays composing the caudal fin was obtained. A two dimensional oscillating wing theory was applied to the caudal fin sinus
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