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Li-Ming Chao

Showing results (1-10 of 3) with videos related to

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PNAS Nexus|March 15, 2024
Tailbeat perturbations improve swimming efficiency by reducing the phase lag between body motion and the resulting fluid responseLi-Ming Chao, Laibing Jia, Siyuan Wang, et al.
Nature Communications|April 24, 2025
An interpretable approach to estimate the self-motion in fish-like robots using mode decomposition analysisYufan Zhai, Xingwen Zheng, Li-Ming Chao, et al.
Proceedings. Biological Sciences|October 29, 2025
Beyond propulsion: muscle proprioception enables hydrodynamic sensing in fish bodyRahdar Hussain Afridi, Waqar Hussain Afridi, Muhammad Hamza, et al.
Pageof 1

Showing results (1-10 of 3) with videos related to

Sort By:
Pageof 1
PNAS Nexus|March 15, 2024
Tailbeat perturbations improve swimming efficiency by reducing the phase lag between body motion and the resulting fluid responseLi-Ming Chao, Laibing Jia, Siyuan Wang, et al.
Nature Communications|April 24, 2025
An interpretable approach to estimate the self-motion in fish-like robots using mode decomposition analysisYufan Zhai, Xingwen Zheng, Li-Ming Chao, et al.
Proceedings. Biological Sciences|October 29, 2025
Beyond propulsion: muscle proprioception enables hydrodynamic sensing in fish bodyRahdar Hussain Afridi, Waqar Hussain Afridi, Muhammad Hamza, et al.
Pageof 1