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Octopus-like Reaching Motion: A Perspective Inspired by Whipping

29 October 2025
Shengyao Zhang
Yiyuan Zhang
C. Zhang
Yiming Li
Wenci Xin
Yuliang Liufu
Hong Wei Ng
Cecilia Laschi
ArXiv (abs)PDFHTML
Main:5 Pages
8 Figures
Bibliography:1 Pages
Abstract

The stereotypical reaching motion of the octopus arm has drawn growing attention for its efficient control of a highly deformable body. Previous studies suggest that its characteristic bend propagation may share underlying principles with the dynamics of a whip. This work investigates whether whip-like passive dynamics in water can reproduce the kinematic features observed in biological reaching and their similarities and differences. Platform-based whipping tests were performed in water and air while systematically varying material stiffness and driving speed. Image-based quantification revealed that the Ecoflex Gel 2 arm driven at 150 rpm (motor speed) reproduced curvature propagation similar to that observed in octopus reaching. However, its bend-point velocity decreased monotonically rather than exhibiting the biological bell-shaped profile, confirming that the octopus reaching movement is not merely a passive whipping behavior. The absence of propagation in air further highlights the critical role of the surrounding medium in forming octopus-like reaching motion. This study provides a new perspective for understand biological reaching movement, and offers a potential platform for future hydrodynamic research.

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