A self-locking mechanism of the frog-legged beetle Sagra femorata

Le Zong , Zonghui Sun , Jieliang Zhao , Zhengzhong Huang , Xiaokun Liu , Lei Jiang , Congqiao Li , Jacob Mulwa Muinde , Jianing Wu , Xiaolong Wang , Hongbin Liang , Haoyu Liu , Yuxia Yang , Siqin Ge

Insect Science ›› 2024, Vol. 31 ›› Issue (6) : 1864 -1875.

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Insect Science ›› 2024, Vol. 31 ›› Issue (6) : 1864 -1875. DOI: 10.1002/1744-7917.13323
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A self-locking mechanism of the frog-legged beetle Sagra femorata

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Abstract

Insect legs play a crucial role in various modes of locomotion, including walking, jumping, swimming, and other forms of movement. The flexibility of their leg joints is critical in enabling various modes of locomotion. The frog-legged leaf beetle Sagra femorata possesses remarkably enlarged hind legs, which are considered to be a critical adaptation that enables the species to withstand external pressures. When confronted with external threats,  S. femorata initiates a stress response by rapidly rotating its hind legs backward and upward to a specific angle, thereby potentially intimidating potential assailants. Based on video analysis, we identified 4 distinct phases of the hind leg rotation process in S. femorata, which were determined by the range of rotation angles (0°−168.77°). Utilizing micro-computed tomography (micro-CT) technology, we performed a 3-dimensional (3D) reconstruction and conducted relative positioning and volumetric analysis of the metacoxa and metatrochanter of S. femorata. Our analysis revealed that the metacoxa–trochanter joint is a “screw-nut” structure connected by 4 muscles, which regulate the rotation of the legs. Further testing using a 3D-printed model of the metacoxa–trochanter joint demonstrated its possession of a self-locking mechanism capable of securing the legs in specific positions to prevent excessive rotation and dislocation. It can be envisioned that this self-locking mechanism holds potential for application in bio-inspired robotics.

Keywords

coxa / leg joints / micro-CT / Sagra femorata / self-locking / trochanter

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Le Zong, Zonghui Sun, Jieliang Zhao, Zhengzhong Huang, Xiaokun Liu, Lei Jiang, Congqiao Li, Jacob Mulwa Muinde, Jianing Wu, Xiaolong Wang, Hongbin Liang, Haoyu Liu, Yuxia Yang, Siqin Ge. A self-locking mechanism of the frog-legged beetle Sagra femorata. Insect Science, 2024, 31(6): 1864-1875 DOI:10.1002/1744-7917.13323

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2024 Institute of Zoology, Chinese Academy of Sciences.

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