ENERGETIC EXTREMES IN AQUATIC LOCOMOTION BY CORAL REEF FISHES.

Energetic extremes in aquatic locomotion by coral reef fishes.

Underwater locomotion is challenging due to the high friction and resistance imposed on a body moving through water and energy lost in the wake during undulatory propulsion.While aquatic organisms have evolved streamlined shapes to overcome such resistance, underwater locomotion has long been considered a costly exercise.Recent evidence for a range

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3D Mesh classification and panoramic image segmentation using spherical vector networks with rotation-equivariant self-attention mechanism

Spherical VIT D3 signals exist in many applications such as planetary data, lidar scanning and digitization of 3D objects, so we need models that can effectively process spherical data.When the spherical data is simply projected onto a two-dimensional plane and then convolutional neural networks (CNNs) are used, the performance of the previous algo

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